Apparatus for own position-fixing, especially for vehicles.
Abstract
For own position-fixing, the delay time-differential measurements running in the organisation channel of a network-synchronous cellular mobile radio network are used for cell boundary detection. For this purpose, in the simplest case a reception unit 1 for the organisation channel, a device for the delay time-differential measurement 2 and a working memory 3 are necessary. These three units are also components of a conventional mobile station. Also necessary are a read-only memory 4 with the location coordinates of all fixed radio stations and a computing unit 5 for connecting the delay time-measurements to the location coordinates and calculating the own position according to the hyperbolic position-fixing method. The display can be a LCD display 6 or a graphic display 7 in conjunction with a suitable data bank 8. As an addition to a mobile station 11, the location coordinates can be transmitted back to an authorised subscriber, even of a dedicated circuit network on a request from it (Fig. 2). <IMAGE>

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Projected expiry passed 12 May 2009, 17.4 years ago.
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15 claims: 15 independent, 0 dependent
- 1Device for determining one's own location, in particular of vehicles, with the aid of an existing network-synchronous cellular mobile radio network, in which a measurement of the transit time difference of several data telegrams sent by different base stations takes place in each mobile station to assign its respective location to a radio cell, marked by , a) a receiver unit (1) for receiving the network-wide organization channel with demodulator and data processingb) a device (2) for measuring the transit time of a plurality of data telegrams sent by different base stations to the data telegram sent by a reference radio base stationc) a working memory (3) in which the different transit time differences are stored, arranged according to base stationsd) a permanent memory (4) with the location coordinates of all radio base stationse) an arithmetic unit (5) in which the location coordination of the permanent memory (4) is linked to the content of the main memory (3) and the location coordinates are calculated by averaging as many measurement results as possible using the hyperbolic location method (FIG. 2). 1. Einrichtung zur Eigenstandortbestimmung, insbesondere von Fahrzeugen, mit Hilfe eines bestehenden netzsynchronen Zellular-Mobilfunknetzes, in welchem in jeder Mobilstation zur Zuordnung ihres jeweiligen Standortes zu einer Funkzelle eine Messung der Laufzeitdifferenz mehrerer, von verschiedenen Funkfeststationen ausgesandter Datentelegramme stattfindet, gekennzeichnet durch , a) eine Empfängereinheit (1) zum Empfang des netzeinheitlichen Organisationskanals mit Demodulator und Datenaufbereitungb) eine Einrichtung (2) zum Messen der Laufzeit mehrerer von verschiedenen Feststationen ausgesandten Datentelegramme zu dem von einer Bezugsfunkfeststation ausgesandten Datentelegrammc) einen Arbeitsspeicher (3), in dem die verschiedenen Laufzeitdifferenzen, geordnet nach Funkfeststationen abgespeichert sindd) einen Festspeicher (4) mit den Standortkoordinaten aller Funkfeststationene) eine Recheneinheit (5), in der die Standortkoordination des Festspeichers (4) mit dem Inhalt des Arbeitsspeichers (3) verknüpft und durch Mittelung möglichst vieler Meßergebnisse nach dem Hyperbel-Ortungsverfahren die Standortkoordinaten errechnet werden (Fig. 2).
- 2Einrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Empfängereinheit (1), die Einrichtung (2) zur Laufzeitdifferenzmessung und der Arbeitsspeicher (3) Bestandteile des herkömmlichen Empfangsteils einer Mobilfunkstation (11) in einem netzsynchronen Zellular-Mobilfunknetz sind (Fig. 3). 2nd Device according to claim 1, characterized in that the receiver unit (1), the device (2) for measuring the transit time difference and the working memory (3) are components of the conventional receiving part of a mobile radio station (11) in a network-synchronous cellular mobile radio network (Fig. 3).
- 3Einrichtung nach Anspruch 2, dadurch gekennzeichnet, daß die Standortkoordinaten auf Anforderung eines berechtigten Teilnehmers auch eines festen (Draht- oder Glasfaser) Netzes durch Anwahl des Funkteilnehmers und Rückübertragung über dessen Sender abrufbar sind (Fig. 3). 3rd Device according to claim 2, characterized in that the location coordinates can be called up on request of an authorized subscriber also of a fixed (wire or fiber) network by dialing the radio subscriber and retransmitting via his transmitter (Fig. 3).
- 4Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Daten der Standortkoordinaten über ein Modem (10) in digitaler Form über einen Sprachkanal der Mobilstation rückübertragbar sind (Fig. 3). 4th Device according to claim 3, characterized in that the data of the location coordinates can be retransmitted in digital form via a voice channel of the mobile station via a modem (10) (Fig. 3).
- 5Device according to claim 3, characterized in that a digital voice output for converting the digital location coordinates is switched on in the transmission path between the mobile station (11) and the requesting subscriber (Fig. 3). 5. Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß in den Übertragungsweg zwischen Mobilstation (11) und anfragenden Teilnehmer eine digitale Sprachausgabe zur Umwandlung der digitalen Standortkoordinaten eingeschaltet ist (Fig. 3).
- 6Device according to claim 5, characterized in that the digital voice output (9) is arranged in the mobile station (11) (Fig. 3). 6. Einrichtung nach Anspruch 5, dadurch gekennzeichnet, daß die digitale Sprachausgabe (9) in der Mobilstation (11) angeordnet ist (Fig. 3).
- 7Device according to claim 5, characterized in that digital voice output is arranged in the calling subscriber. 7. Einrichtung nach Anspruch 5, dadurch gekennzeichnet, daß digitale Sprachausgabe in der beim abrufenden Teilnehmer angeordnet ist.
- 8Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Rückübertragung über die systemeigene Datenübertragung des Organisationskanals erfolgt. 8th. Device according to claim 3, characterized in that the retransmission takes place via the system data transmission of the organizational channel.
- 9Device according to claim 3, characterized in that the retransmission takes place via the native data transmission of the voice channel. 9. Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Rückübertragung über die systemeigene Datenübertragung des Sprachkanals erfolgt.
- 10Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Rückübertragung auf speziellen Datenkanälen erfolgt. 10th Device according to claim 3, characterized in that the retransmission takes place on special data channels.
- 11Device according to claim 1, characterized in that the location coordinates can be represented on an LCD display (6) as a display unit (Fig. 2, Fig. 3). 11. Einrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Standortkoordinaten auf einem LCD-Display (6) als Anzeigeeinheit darstellbar sind (Fig. 2, Fig. 3).
- 12Einrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die Anzeigeeinheit ein graphisches Display (7) mit Darstellung von Kartenauschnitten darstellt, die ihre Hintergrundinformation aus einer geeigneten Datenbank (8) (z. B. topographischen Datenbank) beziehen (Fig. 2, Fig. 3). 12th Device according to claim 1 or 2, characterized in that the display unit shows a graphic display (7) with the display of map sections which obtain their background information from a suitable database (8) (e.g. topographical database) (Fig. 2, Fig 3).
- 13Device according to claim 3, characterized in that the mobile station (11) is used only for reporting one's own location, without participating in radio telephone traffic and the necessary voice input and output. 13. Einrichtung nach Anspruch 3, dadurch gekennzeichnet, daß die Mobilstation (11) unter Verzicht auf Teilnahme am Funktelefonverkehr und der hierzu notwendigen Sprach-Ein- und Ausgabe lediglich zur Meldung des eigenen Standortes dient.
- 14Device according to claim 13, characterized in that the mobile station (11) has no display unit. 14. Einrichtung nach Anspruch 13, dadurch gekennzeichnet, daß die Mobilstation (11) keine Anzeigeeinheit aufweist.
- 15Device according to claim 1, characterized in that the location coordinates can be used to support existing dead reckoning systems. 15. Einrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Standortkoordinaten zur Unterstützung vorhandener Koppelnavigationssysteme verwendbar sind.
Independent claims15
38 paragraphs, as filed
The invention relates to a device for determining one's own location, in particular of vehicles, with the aid of an existing, network-synchronous cellular mobile radio network.
On the one hand, methods for determining the location of vehicles are known, which are based on a hyperbolic location method, eg. B. DE-AS 21 37 846, E-PS 0 006 448, DE-OS 36 33 557 and DE-OS 30 29 466. All methods require a considerable infrastructure, in addition, the accuracy of the synchronicity of the signals transmitted by the base stations dependent.
A system for determining the vehicle route is also known which is used by a known navigation system, e.g. B. Loran goes out. The location data determined in the Loran receiver are sent to a central station together with the desired destination. This is done via a vehicle transmitter, the z. B. can be part of the mobile station of a cellular radio network. A computer of the central station calculates the vehicle route from the location and the target coordinates, which are sent back from the central station to the receiver of the mobile station. It is essential in the given context that a separate navigation receiver is present next to a mobile radio station and that communication must take place between the vehicle station and the central station (EP 01 23 562).
Also known are methods for cell boundary detection by means of a relative distance measurement according to the hyperbolic method in network-synchronous cellular mobile radio networks (DE-OS 33 35 128, Funktechnik 41 (1986), No. 4, pp. 146-149)).
There, in addition to the location processes, which are insignificant for the object to be viewed, and which originate from the fixed stations, a measurement of the transit time difference of a plurality of radio telegrams emitted by different fixed base stations also takes place in each mobile station in order to assign their respective location to a radio cell.
Based on this prior art, the invention is based on the following finding:
On the one hand, in existing network-synchronous cellular mobile radio networks, the infrastructural prerequisites for the self-location of mobile radio stations are largely present, namely a network of fixed stations and absolute network synchronism for the use of the hyperbole location method.
On the other hand, due to the cost degression of microprocessors, even high computing speeds, there is no longer any reason to link the transit time difference values measured in the mobile station with the known location coordinates of the associated base stations in a central computer arranged at the base station.
For this reason, the invention proposes that the aforementioned data be linked decentrally in a microcomputer assigned to each mobile station.
According to the invention, a device for determining one's own location according to the generic term is characterized by at least the following features:<ul id="ul0001" list-style="none"><li>a) a receiver unit for receiving the network-wide organization channel with demodulator and data processing</li><li>b) a device for measuring the transit time difference between a plurality of data telegrams sent by different base stations to the data telegram sent by a reference base station</li><li>c) a working memory in which the different transit time differences, sorted according to base stations, are stored</li><li>d) a permanent memory with the location coordinates of all radio base stations</li><li>e) an arithmetic unit in which the location coordinates of the fixed memory are linked to the content of the main memory and by averaging as many measurement results as possible the location coordinates are calculated using the hyperbolic location method.</li></ul>
A device according to the features a to e of the solution specified above clearly constitutes a passive one
Locating recipient who does not participate in the radio telephone service. Nevertheless, its use is an advantage if it is only a matter of locating your own location. Because of the omission of the transmitting part and the voice input and output, such a navigation receiver could also be designed as a portable device after the addition of an LCD display for the location coordinates.
However, if the device is to serve only as an additional device of a mobile radio station that is already equipped for the radio telephone service, according to another embodiment of the inventive concept, only the features d, e and possibly an additional display unit is required in order to receive its own location display as an additional feature for the radio telephone service, because the receiver unit, the device for measuring the transit time difference and the working memory are already components of the conventional receiving part of a mobile radio station of a cellular mobile radio network.
In the case of a mobile radio station designed for the additional feature: “determining one's own location”, in a further development of the invention there is the possibility of also requesting a fixed (wire or fiber) network by requesting an authorized subscriber by dialing the radio subscriber and retransmitting it via the latter Make stations available.
The location coordinates on a voice channel can expediently be transmitted in digital form via a modem.
Another possibility is to switch on a digital voice output at some point in the transmission path between the mobile station and the calling subscriber. This can advantageously already take place in the mobile station, but can also only take place at the calling subscriber.
Another advantageous possibility of retransmitting the location coordinates would be the native data transmission in the organization channel or voice channel. In addition, the retransmission of the location coordinates on special data channels would be conceivable.
In addition to the already discussed display of the location coordinates on an LCD display, a more convenient display with a graphic display with the display of map sections is also conceivable, which obtain their background information from a suitable database (e.g. topographical database).
For special applications, such as B. the securing of value transports, a mobile station is also conceivable, which, without the need for voice communication and the necessary voice input and output, is only used to report one's own location. In the case of such a version of a mobile station, which is emaciated from a location reporting device, it is also expedient to dispense with a display unit because the location reporting device no longer necessarily has to be accommodated in the driver's cab of a vehicle.
The invention is explained in more detail below on the basis of two diagrams and two block diagrams:
Show it<ul id="ul0002" list-style="none"><li>Fig. 1, the data telegrams received in each mobile station of a cellular radio network from different radio base stations and their evaluation with regard to the transit time</li><li>2 shows a passive location receiver for determining one's own location</li><li>3 shows an additional device for a mobile station for determining one's own location</li></ul>
The upper diagram of FIG. 1 shows the assignment of the different base stations to one of the 32 time slots of the 2.4 s pulse frame. The reference base station is selected based on its field strength or distance.
The diagram below shows the runtime differences that occur in the data telegrams sent by the various base stations in relation to the selected base base station. The measurements shown only briefly in FIG. 1 run in every mobile station of a network-synchronous cellular mobile radio network. You are e.g. B. in the previously mentioned literature radio technology: 41 (1986), No. 4, pp. 146-149 described in detail. The Fig. 2nd shows a mobile station emaciated to a passive location receiver. The data telegrams of various radio base stations, which are transmitted in a cyclical alternation via a receiving antenna on the network organization channel (e.g. network C of the DBP 465.090 MHz), are received in the receiver unit 1, demodulated and, after processing the data in the circuit block 2, the runtime difference in a cyclical sequence to the selected reference base station according to FIG. 1 below, determined.
The results of the transit time difference measurement are entered into a working memory 3, which consequently contains a list of all received radio base stations with the associated transit time difference.
On the other hand, the coordinates of the geographical locations of all existing radio base stations are stored in a fixed memory 4. In the arithmetic unit 5, controlled by appropriate software, the runtime differences of the data telegrams of the received base stations are linked to the associated location coordinates. This is done according to an algorithm suitable for the hyperbolic location method. The own location coordinates are shown on a display unit 6, an LCD display.
The dashed-line display with a graphic display 7 is also possible as an alternative with somewhat greater effort. The graphic display 7 is described from a suitable database 8 with a map section as background information.
3 shows a mobile station 11 in which the receiver unit 1, the device for measuring the time difference 2 and the working memory 3 are already contained in the receiving part of the mobile station 11, if the mobile station for a network-synchronous cellular mobile radio network with assignment of its own location to a specific radio cell is designed.
As a result, only the fixed memory 4 and the arithmetic unit 5 are necessary for the more precise determination of the location coordinates if the location coordinates are initially not displayed, which, as already stated, could be useful for certain applications.
The normal case is of course the equipment of the mobile station 11 with a display. 3, two variants for the number are also possible. An LCD display 6 is also provided here as a simple solution. The more complex solution is based on a graphic display 7, which obtains its background information in the form of a map section from a suitable database 8. The more comfortable version has already been implemented in vehicle control systems, e.g. B. the Blaupunkt Travel Pilot traffic control system presented at the Hanover industrial fair in April 1988 and the company brochures displayed there.
3 shows a particularly important application of the device according to the invention, namely the query of the location coordinates by an authorized third party. This third-party subscriber can dial the number of the radio subscriber both from the mobile radio network and from the telephone network and then automatically keeps the location coordinates sent back via the transmitter of the mobile station 11 instead of a conversation. The location coordinates can be transmitted back via the normal voice channel, via the system-specific data transmission of the organizational or voice channel or via a special data channel. The transmission to the normal voice channel does not require any intervention in the existing cellular mobile network.
3 contains two variants for this alternative. On the one hand, the digital location coordinates can be transmitted in the voice channel via a dashed modem 10.
It is also possible to convert the location coordinates in a digital voice output 9 (also shown in dashed lines in FIG. 3) in the mobile station or at the calling third party in the manner of a time announcement.
For voice transport security tasks, all voice communication as well as the display 6 or 7 and 8 can be omitted. What remains would be a location receiver and a transmitter for the transmission of the location coordinates.
The use of the hyperbola locating method is briefly described below with reference to FIG. 4, the relationships of four radio festival detonations S0 to S3 being drawn and explained for the sake of clarity.
4 the coordinates of the 4 base stations from the fixed memory 4 and the resulting distances between the reference base station S0 and the base stations S1 to S3 as well as the associated angular relationships α n are known. The relative distances to the base stations are also known to the reference radio base station from the main memory 4. The location coordinates x sought are unknown<sub>Butt</sub> and y<sub>Butt</sub> .
Starting from the hyperbola basic equation<maths id="math0001" num=""><img file="EP0341738A2_D0001.tif" /></maths> are the following basic ones. Conditions for calculating x<sub>Butt</sub> and y<sub>Butt</sub> Fulfills: a<sub>n</sub> (n = number of the radio station) results from half the relative distance to the radio station b<sub>n</sub> results from the root of e<sub>n</sub>² a<sub>n</sub>2, where e<sub>n</sub> arises from half the distance between the reference radio base station S0 and the radio base station Sn.
From this, different systems of equations can be derived which lead to the determination of the own location in the computing unit 5.
The software effort required for this is not insignificant and increases with the number of radio base stations included in the location determination, but does not represent an insurmountable difficulty. Of course, the higher computing effort will result in a higher accuracy of the location coordinates.
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| Document | Office | Kind | Date |
|---|---|---|---|
| 3816377 | Germany | A | |
| 3816377 | Germany | – | |
| DE19883816377 | – | – | – |
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|---|---|---|---|
| EP0341738A2This record | European Patent Office (EPO) | A2 | |
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| EP0341738A3 | European Patent Office (EPO) | A3 | |
| DE3816377C2 | Germany | C2 | |
| EP0341738B1 | European Patent Office (EPO) | B1 | |
| AT154982T | Austria | T | |
| DE58909805D1 | Germany | D1 |
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Numbers
- Publication
- 0341738
- Publication, DOCDB
- 0341738
- Publication, EPODOC
- EP0341738
- Application
- 108603
- Application, DOCDB
- 89108603
- Application, EPODOC
- EP19890108603
Titles3
- German
- Einrichtung zur Eigenstandortbestimmung, insbesondere von Fahrzeugen.
- English
- Apparatus for own position-fixing, especially for vehicles.
- French
- Dispositif de détermination de la position propre, notamment pour des véhicules.
Classification
- CPC, 3
- G01S5/10
- G01S5/0009
- H04W64/00
- IPC, 4
- G01S5 00
- G01S5 10
- H04Q7 06
- H04W64 00
Designated states9
- Contracting states, 9
- Austria
- Switzerland
- Germany
- France
- United Kingdom
- Italy
- Liechtenstein
- Netherlands (Kingdom of the)
- Sweden