EP1579404A1

Method and system for monitoring the location of a device

Abstract

A location of a vehicle is monitored using a predefined geo-fencing boundary within a coordinate system. An angle between a selected straight edge of the boundary and an axis of the coordinate system is determined, and the boundary is rotated by the angle such that the selected straight edge of the rotated boundary is parallel to the axis of the coordinate system. Subsequently, a set of coordinates associated with a particular location of a monitored device are identified and rotated by the previously determined angle. The rotated set of coordinates is then compared to the rotated boundary to determine a location of the monitored device with respect to the selected boundary. This information can be used to determine whether the vehicle remains within the predefined geo-fencing boundary.

EP1579404A1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 21 November 2023, 2.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

22 claims: 3 independent, 19 dependent

  1. 1
    Claims of equivalent WO 2004049282 A1 WHAT IS CLAIMED IS:L A method for monitoring a location of a vehicle, the method comprising: selecting a boundary within a coordinate system, the boundary including at least one straight edge;determining an angle between a selected straight edge of the boundary and an axis of the coordinate system;rotating the boundary by the angle such that the selected straight edge of the rotated boundary is parallel to the axis of the coordinate system;identifying a set of coordinates associated with a particular location of a monitored device;rotating the identified set of coordinates by the angle;and comparing the rotated set of coordinates to the rotated boundary to determine a location of the monitored device with respect to the selected boundary.
  2. 8
    A system for facilitating vehicle location monitoring, the system comprising:a locator operable to identify a location of a monitored device;a memory operable to store at least one angle of rotation and rotated coordinates associated with a predetermined boundary, the rotated coordinates corresponding to original coordinates defining the predetermined boundary in a coordinate system, with each of the original coordinates being rotated by a corresponding angle of rotation to generate the corresponding rotated coordinates prior to storing each of the rotated coordinates in the memory, wherein the rotated coordinates define at least one segment of a rotated boundary;and a processor operable to rotate coordinates representing the identified location by at least one of the stored angles of rotation to calculate rotated location coordinates and to compare the rotated location coordinates with at least two of the rotated coordinates to determine a relative position between the monitored device and the predetermined boundary.
  3. 17
    A method for monitoring a location of a vehicle, the method comprising:storing at least two sets of rotated coordinates associated with a predetermined rectangular boundary, the at least two sets of rotated coordinates corresponding to at least two sets of original coordinates that define the predetermined rectangular boundary in a coordinate system, wherein each set of original coordinates is rotated by an angle of rotation to generate the corresponding set of rotated coordinates prior to storing each set of rotated coordinates, and the at least two sets of rotated coordinates define a rotated rectangular boundary having sides that are parallel to axis of the coordinate system;storing the angle of rotation, wherein the angle of rotation is defined by an angle between one of the axis of the coordinate system and a side of the predetermined rectangular boundary;identifying a location of a vehicle;rotating a set of coordinates representing the identified location of the vehicle by the angle of rotation to generate a rotated set of location coordinates;and comparing the rotated set of location coordinates with the at least two sets of rotated coordinates to determine a position of the vehicle relative to the predetermined rectangular boundary.