A method of generating improved map data for use in navigation devices and a navigation device with improved map data
Abstract
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Term
Projected expiry 15 August 2027.
- Priority and filed
- Published
- Today
- Projected expiry
34 claims: 27 independent, 7 dependent
- 1Claims of equivalent WO 2008019884 A1 What is claimed is:1. A method of supplementing map data on a navigation device, comprising the steps of: - loading map data into a memory;- calculating at least one of a location, a speed, and a heading of a vehicle;- determining if there is an inconsistency between said map data and at least one of said location, said speed, and said heading;- in case of an inconsistency, generating a map correction data based on at least one of said location, said speed, and said heading;and - in case of no inconsistency, confirming accuracy of said map data.
- 4The method according to claims 1-3, further comprising the steps of:- determining if said map data comprises said location, - if said map data comprises said location, determining if said map associates said current location with a motor vehicle location, and - if said current location is not associated with a motor vehicle location, generating a correction query.
- 8The method according to claims 1-7, further comprising the steps of - planning a route, said route comprising altered map data;- determining whether said vehicle followed said route;- if said vehicle followed said route, generating a confirmation query regarding user route satisfaction;- receiving a response to said query;and - transmitting said response to a remote server.
- 9The method according to claims 1-8, further comprising the steps of - planning a route, said route comprising map data;- determining whether said vehicle followed said route;- if said vehicle followed said route, generating a confirmation query regarding user route satisfaction;- receiving a response to said query;and - transmitting said response to a server.
- 10The method according to claims 1-9, further comprising the steps of - determining a location of a vehicle over a given period of time;- determining a location speed limit of said location;- determining a vehicle speed limit of said vehicle;- determining a threshold location speed limit;- comparing said threshold location speed limit with said vehicle speed limit;and - if said vehicle speed limit exceeds said threshold limit, generating a user query for changing said location speed limit.
- 16A navigation device for supplementing map data, comprising:- a memory for loading map data;- a processor for calculating at least one of a location, a speed, and a heading of a vehicle;- means for determining if there is an inconsistency between said map data and at least one of said location, said speed, and said heading;and - means for generating a map correction data based on at least one of said location, said speed, and said heading in case of an inconsistency.
- 18The navigation device according to claims 16-17, further comprising:- means for providing menu driven selection of possible alterations;- means for receiving input comprising at least one of said alterations;and - means for generating a map correction data comprising said at least one of said alterations.
- 19The navigation device according to claims 16-18, further comprising:- means for determining if said map data comprises said location, - if said map data comprises said location, means for determining if said map associates said current location with a motor vehicle location, and - if said current location is not associated with a motor vehicle location, means for generating a correction query.
- 22The navigation device according to claims 20-21, further comprising:- means for determining if said vehicle deviates from said route;- if said vehicle has deviated from said route, means for determining a route portion deviated by said vehicle;and - means for querying a user whether said route portion should be blocked.
- 23The navigation device according to claims 16-22, further comprising:- means for planning a route, said route comprising altered map data;- means for determining whether said vehicle followed said route;- if said vehicle followed said route, means for generating a confirmation query regarding user route satisfaction;- means for receiving a response to said query;and - means for transmitting said response to a remote server.
- 24The navigation device according to claims 16-23, further comprising - means for planning a route, said route comprising map data;- means for determining whether said vehicle followed said route;- if said vehicle followed said route, means for generating a confirmation query regarding user route satisfaction;- means for receiving a response to said query;and - means for transmitting said response to a server.
- 25The navigation device according to claims 16-24, further comprising - means for determining a location of a vehicle over a given period of time;- means for determining a location speed limit of said location;- means for determining a vehicle speed limit of said vehicle;- means for determining a threshold location speed limit;- means for comparing said threshold location speed limit with said vehicle speed limit;and - if said vehicle speed limit exceeds said threshold limit, generating a user query for changing said location speed limit.
- 31A navigation device for supplementing map data, comprising:- a memory for loading map data;- a processor for calculating at least one of a location, a speed, and a heading of a vehicle;- means for determining if there is an inconsistency between said map data and at least one of said location, said speed, and said heading;and - means for confirming accuracy of said map data in case of no inconsistency.
Independent claims27
470 paragraphs in 1 section, as filed
Description of equivalent WO 2008019884 A1
0001A METHOD OF GENERATING IMPROVED MAP DATA FOR USE IN NAVIGATION DEVICES AND A NAVIGATION DEVICE WITH IMPROVED MAP DATA
0002This invention relates to a method of generating improved map data for use in navigation devices. Navigation devices include GPS based electronic personal navigation devices.
0003Map data for electronic navigation devices, such as GPS based personal navigation devices like the GO™ from TomTom International BV, comes from specialist map vendors such as Tele Atlas NV. This map data is specially designed to be used by route guidance algorithms, typically using location data from the GPS system. For example, roads can be described as lines - i.e. vectors (e.g. start point, end point, direction for a road, with an entire road being made up of many hundreds of such sections, each uniquely defined by start point/end point direction parameters). A map is then a set of such road vectors, data associated with each vector (speed limit; travel direction etc.) plus points of interest (POIs), plus road names, plus other geographic features like park boundaries, river boundaries etc, all of which are defined in terms of vectors. All map features (e.g. road vectors, POIs etc.) are typically defined in a co-ordinate system that corresponds with or relates to the GPS co-ordinate system, enabling a device's position as determined through a GPS system to be located onto the relevant road shown in a map and for an optimal route to be planned to a destination.
0004To construct this map database, Tele Atlas starts with basic road information from various sources, such as the Ordnance Survey for roads in England. It also has a large, dedicated team of vehicles driving on roads, plus personnel checking other maps and aerial photographs, to update and check its data. This data constitutes the core of the Tele Atlas map database. This map database is being continuously enhanced with geo- referenced data. It is then checked and published four times a year to device manufacturers like TomTom.
0005Despite the huge resources that go into updating and verifying these maps, the data for some geographic areas may be a year or more out of date. In addition to the ongoing improvements described above, end-users can directly report map errors to Tele Atlas using Tele Atlas' web site. Device manufacturers like TomTom also capture and forward map error reports from their users in this way. These error reports are generally just in a free text format, so that considerable effort has to be expended in working out what the error really means and what exact location they relate to. Once verified as a real error, the appropriate correction is validated and then included in a future map release. The correction may eventually find itself in an end-user device a year or more after first being notified or, in some cases, not at all.
0006It is also known to store a 'trace' of a journey planned and completed using a GPS satellite navigation device (see for example the 'GPS track submission' functionality offered by ALK Technologies of Princeton, USA). This trace is a record of the complete route taken by a vehicle, using geo-coded data. The user can then send this trace data back to the device vendor; it is then used to improve the accuracy and completeness of the map database. For example, the precise position of a road or a turning may not be accurately captured on a map used by a device; the aggregated tracks for people taking that road or turning will enable a more accurate position to be determined; future map releases by the device vendor can incorporate the correction.
0007Reference may also be made to collaborative mapping projects, frequently called 'wikimaps'. Wikimaps do not however generate 'map data' as we define that term - i.e. map data that is suitable for route guidance algorithms to plot a route on a road system to a destination.
0008The invention is a method of generating improved map data for use in navigation devices, the method comprising the steps of: a) displaying map data, suitable for route guidance algorithms, on an electronic navigation device; b) an end-user of the device inputting a correction to a map error, directly on the device; c) the device being able to use the correction without external processing ot the correction.
0009Hence, it is no longer necessary for an end-user to be restricted to reporting errors to the map vendor over a web link, then waiting for that map vendor to verify the error, update its maps and supply the update - a cycle that can take months and sometimes years to complete. Instead, the navigation device can use the correction without external processing - e.g. verification by the map vendor. Use of the correction by the device can, in relative terms, be 'immediate'. The term 'immediate' should not be construed as instantaneously, but as simply meaning soon after the correction has been input. There can be intervening steps, such as the user verifying that the correction should be used, turning the device on and then off etc.
0010In an implementation, there is a navigation device that allows users to make modifications to the map data stored on their device. The navigation device can be a portable stand-alone GPS navigation device with route guidance capability, such as the GO series device from TomTom International BV, or any other kind of portable information device, such as a mobile telephone or PDA. But equally, it could be a device integrated into a vehicle, or a computing device such as a static desktop PC (including a laptop) running navigation software (which term includes mapping software which does not actually deliver dynamic route guidance but instead simply mapping - where the user is. Also, the navigation software could run locally on the client device or run on a server remote from the client device). The PC can then dock with a portable navigation device with a route guidance capability and transfer the corrections to the portable navigation device.
0011Typical features of such a navigation device are:
0012• A user interface allowing users to create corrections to a digitally stored map;
0013• A user interface that allows users to include or exclude map corrections from route calculations; • A user interface that allows user to view their corrected map data on the digital map
0014• A set of correction categories that allow users to associate map corrections with one or more transportation types;
0015• The ability to share map corrections with other users, for example via a content aggregation service. Shared maps are available for use (e.g. by a route planning algorithm or map display engine) as soon as they are downloaded.
0016A second aspect of the invention is an automated map correction suggestion method: in this method, a navigation device collects and analyses statistical data relating to driver behaviour and, typically when certain threshold criteria are met, suggests map corrections to the user. For example, if the user does not turn into a road that the device planned a route down, it may be because the actual road has a 'no entry' sign, but the map stored on the device is not up to date. The device can then automatically display a message such as 'Sorry, was the map incorrect?' with 'yes' and 'no' buttons displayed by the message. If the user presses 'yes', the device might then display the user interface allowing users to create corrections to the map stored on the device. The user can then correct the map by marking the road as a 'no entry' road. That correction is immediately available to the route planning algorithms running on the navigation device.
0017A third aspect is a map correction analysis method: in this method, a system analyses map corrections using one or more of the following:
0018• Analysis and aggregation of user corrections to derive the "validity" of a correction;
0019• Analysis of corrections supplied by a single user to derive "trustworthiness" of corrections from that user;
0020• Keyword analysis of all string data in order to remove "banned" words (e.g. expletives in street names);
0021• Analysis of corrections in order to decide whether a map correction should be applied to other maps of the same region (both maps from other suppliers and newer versions of the map from the same supplier). The present invention will be described with reference to the accompanying drawings, in which:
0022Figure 1 is the main error reporting screen displayed by a navigation device;
0023Figure 2 is the screen shown that allows users to define the type of error they wish to capture and report;
0024Figure 3 is a screen shot from a navigation device implementing the present invention; the screen shot shows a plan map view and a status bar running along the bottom of the display;
0025Figure 4 is a screen shot from the navigation device implementing a 3-D view;
0026Figure 5 is a screen shot from the navigation device showing a navigation menu;
0027Figures 6A and 6B are perspective views of the navigation device; and
0028Figure 7 is a schematic view of the system architecture for the navigation device;
0029Figure 8 is a block diagram of components in the navigation device;
0030Figure 9 is a diagram of the electrical subassemblies in the Figure 8 navigation device.
0031The present invention will be described with reference to an implementation called Map Share™. Map Share will allow users to fix and also to share and report map errors using GO personal navigation devices from TomTom International B.V. The user enters the correction (or map fix) into the navigation device. The map fix is then applied locally in the device to supplement the map data used by the device in routing and displaying roads, POIs etc. The map fix is immediately available. The map fix can be reported to a TomTom server by the device in a number of ways: the device may have an integral communications capability (e.g. wireless cellular system that can send data to the server), may be able to send data over a short range wireless link to a mobile telephone which in turn sends the data to the server, may be able to dock with an internet connected PC that can communicate with the server, or may itself be that internet connected PC. The server can then aggregate all corrections from all users, validate corrections, and distribute the corrections to other users, and share the corrections with one or more map vendors. When fully implemented, this ieedbacK could replace map vendor updates as the primary mechanism for updating map data in TomTom products.
0032The scope of one implementation of Map Share is to provide user friendly, on-device tools allowing the user to:
0033• Block and un-block streets on their map
0034• Modify the traffic direction of streets on their map
0035• Add and modify street names on their map
0036• Modify speed limits of roads on their map
0037Hence, the corrections directly affect how the routing calculation algorithms operate - i.e. they are used when calculating a route to a destination. Map Share also allows the user to:
0038• Add safety camera locations to the map
0039• Share map corrections with other users
0040• Download map corrections from other users
0041• Create map error reports for large errors.
0042In addition to on-device corrections, the same correction features for all the above correction types can be made available using a desktop computer application that is capable of connecting to the device, e.g. in order to store corrections.
0043In addition to on-device features, improvements are possible to the existing TomTom map error reporting tool, which is web based:
0044• Map error reporting will be made easier to find within the TomTom Support Website
0045• Map error reporting tools will be added to the TomTom Home application
0046• Users will receive feedback on the map errors that they have reported.
0047• TomTom will be able to pre-prioritise errors before sending them to its map supplier, e.g. TeleAtlas. AS explained earner, important ieamres oi me iviap onare implementation are:
0048• to do map corrections, error reporting etc. on the device
0049• to make certain corrections take immediate effect (e.g. those meeting user- defined criteria)
0050• to allow users to exchange corrections with others
0051On a GO navigation device, this can be implemented by the device displaying a menu item 'Make changes to the map', as shown in Figure IA. The consequences of selecting this item are discussed below. There are 2 further menu items that will be described first.
0052First, the menu item 'Exchange Changes' allows the user to initiate an upload of the user's own changes, and download other people's changes to the device. Upload can be via a mobile telephone with a GPRS wireless link that links to the GO device over a Bluetooth network or via an Internet connected PC that the GO device is docked with.
0053Secondly, the menu item 'Preferences About changes' determines which changes to enable. Selecting this item can cause the device to display a menu screen, with check boxes for the user to indicate applicable types of changes to enable:
0054Which changes should be enabled:
0055[x] your own changes
0056[x] recent changes
0057[ ] last year's changes / made on other maps
0058[x] only if reported more than once
0059[x] only from trusted sources 1365 of 2635 available changes enabled
0060If the user selects the 'Make changes to map' icon by touching it, it takes the user to a submenu which offers INSTANT-EFFECT options to change the map - plus the option to REPORT an error (if it is not covered by self-action). These include, as shown in Figure IB: • Add/change street name: it a user selects mis, men tne device could, lor example, display a list of names of streets currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode); the user could select the street to be re-named arid then enter the new name via an onscreen keyboard.
0061• Block Street: if a user selects this, then the device could, for example, display a list of names of streets currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode); the user could select the street to blocked.
0062• Change traffic direction (not shown): if a user selects this, then the device could, for example, display a list of names of streets currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode) together with the traffic direction; the user could select the street whose traffic direction is to be altered.
0063• Change speed limit: if a user selects this, then the device could, for example, display a list of names of streets currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode) together with applicable speed limits; the user could select the street whose street limit is to be altered and then select the appropriate new speed limit from a menu.
0064• Un-block street: if a user selects this, then the device could, for example, display a list of names of blocked streets currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode); the user could select the street to be unblocked.
0065In addition, it is possible, selecting the 'Edit/delete POF icon to reach a deeper sub-menu with graphical options for the following:
0066Rename a POI
0067Move a POI
0068Add a POI to a category L>eiete a rui Re-categorize a POI
0069In each case, the device could, for example, display a list of names of POIs currently being displayed by the map (or that would be displayed if the device were in the normal navigation mode); the user could select the relevant POI and then edit or delete that POI. These POIs are typically those supplied by the map vendor but can include POIs downloaded by the user (e.g. speed cameras).
0070A further menu item is to 'Report other error'. This enables complaints, missing roads etc. to be reported. Typical functions will enable the user to pick a location, select from a list of typical issues, allow user to add free text commentary etc.
0071Other features
0072• Users can create "private" fixes for their map and "shared" fixes that are also sent to TomTom for aggregation.
0073• Each map fix is stored independently
0074• All map fixes are highly compressible for OTA distribution
0075• AU map fixes are HIGHLY secure (such that it is not possible to manually reverse engineer the format) to ensure that competitors cannot use fixes made on TomTom devices to correct their own maps.
0076• Fixes are stored in a map-independent form o Map fixes are preserved during map upgrades o Map fixes can be applied to maps from different vendors
0077• Map fixes can be automatically removed if the area related to the fix has changed in a new release of the map data (as in this case we assume that the map error has been fixed by the map supplier).
0078• Map fixes do NOT permanently modify the user's map data.
0079• Users can choose which kinds of changes they use (e.g. "use only my changes" or "use my changes and those from TomTom"). • iom iom maintains map iix databases ior eacn reieaseα map version <img file="WO2008019884A1_D0001.tif" /> users with new maps can receive fixes reported on older maps, but users of old maps will NOT be able to receive fixes reported on newer maps).
0080• TomTom creates an aggregation system so that map fixes and reports can be collected and shared with other users.
0081• TomTom creates a "trust" system so that the validity or credibility of map fixes and reports can be assessed. Users who report good errors on a regular basis may become "trusted", and their fixes are offered to all users without the need for validation. These users may also be asked to validate fixes submitted by other users.
0082• TomTom endorses fixes sent by users (once they have been validated).
0083Figure 2 shows schematically the core software modules deployed in a navigation device implementing the invention. The display 21 is a touch screen display that the user enters a destination address into in the conventional manner. That address data input is handled by the UI module 22 and sent to the navigation/route planning module 23. Route planning module 23, taking a GPS feed from GPS module 24, plans a route using map data from the encrypted, compressed map data that the device was shipped with (or was otherwise supplied from the map vendor, such as Tele Atlas). The present invention is then implemented as follows: the user enters a map correction as and when needed, using a touch screen interaction, touching large graphical icons, as exemplified by Figures IA and IB, into display 21. The UI module 22 captures the map fix and sends it to a map fix store 26. As soon as the map fix is in the map fix 26 store, it is made available to the route planning module 22 and the UI module 22. If the map fix requires re-planning of even the current route being driven, then that will happen automatically (if the user configures that option). For example, the device might plan a route that requires the user to turn into a street: when the turning is approached, the user finds that it has recently been made a 'no entry' street. The user can enter an appropriate map correction: a new route, taking into account the no entry street, is then immediately planned and appropriate route guidance given. Likewise, if the user plans a completely new route to another destination, tne new route will also take the map tix into account, ii me map πx snouiα affect how the map should appear (for example, re-naming a road, showing a new POI, such as a speed camera), then that new appearance will be immediately present. Automatic use of the correction is not mandatory though; some users may prefer for route calculation etc. to exclude map corrections.
0084Appendix 1 describes a typical device that can implement the present invention. Appendix 2 are the high level requirements for Map Share.
0085Appendix 1
0086The present invention can be implemented in an integrated navigation device from TomTom B.V. called GO. GO deploys navigation software called Navigator (or Navcore) and has an internal GPS receiver; Navigator software can also run on a touch screen (i.e. stylus controlled) Pocket PC powered PDA device, such as the Compaq iPaq. It then provides a GPS based navigation system when the PDA is coupled with a GPS receiver. The combined PDA and GPS receiver system is designed to be used as an in-vehicle navigation system.
0087The invention may also be implemented in any other arrangement of navigation device, such as one with an integral GPS receiver/computer/display, or a device designed for non-vehicle use (e.g. for walkers) or vehicles other than cars (e.g. aircraft). The navigation device may implement any kind of position sensing technology and is not limited to GPS; it can hence be implemented using other kinds of GNSS (global navigation satellite system) such as the European Galileo system. Equally, it is not limited to satellite based location/velocity systems but can be deployed using ground- based beacons or any other kind of system that enables the device to determine its geographic location.
0088Navigator software, when running on a PDA, results in a navigation device that causes the normal navigation mode screen shown in Figure 3 to be displayed. This view provides driving instructions using a combination ot text, symbols, voice guidance ana a moving map. Key user interface elements are the following: a 2 -D map 1 occupies most of the screen. The map shows the user's car and its immediate surroundings, rotated in such a way that the direction in which the car is moving is always "up". Running across the bottom quarter of the screen is the status bar 2. The current location of the device, as the device itself determines using conventional GPS location finding and its orientation (as inferred from its direction of travel) is depicted by an arrow 3. The route calculated by the device (using route calculation algorithms stored in device memory as applied to map data stored in a map database in device memory) is shown as darkened path 4 superimposed with arrows giving the travel direction. On the darkened path 4, all major actions (e.g. turning corners, crossroads, roundabouts etc.) are schematically depicted by arrows 5 overlaying the path 4. The status bar 2 also includes at its left hand side a schematic 6 depicting the next action (here, a right turn). The status bar 2 also shows the distance to the next action (i.e. the right turn - here the distance is 220 meters) as extracted from a database of the entire route calculated by the device (i.e. a list of all roads and related actions defining the route to be taken). Status bar 2 also shows the name of the current road 8, the estimated time before arrival 9 (here 2 minutes and 40 seconds), the actual estimated arrival time 10 (11.36am) and the distance to the destination 11 (1.4Km). The GPS signal strength is shown in a mobile-phone style signal strength indicator 12. A 3-D map view is also possible, as shown in Figure 4.
0089If the user touches the screen 13, then a navigation screen main menu (not shown) is displayed; from this menu, other core navigation functions within the Navigator application can be initiated or controlled. Allowing core navigation functions to be selected from a menu screen that is itself very readily called up (e.g. one step away from the map display to the menu screen) greatly simplifies the user interaction and makes it faster and easier.
0090The area of the touch zone which needs to be touched by a user is far larger than in most stylus based touch screen systems. It is designed to be large enough to be reliably selected by a single finger without special accuracy; i.e. to mimic the real-life conditions tor a driver when controlling a vehicle; he or sne win nave little time to iooκ at a nigniy detailed screen with small control icons, and still less time to accurately press one of those small control icons. Hence, using a very large touch screen area associated with a given soft key (or hidden soft key, as in the centre of the screen 13) is a deliberate design feature of this implementation. Unlike other stylus based applications, this design feature is consistently deployed throughout Navigator to select core functions that are likely to be needed by a driver whilst actually driving. Hence, whenever the user is given the choice of selecting on-screen icons (e.g. control icons, or keys of a virtual keyboard to enter a destination address, for example), then the design of those icons/keys is kept simple and the associated touch screen zones is expanded to such a size that each icon/key can unambiguously be finger selected. In practice, the associated touch screen zone will be of the order of at least 0.7 cm<sup>2</sup> and will typically be a square zone. In normal navigation mode, the device displays a map. Touching the map (i.e. the touch sensitive display) once (or twice in a different implementation) near to the screen centre (or any part of the screen in another implementation) will then call up either directly (i.e. the next level down) or indirectly (i.e. two or more levels down) a navigation menu (see Figure 5) with large icons corresponding to various navigation functions, such as the option to calculate an alternative route, and re-calculate the route so as to avoid the next section of road (useful when faced with an obstruction or heavy congestion); or recalculate the route so as to avoid specific, listed roads.
0091The actual physical structure of the device is fundamentally different from a conventional embedded device in terms of the memory architecture (see system Architecture section below). At a high level it is similar though: memory stores the route calculation algorithms, map database and user interface software; a microprocessor interprets and processes user input (e.g. using a device touch screen to input the start and destination addresses and all other control inputs) and deploys the route calculation algorithms to calculate the optimal route. 'Optimal' may refer to criteria such as shortest time or shortest distance, or some other user-related factors. More specifically, the user inputs his start position and required destination in the normal manner into the Navigator software running on the PDA using a virtual keyboard. The user then selects the manner in which a travel route is calculated: various modes are offered, such as a 'fast' mode that calculates the route very rapidly, but the route might not be the shortest; a 'full' mode that looks at all possible routes and locates the shortest, but takes longer to calculate etc. Other options are possible, with a user defining a route that is scenic - e.g. passes the most POI (points of interest) marked as views of outstanding beauty, or passes the most POIs of possible interest to children or uses the fewest junctions etc.
0092Roads themselves are described in the map database that is part of Navigator (or is otherwise accessed by it) running on the PDA as lines - i.e. vectors (e.g. start point, end point, direction for a road, with an entire road being made up of many hundreds of such sections, each uniquely defined by start point/end point direction parameters). A map is then a set of such road vectors, plus points of interest (POIs), plus road names, plus other geographic features like park boundaries, river boundaries etc, all of which are defined in terms of vectors. All map features (e.g. road vectors, POIs etc.) are defined in a coordinate system that corresponds or relates to the GPS co-ordinate system, enabling a device's position as determined through a GPS system to be located onto the relevant road shown in a map.
0093Route calculation uses complex algorithms that are part of the Navigator software. The algorithms are applied to score large numbers of potential different routes. The Navigator software then evaluates them against the user defined criteria (or device defaults), such as a full mode scan, with scenic route, past museums, and no speed camera. The route which best meets the defined criteria is then calculated by a processor in the PDA and then stored in a database in RAM as a sequence of vectors, road names and actions to be done at vector end-points (e.g. corresponding to pre-determined distances along each road of the route, such as after 100 meters, turn left into street x). Figures 6A and 6B are perspective views of an actual implementation oi a navigation device. The navigation device is a unit that includes display, internal GPS receiver, microprocessor, power supply and memory systems. The device sites on an arm, which itself is secured to the car dashboard using a large suction cup.
0094System Architecture
0095In contrast to conventional embedded devices which execute all the OS and application code in place from a large mask ROM or Flash device, an implementation of the present invention uses a new memory architecture. Figure 7 schematically depicts the device. The device, indicated generally at 51, includes conventional items such as a microprocessor 56, power source 57, display and related rivers 58. In addition, it includes a SD card reader 53; a SD card 52 is shown slotted into position. The device 51 has internal DRAM 54 and XIP Flash 55 and.
0096The device hence uses three different forms of memory:
00971. A small amount of internal XIP (eXecute In Place) Flash ROM 55. This is analogous to the PC's BIOS ROM and will only contain a proprietary boot loader, E<sup>2</sup> emulation (for UID and manufacturing data) and splash screen bit maps. This is estimated to be 256 KB in size and would be on a slow 8 bit wide SRAM interface.
00982. The main system RAM (or DRAM) memory 54, this is analogous to the PC's main memory (RAM). This will be where all the main code executes from as well as providing the video RAM and workspace for the OS and applications. Note: No persistent user data will be stored in the main system RAM (like a PC) i.e. there will be no "Ram drive". This RAM will be exclusively connected to a 32bit 100MHz synchronous high-speed bus.
00993. Non-volatile storage, analogous to the PC's hard disk. This is implemented as removable NAND flash based SD cards 52. These devices do not support XIP. All the OS, application, settings files and map data will be permanently stored on SD cards Un boot up the proprietary boot loader 55 will prompt tor the user to insert the supplied SD card 52. When this is done, the device will copy a special system file from the SD card 52 into RAM 54. This file will contain the Operating System and navigation application. Once this is complete control will be passed to the application. The application then starts and access non-volatile data e.g. maps from the SD card 52.
0100When the device is subsequently switched off, the RAM 54 contents is preserved so this boot up procedure only occurs the first time the device is used.
0101GO product specification
0102Introduction
0103GO is a stand-alone fully integrated personal navigation device. It will operate independently from any connection to the vehicle.
0104Target markets
0105GO is intended to address the general personal navigation market. In particular it is designed to extend the market for personal navigation beyond the "early adopter" market.
0106As such it is a complete stand-alone solution; it does not require access to a PC, PDA or
0107Internet connection. The emphasis will be on completeness and ease of use.
0108Although GO is a complete personal navigation solution it is primarily intended for in vehicle use. The primary target market is anybody who drives a vehicle either for business or pleasure.
0109To successfully address this market GO must satisfy the following top-level requirements:
01101. Acceptable price point - Appropriate compromise between product features and cost.
01112. Simplicity - Installation and operation of GO will be simple and intuitive, all major functions should be accomplished by an average non PC-literate user without recourse to the product manual. 3. flexibility - All map data and operating programs will be supplied on plug in memory cards. The device can easily be extended to cover different locals.
01124. Reliability - Although in-car navigation systems are not considered safety critical components users will come to rely on GO. It will be engineered to all relevant automotive environmental standards. In addition it will be tolerant to short GPS coverage outages.
0113Channels
0114• Consumer electronics retail outlets
0115• Automotive accessory outlets
0116• Specialist car accessory fitting garages
0117Product summary
0118GO is an in-vehicle personal navigation device. It is designed as an appliance, that is, for a specific function rather than a general purpose one. It is designed for the consumer after-sales automotive market. It will be simple to use and install by the end user, although a professional fitting kit will be optionally supplied. The principal features are:
0119• Built on standard commodity PocketPC 2002 components
0120• Standard PocketPC 3.5" %VGA transflective TFT LCD display mounted in landscape orientation
0121• ROMless soft-boot memory architecture
0122• Highly integrated ARM9200MHz CPU
0123• SD card memory slot for application and map data storage
0124• Integrated GPS receiver and antenna
0125• Integrated two axis accelerometer for simple dead reckoning
0126• Power, audio, debug and external GPS antenna connections made through docking connector on base of unit
0127• Embedded Linux OS with no GUI layer, application provides its own UI
0128• Very simple touch screen UI optimised for finger use
0129• High quality integrated speaker for voice instructions • Internal rechargeable Li-Ion battery giving at least five hours of continuous operation
0130Operating System
0131GO will use a customised version of embedded Linux. This will be loaded from an SD card by a custom boot-loader program which resides in Flash memory
0132Hard buttons
0133GO will have only one hard button, the power button. It is pressed once to turn on or off
0134GO. The UI will be designed so that all other operations are easily accessible through the pen based UI.
0135There will also be a concealed hard reset button.
0136Architecture
0137GO architecture is based around a highly integrated single chip processor designed for mobile computing devices. This device delivers approximately 200 MIPs of performance from an industry standard ARM920T processor. It also contains all the peripherals required excluding the GPS base-band. These peripherals include DRAM controller, timer/counters, UARTs, SD interface and LCD controller. The main elements of this architecture are:
0138• Microprocessor running at 200MHz
0139• 32MB or 64MB of fast synchronous DRAM (SDRAM) with low power self refresh. Arranged as two devices on a 32 bit wide 100MHz bus
0140• SD card interface for all non-volatile storage including the OS (No RAM drive)
0141• Native (bare metal) boot loader stored in 256KB of NOR Flash. This Flash device will contain a boot sector which is write protected to store protected data such as unique product ID's and manufacturing data.
0142• Debug UART (RS232 3V levels) connected to the docking connector
0143• USB client for PC connectivity
0144• Integrated GPS receiver
0145• Integrated two axis accelerometer • Optional" integrated Bluetooth transceiver lor PDA and mobile phone connectivity
0146• High quality audio through I<sup>2</sup>S codec and amplifier
0147Figure 8 is the GO block diagram.
0148Power management
0149GO will be powered from an integrated Li-Ion 2200 mAH rechargeable battery. This battery can be charged, and the device powered (even if the battery contains no charge) from an externally supplied +5V power source. This external +5V power source is supplied via the docking connector or a DC jack socket.
0150This +5V supply will be generated from the vehicle's main supply rail or from a mains adapter externally. The device will be turned on and off by a single button. When the device is turned off the DRAM contents will be preserved by placing the RAM in self- refresh so that when switched on GO will resume from where it was switched off. There will also be a wake-up signal available through he docking connector, this can be used to auto-switch on GO when the vehicle ignition is switched on. There will also be a small hidden reset switch.
0151System Memory architecture
0152In contrast to conventional embedded devices which execute all the OS and application code in place from a large mask ROM or Flash device, GO will be based on a new memory architecture which is much closer to a PC. This will be made up of three forms of memory:
01534. A small amount of XIP (eXecute In Place) Flash ROM. This is analogous to the PC's BIOS ROM and will only contain a proprietary boot loader, E<sup>2</sup> emulation (for UID and manufacturing data) and splash screen bit maps. This is estimated to be 256 KB in size and would be on a slow 8 bit wide SRAM interface.
01545. The main system memory, this is analogous to the PC's main memory (RAM). This will be where all the main code executes from as well as providing the video RAM and workspace for the OS and applications. Note: No persistent user data will be stored in the main system RAM (like a PC) i.e. there will be no "Ram drive". This RAM will be exclusively connected to a 32 bit IUUMHz synchronous high-speed bus. GO will contain two sites for 16 bit wide 256/512Mbit SDRAM's allowing memory configurations of 32MB (16 bit wide) 64MB 32 bit wide and 128 MB (32 bit wide).
01556. Non-volatile storage, analogous to the PC's hard disk. This is implemented as removable NAND flash based SD cards. These devices do not support XIP. All the OS, application, settings files and map data will be permanently stored on SD cards
0156Audio
0157A 52 mm diameter speaker is housed in GO to give good quality spoken instructions.
0158This will be driven by an internal amplifier and audio codec. Audio line out will also be present on the docking connector.
0159SD Memory slot
0160GO will contain one standard SD card socket. These are used to load system software and to access map data.
0161Display
0162GO will use a transflective 3.5" TFT backlit display It will be a 'standard' %VGA display as used by PocketPC PDA's. It will also contain a touch panel and bright CCFL backlight.
0163Power supplies
0164Power supply - AC adapter socket
01654.75V to 5.25V (5.00V +/- 5%) @ 2A
0166Power supply - Docking connector
01674.75V to 5.25V (5.00V +/- 5%) @ 2A
0168Variants
0169It shall be possible to assemble and test the following variants of GO:
0170Standard (Bluetooth depopulated, 32Mbyte RAM)
0171In the Standard variant the Bluetooth function is not populated, and 32 Mbytes RAM is fitted. Bluetooth option (Future variant)
0172The product design should include Bluetooth although it is not populated in the standard variant to minimise BOM cost. The design should ensure that all other functions (including GPS RF performance) operate without degradation when the Bluetooth function is operating.
017364Mbyte RAM option (Future variant)
0174The product design should ensure it is possible to fit 64Mbyte RAM instead of 32Mbyte.
0175Subassemblies
0176GO consists of the following electrical subassemblies, shown in Figure 9.
0177RF cable
0178The RF cable feeds the RF signal from an external GPS antenna (which connects to GO via the RF docking connector) to the RF PCB where the GPS module is situated. External connectors
0179Docking Connectors
0180Two Docking Connectors provide an interface to external Docking Stations.
0181Docking Connector #i pinout
0182<img file="WO2008019884A1_D0002.tif" />
0183PWR Power connection PU Pull-Up resistor W<sub>1</sub>UiIn the unit OfD Open-Drain output PD Pull-Down resistor within the unit
0184Docking Connector #2 pinout
0185<img file="WO2008019884A1_D0003.tif" />
0186RF Docking Connector
0187The RF Docking Connector allows connection of an external active GPS antenna via a
0188Docking Station.
0189AC adapter socket
0190The AC adapter socket allows power to be supplied from a low cost AC adapter or CLA
0191(Cigarette Lighter Adapter).
0192USB connector
0193The USB connector allows connection to a PC by means of a standard mini USB cable.
0194SD card socket
0195A hard locking SD card socket suitable for high vibration applications supports SDIO,
0196SD memory and MMC cards.
0197(Although GO provides hardware support for SDIO, software support will not be available at the time of product introduction) Processor
0198The processor is the ARM920T based SOC (System on chip) operating at approx
0199200Mhz.
RAM
0201GO will be fitted with RAM to the following specification:
0202<img file="WO2008019884A1_D0004.tif" />
0203Flash Memory
0204GO will be fitted with a minimum of 256kbyte of 16-bit wide Flash Memory to contain the following:
0205• Boot loader code to enable loading of O/S from SD card
0206• Factory set read-only protected manufacturing parameters (e.g. manufactured date) and unique ID (E2PR0M emulation)
0207• User specific settings (E2PROM emulation)
0208The following devices can be used depending on price and availability.:
0209GPS internal antenna
0210The GPS internal antenna is attached directly to the RF PCB.
0211GPS external (active) antenna switching
0212When an external antenna is connected via the RF Docking Connector, the GPS antenna source is automatically switched to the external antenna. Accelerometer A solid state acceierometer is connected directly to tne processor to proviαe iniormaiion about change of speed and direction. Auxiliary functions
0213Ignition synchronization
0214Ignition wakeup
0215A rising edge on the Docking Station IGNITION signal will wakeup the unit. The IGNITION signal may be connected to a 12V or 24V vehicle battery.
0216Ignition state monitoring
0217The state of the Docking Station IGNITION signal is detected and fed to a GPIO pin to allow software to turn off the unit when the ignition signal goes low.
0218Standard peripherals
0219The following peripherals will be included as standard with GO.
0220• Simple docking shoe. Mounts GO and allows charging through a DC jack. No other connectivity is included in the simple dock.
0221• Cigarette lighter power cable connecting to GO through the DC jack socket or simple docking shoe.
0222• Mini USB cable for PC connectivity
0223• Universal mains adapter for connection to DC Jack socket
0224Optional peripherals
0225The following optional peripherals will be available at or after the time of launch of GO
0226• Active antenna kit. Contains a GPS active antenna and a docking shoe with GPS RF connector and cable fitted. For self installation when an external antenna is required.
0227• Professional vehicle docking kit. For fitting by professional installation only. Allows direct connection to vehicle supply, audio system and active antenna via a vehicle interface box. Appendix 2
0228Map Share High Level Requirements (0.40)
0229Introduction
0230TomTom strives to offer the most accurate map data available to its customers. Currently, map updates are made by TomTom map suppliers, and TomTom is able to feed back errors in some maps via a reporting tool to Tele Atlas. This situation is far from ideal as it may take several map revisions before a map error is fixed, and all fixes made as a result of TomTom error reports are also shared with competitors. In order for TomTom to offer map updates in a timelier manner, a new system of map error reporting and correction is required. These improvements will be delivered through the Map Share project.
02311.1 Scope
0232This document describes high level requirements of the Map Share project.
02332 High Level Requirements
0234This section describes the high level requirements of Map Share.
02352.1 User Requirements
0236This section describes the user requirements for Map Share.
02372.1.1 Map Corrections
0238Some map errors can be corrected immediately by the user. This section describes the user requirements relating to map corrections.
02392.1.1.1 On-Device Map Corrections
0240The user shall be able to make map corrections on their NavCore device.
02412.1.1.2 TomTom Home Map Corrections
0242The user shall be able to make map corrections within the Navigator control of the TomTom Home application.
02432.1.2 Map Correction Types
0244This section describes the user requirements relating to the types of map correction that can be made.
02452.1.2.1 Add Safety Camera
0246The user shall be able to add the locations of safety cameras on the map. Note: it is already possible to report safety cameras in this way, however, the implementation must be adjusted to simplify the process of reporting, make it consistent with other map corrections and allow users to see the safety cameras that they have reported immediately.
02472.1.2.2 Block Roads
0248The user shall be able to block roads on the map.
02492.1.2.3 Un-Block Roads
0250The user shall be able to un-block roads on the map. 2.1.2.4 Modify Traffic Direction
0251The user shall be able to modify the traffic direction properties of roads on the map. Specifically the user shall be able to:
0252• Change a two-way road into a one-way road (in either direction)
0253• Change a one-way road to a two-way road
0254• Change the direction of a one-way road to the other direction.
02552.1.2.5 Add Road
0256The user shall be able to add a road (consisting of one or more nodes) on the map.
02572.1.2.6 Connect Roads
0258The user shall be able to connect 2 points on the map and define this new link as a new road.
02592.1.2.7 Add Street Names
0260The user shall be able to add street names to un-named roads on the map.
02612.1.2.8 Modify Street Names
0262The user shall be able to modify the names of roads on the map.
02632.1.2.9 Modify Speed Limits
0264The user shall be able to modify the maximum speed of roads on the map.
02652.1.3 Availability ofOn-Device Corrections
0266Once map corrections are present on the NavCore device, they must be made available to the user. This section describes the user requirements relating to the availability of on- device corrections.
02672.1.3.1 Availability of Private Corrections
0268The user shall be able to use private corrections as soon as they are recorded. 2.1.3.2 Availability of Public Corrections
0269The user shall be able to use public corrections as soon as they have been downloaded to the device.
02702.1.4 Using Map Corrections
0271As some map corrections may have been made by other TomTom owners, the user must be able to select which corrections to use when calculating routes. This section describes the user requirements relating to the use of map corrections on the user's device.
02722.1.4.1 Safety Camera Warnings
0273The user shall be able to choose whether to receive warnings for private and/or public reported safety cameras.
02742.1.4.2 Use of Private Map Corrections
0275The user shall be able to use or ignore their Private map corrections whenever they plan a route that includes a correction.
02762.1.4.3 Use of Public Map Corrections
0277The user shall be able to use or ignore their Public map corrections whenever they plan a route that includes a correction.
02782.1.4.4 Automatic Map Correction Use
0279The user shall be able to configure their device such that private and/or public corrections from one or more categories are automatically included within route calculations. The user shall be informed that they are using corrections.
02802.1.4.5 Route Recalculation
0281The user shall be able to recalculate routes to include or exclude map corrections.
02822.1.4.6 Map Correction Removal
0283The user shall be able to remove a map correction from their device. 2.1.5 Map Error Reporting
0284Some map errors are too complicated or large in scale to make corrections on the device itself. These errors need to be reported to TomTom, so that we (or our map suppliers) can take corrective action. This section describes the user requirements relating to map error reporting.
02852.1.5.1 On-Device Map Error Reporting
0286The user shall be able to create map error reports on their device and upload these to the
0287TomTom PLUS server.
0288Note: the user shall NOT be able to create map error reports while driving.
0289Note: it would be acceptable to offer users a list of pre-defined error types when creating error reports on the device.
02902.1.5.2 TomTom Home Map Error Reporting
0291The user shall be able to create map error reports within the Navigator control of the TomTom Home and upload these to the TomTom PLUS server.
0292Note: the user should NOT have to register as a TomTom customer in order to create a map error report.
02932.1.5.3 Importing On-Device Error Reports in TomTom Home
0294The user shall be able to import map error reports captured on their device to the TomTom Home application. The user shall be able to edit these reports and then upload them to the TomTom PLUS server.
02952.1.5.4 Map Error Report Feedback
0296The user shall be given feedback regarding their map error reports.
02972.1.6 A utomatic Map Error Identification
0298In some circumstances it is possible for the TomTom device to suggest corrections to the user, based on their use of the product. This section describes the user requirements relating to automatic identification of map errors. 2.1.6.1 Automatic Road Block Suggestion
0299The user shall be prompted to block roads that they chose to avoid within route plans on multiple occasions.
03002.1.6.2 Automatic Road Creation Suggestion
0301The user shall be prompted to add a road on the map if they drive through a map area that is not marked as a road on multiple occasions.
03022.1.6.3 Automatic Name Road Suggestion
0303The user shall be prompted to add a name to unnamed roads on the map if they plan routes to such a road on multiple occasions.
03042.1.6.4 Automatic Modify Speed Limit Suggestion
0305The user shall be prompted to modify the speed limit of a road if they drive along it at a significantly different speed from that stated in the map data on multiple occasions.
03062.1.7 Map Correction Sharing
0307Users of Map Share may wish to share their corrections with other TomTom owners. This section describes the user requirements relating to the user's ability to share map corrections with other TomTom owners.
03082.1.7.1 Private Map Corrections
0309The user shall be able to create corrections for their personal use only. These corrections shall NOT be sent to the TomTom PLUS server.
03102.1.7.2 Public Map Corrections
0311The user shall be able to create corrections that are shared with other TomTom owners. These corrections shall be uploaded to the TomTom PLUS server and made available to other Map Share users. 2.1.7.3 Public Map Correction Community Categorisation
0312The user shall be able to categorise their public map corrections according to the user community for which it is applicable. The following community categories shall be made available:
0313• All users
0314• All motorists
0315• Heavy goods vehicle drivers
0316• Motorcyclists
0317• Limited speed vehicle drivers
0318• Pedestrians
0319• Bicycles
03202.1.7.4 Trusted User Status
0321The user shall be able to acquire "trusted user" status, based upon the number and quality of map corrections that they upload.
03222.1.7.5 Map Fix Information
0323The user shall be informed if they attempt to report a map correction that has been corrected in a newer version of the map data that they are using. The user shall also be informed how they can purchase the updated map.
03242.1.8 Map Correction Retrieval
0325In order to use public map corrections the user must retrieve them from the TomTom PLUS server. This section describes the user requirements relating to map correction retrieval.
03262.1.8.1 Public Map Correction Retrieval
0327The user shall be able to download public map corrections from the TomTom PLUS server to their device, and to the TomTom Home application. 2.1.8.2 Public Map Correction Community Category Retrieval
0328The user shall be able to download public map corrections from one or more community categories.
0329Note: Public correction community categories are defined in section 2.1.7.3.
03302.1.8.3 Public Map Correction Source Category Retrieval
0331The user shall be able to download public map corrections from one or more community source categories.
0332Note: Public correction source categories are defined in section 2.2.1.5.
03332.1.8.4 Public Map Correction Supplier Category Retrieval
0334The user shall be able to download public map corrections from one or more map supplier source categories. A supplier category shall be provided for each TomTom map supplier.
03352.1.8.5 Public Map Correction Location Category Retrieval
0336The user shall be able to download public map corrections from one or more location categories.
0337Note: The following categories shall be available:
0338• All maps
0339• All maps on device
0340• Currently loaded map on device
03412.2 Technical Constraints
0342Some features within Map Share must be implemented in a specific way in order to address the user's requirements and protect TomTom's interests. This section describes all known technical constraints placed upon the Vl scope of Map Share.
03432.2.1 Public Map Correction Management
0344In order to allow users to make informed decisions relating to public map corrections, Map Share must manage these corrections. This section describes the constraints relating to map correction categorisation. 2.2.1.1 Map Correction Aggregation
0345TomTom shall aggregate all public map corrections sent to the TomTom PLUS server.
03462.2.1.2 Map Correction Analysis
0347Public map corrections shall be analysed in order to assess their source, applicability and trustworthiness.
03482.2.1.3 Map Correction Distribution
0349TomTom shall distribute all public map corrections to Map Share users upon request.
03502.2.1.4 Map Correction Removal
0351TomTom shall assess the applicability of each map correction with respect to each map supplied to users. If a map correction is found not to be applicable for a given map then it shall be removed from the aggregated map corrections and NOT distributed to users of this map.
03522.2.1.5 Map Correction Source Categories
0353Map corrections held on the TomTom PLUS server shall be categorised by source so that the user can be informed of the relative trustworthiness of the correction's source.
03542.2.1.5.1 TomTom Endorsement
0355TomTom shall be able to endorse specific map corrections and these shall be represented to the user in a specific category.
03562.2.1.5.2 Single User Reports
0357Map corrections that have been reported by a single user shall be represented to other users in a specific category.
03582.2.1.5.3 Multiple User Reports
0359Map corrections that have been reported by more than one user shall be represented to other users in specific categories. Specifically, the following categories shall be represented:
0360• 2 - 5 user reports • More than 5 user reports
03612.2.1.5.4 Trusted User Reports
0362Map corrections that have been reported by trusted users shall be represented to other users in a specific category.
03632.2.1.5.5 Community Endorsement
0364Map Share users shall be able to endorse map corrections made by other TomTom owners and evidence of these endorsements shall be represented to the user.
03652.2.2 Data Format
0366In order to gain (and maintain) a competitive advantage from Map Share, it is imperative that map correction data is held in a structured, re-usable and secure way. This section describes the constraints relating to security.
03672.2.2.1 Unique Identification
0368Each map correction shall be uniquely identified.
03692.2.2.2 Time Stamp
0370Each map correction captured on the device shall be time stamped with the time at which it was input and/or reported.
03712.2.2.3 Modularity
0372Each map correction shall be stored in a form that allows it to be applied to the map independently of all other map corrections (i.e. NavCore shall be able to decide on a per- correction basis whether the correction should be applied to the map and represented to the user).
03732.2.2.4 Non-Permanent Modification
0374Map corrections shall NOT make a permanent modification to the user's map data. 2.2.2.5 Data Compression
0375Map corrections shall be highly compressible to allow fast and cheap distribution over wireless networks.
03762.2.2.6 Data Encryption
0377Map corrections shall be highly encrypted such that it is not possible for the data format to be reverse engineered.
03782.2.2.7 Data Integrity
0379Map corrections shall be stored in such a way that they are retained though a map upgrade process.
03802.2.2.8 Future Map Version Compatibility
0381Map corrections shall be compatible with future map versions, such that corrections made on older versions of a map can be applied to the latest version.
03822.2.2.9 Previous Map Version Incompatibility
0383Map corrections shall NOT be compatible with previous map versions. It shall NOT be possible to apply a map correction made on the current map version with a previous map version.
03842.2.2.10 Map Supplier Independence
0385Map corrections shall be independent of map suppler, such that map corrections can be applied to maps from different suppliers.
03862.2.2.11 Tele Atlas API Compatibility
0387Map corrections shall be stored in a format that is compatible with the Tele Atlas map reporting API such that TomTom is capable of sending correctly formatted reports to Tele Atlas if it wishes to do so. 2.2.3 On-Device Map Correction Handling
0388In order to ensure that map corrections are correctly handled on the user's device, certain rules must be applied. This section describes the constraints relating to on-device map correction handling.
03892.2.3.1 Automatic Map Correction Omission
0390Map corrections created on previous map versions shall be checked to see if they are applicable to the currently loaded map on the user's device. Map corrections that are not applicable shall NOT be used within route calculations.
03912.2.4 Map Error Report Management
0392In order to manage map error reports in a more effective manner, TomTom must implement method for aggregating and prioritising error reports. This section describes the constraints relating to map error report management.
03932.2.4.1 Map Error Report Format
0394All map error reports shall be created in a format that is compatible with the Tele Atlas map error reporting API.
03952.2.4.2 Map Error Report Aggregation
0396TomTom shall aggregate all map error reports from user devices, TomTom Home and the TomTom website.
03972.2.4.3 Map Error Report Prioritisation
0398TomTom shall assess all map error reports and assign priorities to these, such that the most serious errors are clearly highlighted. These priorities shall be communicated to TomTom map suppliers when submitting error reports to them.
03992.2.4.4 Tele Atlas API Compatibility
0400Map error reports shall be stored in a format that is compatible with the Tele Atlas map reporting API such that TomTom is capable of sending correctly formatted reports to Tele Atlas if it wishes to do so. 3 Omissions
0401This section describes the high level requirements that have been omitted from the Vl scope of Map Share.
04023.1 User Requirements
0403This section describes the omitted user requirements for Map Share.
04043.1.1 Map Correction Types
0405This section describes the map correction types that have been omitted from the Vl scope of Map Share.
04063.1.1.1 Modify City/Place Names
0407The user shall be able to modify the names of cities (and other places) on the map.
04083.1.1.2 Block Roads for Transportation Types
0409The user shall be able to block access to a road for one or more transportation types. Specifically the user shall be able to block access for the following transportation types:
0410• All motor vehicles
0411• Pedestrians
0412• Heavy Goods Vehicles
0413• Bicycles
04143.1.1.3 Un-block Roads for Transportation Types
0415The user shall be able to un-block access to a road for one or more transportation types. Specifically the user shall be able to un-block access for the following transportation types:
0416• All motor vehicles
0417• Pedestrians
0418• Heavy Goods Vehicles
0419• Bicycles 3.1.1.4 Modify Road Class
0420The user shall be able to modify the "class" of roads on the map.
0421Note: road classes are used to define the properties of roads and are used within route calculation.
04223.1.1.5 Add Turn Restrictions
0423The user shall be able to add turn restrictions to roads on the map.
04243.1.1.6 Remove Turn Restrictions
0425The user shall be able to remove turn restrictions applied to roads on the map.
04263.1.1.7 Add House Numbers
0427The user shall be able to add house numbers (either a single number or a range) to roads on the map.
04283.1.1.8 Modify House Numbers
0429The user shall be able to modify the location of house numbers (either a single number or a range) applied to roads on the map.
04303.1.1.9 Modify Average Speed
0431The user shall be able to modify the average speed of roads on the map.
04323.1.1.10 Add Toll to Road
0433The user shall be able to mark a road on the map as a toll road.
04343.1.1.11 Remove Toll from Road
0435The user shall be able to remove the presence of a toll from roads on the map.
04363.1.1.12 Add Signposts
0437The user shall be able to add signpost information to roads on the map. 3.1.1.13 Modify Signposts
0438The user shall be able to modify the properties of signpost information associated with roads on the map.
04393.1.1.14 Remove Signposts
0440The user shall be able to remove signpost information associated with roads on the map.
04413.1.1.15 Modify POI Locations
0442The user shall be able to modify the location of POI on the map.
04433.1.1.16 Modify POI Names
0444The user shall be able to modify the names of POI on the map.
04453.1.1.17 Modify POI Category
0446The user shall be able to modify the category of POI on the map.
04473.1.1.18 Remove POI
0448The user shall be able to remove POI from the map.
04493.1.1.19 Modify Motorway Exit Numbers
0450The user shall be able to modify the exit numbers of motorways on the map.
04513.1.1.20 Modify Post Code
0452The user shall be able to modify the post code associated with a road on the map.
04533.1.1.21 Add Road Height Restrictions
0454The user shall be able to add road height restrictions to roads on the map.
04553.1.1.22 Add Road Width Restrictions
0456The user shall be able to add road width restrictions to roads on the map.
04573.1.1.23 Add Road Weight Restrictions
0458The user shall be able to add road weight restrictions to roads on the map. 3.1.2 Map Error Reporting
0459Some map errors are too complicated or large in scale to make corrections on the device itself. These errors need to be reported to TomTom, so that we (or our map suppliers) can take corrective action. This section describes the user requirements relating to map error reporting.
04603.1.2.1 TomTom Website Map Error Reporting
0461The user shall be able to create map error reports within TomTom Support Website and upload these to the TomTom PLUS server.
0462• Users should not need to register as a TomTom customer in order to create a map error report
0463• A graphical user interface should be made available to allow easier selection of map error locations
0464• Feedback should be given to the user regarding the status of their report
04653.2 Technical Constraints
0466Some features within Map Share must be implemented in a specific way in order to address the user's requirements and protect TomTom's interests. This section describes all known technical constraints that have been omitted from the Vl scope of Map Share.
04673.2.1 Map Error Reporting
0468This section describes all known technical constraints relating to map error reporting that have been omitted from the Vl scope of Map Share.
04693.2.1.1 Map Error Reporting to Tele Atlas
0470TomTom shall implement the Tele Atlas map error reporting API and use this as the reporting mechanism for all reports to Tele Atlas.
97 members in 10 offices
Members97
| Document | Office | Kind | |
|---|---|---|---|
| GB0616211D0 | United Kingdom | D0 | |
| GB2440958A | United Kingdom | A | |
| AU2007286427A1 | Australia | A1 | |
| AU2007286428A1 | Australia | A1 | |
| AU2007286429A1 | Australia | A1 | |
| AU2007286430A1 | Australia | A1 | |
| AU2007286431A1 | Australia | A1 | |
| AU2007286432A1 | Australia | A1 | |
| AU2007286433A1 | Australia | A1 | |
| US2008046274A1 | United States of America | A1 | |
| WO2008019879A2 | World Intellectual Property Organization (WIPO) | A2 | |
| WO2008019880A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2008019881A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2008019882A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2008019883A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2008019884A1 | World Intellectual Property Organization (WIPO) | A1 | |
| WO2008019885A1 | World Intellectual Property Organization (WIPO) | A1 | |
| US2008059055A1 | United States of America | A1 | |
| US2008065325A1 | United States of America | A1 | |
| WO2008019879A3 | World Intellectual Property Organization (WIPO) | A3 | |
| TW200817933A | Taiwan Province of China | A | |
| TW200823431A | Taiwan Province of China | A | |
| TW200825377A | Taiwan Province of China | A | |
| TW200825379A | Taiwan Province of China | A | |
| TW200827676A | Taiwan Province of China | A | |
| TW200827677A | Taiwan Province of China | A | |
| TW200829875A | Taiwan Province of China | A | |
| US2008177469A1 | United States of America | A1 | |
| KR20090040382A | Republic of Korea | A | |
| KR20090040467A | Republic of Korea | A | |
| KR20090041430A | Republic of Korea | A | |
| KR20090041431A | Republic of Korea | A | |
| EP2052207A1 | European Patent Office (EPO) | A1 | |
| EP2052209A2 | European Patent Office (EPO) | A2 | |
| EP2052210A1 | European Patent Office (EPO) | A1 | |
| EP2052211A1This record | European Patent Office (EPO) | A1 | |
| EP2052212A1 | European Patent Office (EPO) | A1 | |
| EP2052214A1 | European Patent Office (EPO) | A1 | |
| KR20090043560A | Republic of Korea | A | |
| KR20090043561A | Republic of Korea | A | |
| KR20090051094A | Republic of Korea | A | |
| EP2069720A1 | European Patent Office (EPO) | A1 | |
| CN101517364A | China | A | |
| CN101517365A | China | A | |
| CN101517366A | China | A | |
| CN101517367A | China | A | |
| CN101517368A | China | A | |
| CN101517370A | China | A | |
| CN101517371A | China | A | |
| JP2010500584A | Japan | A | |
| JP2010500585A | Japan | A | |
| JP2010500586A | Japan | A | |
| JP2010500587A | Japan | A | |
| JP2010500588A | Japan | A | |
| JP2010500589A | Japan | A | |
| JP2010502939A | Japan | A | |
| US2010030459A1 | United States of America | A1 | |
| US2010131186A1 | United States of America | A1 | |
| US2010131189A1 | United States of America | A1 | |
| RU2009109209A | Russian Federation | A | |
| RU2009109231A | Russian Federation | A | |
| RU2009109232A | Russian Federation | A | |
| RU2009109234A | Russian Federation | A | |
| RU2009109237A | Russian Federation | A | |
| RU2009109239A | Russian Federation | A | |
| RU2009109241A | Russian Federation | A | |
| US7873465B2 | United States of America | B2 | |
| EP2327961A2 | European Patent Office (EPO) | A2 | |
| EP2327961A3 | European Patent Office (EPO) | A3 | |
| CN101517371B | China | B | |
| JP5054107B2 | Japan | B2 | |
| CN101517366B | China | B | |
| US8407003B2 | United States of America | B2 | |
| CN103090877A | China | A | |
| RU2482540C2 | Russian Federation | C2 | |
| TWI417521B | Taiwan Province of China | B | |
| TWI420079B | Taiwan Province of China | B | |
| US8635017B2 | United States of America | B2 | |
| TWI425191B | Taiwan Province of China | B | |
| JP5415267B2 | Japan | B2 | |
| EP2327961B1 | European Patent Office (EPO) | B1 | |
| JP2014055962A | Japan | A | |
| CN101517367B | China | B | |
| CN103940437A | China | A | |
| AU2007286427B2 | Australia | B2 | |
| JP2015014610A | Japan | A | |
| US8972188B2 | United States of America | B2 | |
| US2015153186A1 | United States of America | A1 | |
| EP2069720B1 | European Patent Office (EPO) | B1 | |
| JP2017016135A | Japan | A | |
| CN103940437B | China | B | |
| JP6219460B2 | Japan | B2 | |
| JP6283281B2 | Japan | B2 | |
| EP2052210B1 | European Patent Office (EPO) | B1 | |
| EP2052214B1 | European Patent Office (EPO) | B1 | |
| US10156448B2 | United States of America | B2 | |
| EP2052209B1 | European Patent Office (EPO) | B1 |
11 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Application deemed to be withdrawnWithdrawn18D | 18D | |
| Information on the status of an ep patent application or granted ep patentGrantedSTATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWNSTAA | STAA | |
| First examination report despatched17Q | 17Q | |
| Information on inventor provided before grant (corrected)RIN1 | RIN1 | |
| Information on inventor provided before grant (corrected)RIN1 | RIN1 | |
| Information on inventor provided before grant (corrected)RIN1 | RIN1 | |
| Information on inventor provided before grant (corrected)RIN1 | RIN1 | |
| Request for examination filed17P | 17P | |
| Designated contracting statesAK | AK | |
| Request for extension of the european patentAX | AX | |
| Public reference made under article 153(3) epc to a published international application that has entered the european phaseORIGINAL CODE: 0009012PUAI | PUAI |
Numbers
- Publication
- 2052211
- Application
- 78017506
Titles3
- German
- VERFAHREN ZUR GENERIERUNG VERBESSERTER KARTENDATEN FÜR NAVIGATIONSGERÄTE UND NAVIGATIONSGERÄT MIT VERBESSERTEN KARTENDATEN
- English
- A METHOD OF GENERATING IMPROVED MAP DATA FOR USE IN NAVIGATION DEVICES AND A NAVIGATION DEVICE WITH IMPROVED MAP DATA
- French
- PROCÉDÉ DE CRÉATION DE DONNÉES DE CARTE AMÉLIORÉES DESTINÉES À UN USAGE DANS DES DISPOSITIFS DE NAVIGATION ET DISPOSITIF DE NAVIGATION COMPRENANT DES DONNÉES DE CARTE AMÉLIORÉES
Classification
- CPC, 9
- G06Q10/40
- G01C21/26
- G01C21/3859
- G01C21/3856
- G01C21/36
- G01C21/3837
- G01C21/3885
- G01C21/3811
- G01C21/3626
- IPC, 3
- G01C21 32
- G01C21 26
- G01C21 30
Designated states37
- Contracting states, 32
- Austria
- Belgium
- Bulgaria
- Switzerland
- Cyprus
- Czechia
- Germany
- Denmark
- Estonia
- Spain
- Finland
- France
- United Kingdom
- Greece
- Hungary
- Ireland
- Iceland
- Italy
- Liechtenstein
- Lithuania
- Luxembourg
- Latvia
- Monaco
- Malta
and 8 moreShow fewer
- Netherlands (Kingdom of the)
- Poland
- Portugal
- Romania
- Sweden
- Slovenia
- Slovakia
- Türkiye
- Extension states, 5
- Albania
- Bosnia and Herzegovina
- Croatia
- North Macedonia
- Serbia