Methods, devices and computer-readable storage medium comprising instructions for determining applicable traffic regulations for a motor vehicle
11538341 · 2022-12-27
Assignee
Inventors
Cpc classification
G08G1/096741
PHYSICS
G08G1/0129
PHYSICS
G08G1/096725
PHYSICS
G08G1/096775
PHYSICS
International classification
Abstract
Methods, devices and a computer-readable medium comprising instructions for determining applicable traffic regulations for a motor vehicle are provided. In some embodiments, the position and direction of movement of the motor vehicle are determined. The position and direction of movement of the motor vehicle are then transmitted to a back end by a transmission apparatus of the motor vehicle. In response to the information transmitted to the back end, information concerning traffic regulations applicable to the position of the motor vehicle is received by the transmission apparatus. The transmission of the position and direction of movement of the motor vehicle to the back end is carried out in a cyclical manner or in accordance with information concerning the validity of the traffic regulations, which is included in the information concerning the traffic regulations applicable at the position of the motor vehicle.
Claims
1. A method for determining applicable traffic regulations for a motor vehicle, comprising: transmitting at least one position and one direction of movement of the motor vehicle to a back end using a transmission apparatus of the motor vehicle; and in response, receiving, using the transmission apparatus, information concerning traffic regulations applicable at the position of the motor vehicle, and additionally receiving validity information concerning the traffic regulations, the validity information comprising at least a minimum distance in the direction of movement of the motor vehicle to a point where a change in traffic regulations occurs; repeating transmitting the at least one position and the one direction of movement of the motor vehicle to the back end when the vehicle is close to the point where the change in traffic regulations occurs to keep the required volume of data to be transmitted small.
2. The method of claim 1, wherein a history of positions of the motor vehicle is transmitted to the back end.
3. The method of claim 1, wherein the validity information comprises an indicator that the position of the motor vehicle is in or adjacent to a region of an intersection.
4. The method of claim 1, wherein the validity information relate to one or more of a geographical validity and a geographical validity that depends on a travel route.
5. The method of claim 4, wherein the transmission of at least one position and one direction of movement of the motor vehicle to the back end is carried out again when the geographical validity ceases to apply.
6. The method of claim 1, wherein the information concerning the traffic regulations applicable at the position of the motor vehicle comprises detailed information relating to at least one intersection.
7. The method of claim 1, wherein the traffic regulations applicable at the position of the motor vehicle relate to a speed limit, a right of way or a restriction on overtaking.
8. A non-transitory computer-readable storage medium comprising instructions that, when executed by a computer, cause the computer to execute the steps of the method of claim 1 for determining applicable traffic regulations for a motor vehicle.
9. A motor vehicle, configured to execute a method according to claim 1 for determining applicable traffic regulations.
10. The method of claim 1, a transmission interval of transmitting the at least one position and the one direction of movement of the motor vehicle to a back end is dependent on the validity information.
11. The method of claim 1, wherein an increased cycle frequency is used for the transmission of at least one position and one direction of movement of the motor vehicle to the back end if the position of the motor vehicle is in or adjacent to a region of an intersection.
12. The method of claim 1, wherein, in case the vehicle is approaching an intersection, the information concerning the traffic regulations applicable at the position of the motor vehicle comprises a simple intersection model comprising one or more intersection arms leading off the intersection, wherein each intersection arm is associated with one or more applicable traffic regulations.
13. A method for determining applicable traffic regulations for a motor vehicle, comprising: receiving at least one position and one direction of movement of the motor vehicle; in response, determining information concerning the traffic regulations applicable at the position of the motor vehicle and determining validity information concerning the traffic regulations, the validity information comprising at least a minimum distance in the direction of movement of the motor vehicle to a point where a change in traffic regulations occurs; and transmitting the information concerning the traffic regulations applicable at the position of the motor vehicle to the motor vehicle and transmitting the validity information; wherein the traffic regulations applicable at the position of the motor vehicle relate to a right of way or a restriction on overtaking.
14. The method of claim 13, wherein the determination of the information concerning the traffic regulations applicable at the position of the motor vehicle and the determination of the validity information comprises: assigning the position of the motor vehicle to a road in a road network; determining traffic regulations applicable to the road at the position of the motor vehicle; and determining at least one distance within the road network until a change in the applicable traffic regulations.
15. The method of claim 13, wherein the validity information comprise an indicator that the position of the motor vehicle is in or adjacent to a region of an intersection.
16. The method of claim 13, wherein the validity information relate to one or more of a geographical validity and a geographical validity that depends on a travel route.
17. A non-transitory computer-readable storage medium comprising instructions that, when executed by a computer, cause the computer to execute the steps of the method of claim 13 for determining applicable traffic regulations for a motor vehicle.
18. A device for determining applicable traffic regulations for a motor vehicle, comprising: a transmission apparatus for transmitting at least one position and one direction of movement of the motor vehicle to a back end and for receiving information concerning the traffic regulations applicable at the position of the motor vehicle, which information concerning the traffic regulations comprises validity information concerning the traffic regulations, wherein the validity information comprising at least a minimum distance in the direction of movement of the motor vehicle to a point where a change in traffic regulations occurs; and a data processing unit for evaluating the information concerning the traffic regulations applicable at the position of the motor vehicle; wherein the transmission apparatus is configured to repeat transmitting the at least one position and one direction of movement of the motor vehicle to the back end when the vehicle is close to the point where the change in traffic regulations occurs.
19. A motor vehicle, comprising a device according to claim 18 for determining applicable traffic regulations.
20. A device for determining applicable traffic regulations for a motor vehicle, comprising: a transmission apparatus for receiving at least one position and one direction of movement of the motor vehicle and for transmitting information concerning the traffic regulations applicable at the position of the motor vehicle to the motor vehicle; and a computing unit for determining the information concerning the traffic regulations applicable at the position of the motor vehicle and for determining validity information concerning the traffic regulations, the validity information comprising at least a minimum distance in the direction of movement of the motor vehicle to a point where a change in traffic regulations occurs; wherein the computing unit is configured to provide the information concerning the traffic regulations applicable at the position of the motor vehicle with the validity information; and wherein the traffic regulations applicable at the position of the motor vehicle relate to a right of way or a restriction on overtaking.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(15) According to a first aspect, a method for determining applicable traffic regulations for a motor vehicle comprises the steps of: transmitting at least one position and one direction of movement of the motor vehicle to a back end by means of a transmission apparatus of the motor vehicle; and receiving information concerning the traffic regulations applicable at the position of the motor vehicle by means of the transmission apparatus;
the transmission of at least one position and one direction of movement of the motor vehicle to the back end being carried out in a cyclical manner or in accordance with information concerning the validity of the traffic regulations, which is included in the information concerning the traffic regulations applicable at the position of the motor vehicle.
(16) According to another aspect, a computer-readable storage medium contains instructions that, when executed by a computer, cause the computer to execute the following steps for determining applicable traffic regulations for a motor vehicle: transmitting at least one position and one direction of movement of the motor vehicle to a back end by means of a transmission apparatus of the motor vehicle; and receiving information concerning the traffic regulations applicable at the position of the motor vehicle by means of the transmission apparatus; the transmission of at least one position and one direction of movement of the motor vehicle to the back end being carried out in a cyclical manner or in accordance with information concerning the validity of the traffic regulations, which is included in the information concerning the traffic regulations applicable at the position of the motor vehicle.
(17) The term “computer” used herein is to be interpreted broadly. For example, it also encompasses controllers and other processor-based data processing devices.
(18) According to another aspect, a device for determining applicable traffic regulations for a motor vehicle comprises: a transmission apparatus for transmitting at least one position and one direction of movement of the motor vehicle to a back end and for receiving information concerning the traffic regulations applicable at the position of the motor vehicle; and a data processing unit for evaluating the information concerning the traffic regulations applicable at the position of the motor vehicle; the transmission apparatus being configured to carry out the transmission of at least one position and one direction of movement of the motor vehicle to the back end in a cyclical manner or in accordance with information concerning the validity of the traffic regulations, which is included in the information concerning the traffic regulations applicable at the position of the motor vehicle.
(19) In the context of a method that may be used in a motor vehicle or respectively a device that may be installed in a motor vehicle, only the position and direction of movement of the motor vehicle are detected and transmitted to a back end. The back end determines information concerning the applicable traffic regulations based on this information, and this determined information is then transmitted to the motor vehicle. The motor vehicle therefore does not require a sensor system for detecting road signs or special, continuously updated map information, which results in significant cost savings. The traffic regulations may be queried either in a cyclical manner, i.e., at regular temporal or spatial intervals, or in accordance with information concerning the validity of the traffic regulations. This way, only manageable volumes of data need to be transmitted in order for the data transmission between motor vehicle and back end to be highly efficient.
(20) According to an embodiment, a history of positions of the motor vehicle is transmitted to the back end. The history of positions, i.e., a trace of past waypoints, is extremely helpful for correct assignment of the vehicle position to a road, such as to the correct driving lane in the case of multi-lane roads.
(21) According to another aspect, a method for determining applicable traffic regulations for a motor vehicle comprises the following steps: receiving at least one position and one direction of movement of the motor vehicle; determining information concerning the traffic regulations applicable at the position of the motor vehicle; and transmitting the information concerning the traffic regulations applicable at the position of the motor vehicle to the motor vehicle; the information concerning the traffic regulations applicable at the position of the motor vehicle comprising information concerning the validity of the traffic regulations.
(22) According to another aspect, a computer-readable storage medium contains instructions that, when executed by a computer, cause the computer to execute the following steps for determining applicable traffic regulations for a motor vehicle: receiving at least one position and one direction of movement of the motor vehicle; determining information concerning the traffic regulations applicable at the position of the motor vehicle; and transmitting the information concerning the traffic regulations applicable at the position of the motor vehicle to the motor vehicle; the information concerning the traffic regulations applicable at the position of the motor vehicle comprising information concerning the validity of the traffic regulations.
(23) The term “computer” is to be interpreted broadly here as well. For example, it also encompasses work stations, distributed systems and other processor-based data processing devices.
(24) According to another aspect of the present aspect, a device for determining applicable traffic regulations for a motor vehicle has: a transmission apparatus for receiving at least one position and one direction of movement of the motor vehicle and for transmitting information concerning the traffic regulations applicable at the position of the motor vehicle to the motor vehicle; and a computing unit for determining the information concerning the traffic regulations applicable at the position of the motor vehicle; the computing unit being configured to provide the information concerning the traffic regulations applicable at the position of the motor vehicle with information concerning the validity of the traffic regulations.
(25) In the context of a method that may be used in a back end or respectively a device that may be installed in a back end, only the position and direction of movement of a motor vehicle are received by the back end. The back end determines information concerning the applicable traffic regulations based on this information, and this determined information is then transmitted to the motor vehicle. In order to keep the required volume of data small, the back end also determines information concerning the validity of the traffic regulations and transmits same to the motor vehicle. The traffic regulations may then be queried by means of the motor vehicle based on the validity, such that no more queries need to be sent to the back end.
(26) According to an embodiment, the determination of the information concerning the traffic regulations applicable at the position of the motor vehicle comprises the steps of: assigning the position of the motor vehicle to a road in a road network; determining traffic regulations applicable to the road at the position of the motor vehicle; and determining at least one distance within the road network until a change in the applicable traffic regulations.
(27) After the position of the motor vehicle has been assigned to a road in a road network, i.e., in a map, the desired information concerning the traffic regulations may immediately be extracted from the map data. In addition, possible travel routes may be checked for changes in traffic regulations using the map. As a result, it is easy to determine up to which future vehicle positions no query of the traffic regulations by the motor vehicle is required.
(28) According to an embodiment, the information concerning the validity of the traffic regulations comprises an indicator that the position of the motor vehicle is in or adjacent to a region of an intersection. An increased cycle frequency may for example be used for the transmission of the position and direction of movement of the motor vehicle to the back end in the presence of the indicator. This approach increases the reliability of the described solutions in regions of intersections.
(29) According to an embodiment, the information concerning the validity of the traffic regulations relates to a geographical validity, such as for example a geographical validity that depends on a travel route. The transmission of at least one position and one direction of travel of the motor vehicle to the back end is in this case carried out again when the geographical validity ceases to apply. This approach requires a very small number of queries, and therefore the volume of data accrued is very small. In addition, no permanent data connection is required. The geographical validity may for example be defined by the minimum distance until a change in the traffic regulations, however several distances for various possible routes may also be transmitted.
(30) According to an embodiment, the information concerning the traffic regulations applicable at the position of the motor vehicle comprises detailed information relating to at least one intersection. By virtue of this detailed information, e.g., relating to an intersection model or intersection network, a certain degree of pre-emption is possible in the event of latencies in the back end querying process, as a result of which the reliability of the method is increased further.
(31) According to an embodiment, the traffic regulations applicable at the position of the motor vehicle relate to a speed limit, a right of way or a restriction on overtaking. This way, typical examples of traffic regulations that apply over longer street sections and that are therefore particularly suitable for use in the solutions described are covered.
(32) In some embodiments, a method according to the disclosure herein or a device according to the disclosure herein is used in a vehicle, such as for example a motor vehicle.
(33) Further features of the present invention will become apparent from the following description and the appended claims in conjunction with the figures.
(34) In order to better understand the principles of the present invention, further embodiments are explained in greater detail below based on the FIGS. It should be understood that the invention is not limited to these embodiments and that the features described may also be combined or modified without departing from the scope as defined in the appended claims.
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(38) The processor 32 may comprise one or more processor units, for example microprocessors, digital signal processors or combinations thereof.
(39) The memories 27, 31 of the described embodiments may have volatile as well as non-volatile memory regions and may comprise a wide range of memory units and storage media, such as hard disks, optical storage media or semiconductor memories.
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(45) The processor 82 may comprise one or more processor units, for example microprocessors, digital signal processors or combinations thereof.
(46) The memories 77, 81 of the described embodiments may have volatile as well as non-volatile memory regions and may comprise a wide range of memory units and storage media, such as hard disks, optical storage media or semiconductor memories.
(47) In the following, a specific, but exemplary embodiment will be explained with reference to
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(50) The querying of the applicable traffic regulations at the back end 90 may be realized in various ways, some of which will be explained in the following.
(51) According to a first realization variant, the vehicle 40 queries the back end 90 for the current speed limit in a cyclical manner. The cyclical querying may occur at a constant frequency, for example at 1 Hz, or at a constant distance, for example every 0.5 m. This ensures that the vehicle is always informed of the current speed limit, but it creates a not insubstantial volume of data and also requires an almost permanent data connection.
(52) According to a second realization variant, the vehicle 40 also queries the back end 90 in a cyclical manner. However, when the vehicle 40 is in a region of an intersection or in the proximity of a region of an intersection, the back end 90 sends an indicator pointing out an intersection along with the speed limit. In this case, the vehicle 40 queries the back end 90 at a higher frequency until the indicator is reset. This variant increases reliability in regions of intersections, but creates an even larger volume of data than the first realization variant. In addition, an almost permanent data connection is required in this case, too.
(53) According to another variant, the vehicle 40 initially queries the back end 90 for the current speed limit. The back end 90 determines the current speed limit as well as the minimum distance until a change in the speed limit using the search algorithm 92. Both items of information are transmitted to the vehicle 40. The vehicle 40 tracks the route covered, for example using vehicle sensors, and queries the back end 90 again for the speed limit when it reaches the transmitted minimum distance. This variant requires a very small number of queries, and therefore the volume of data accrued is very small. In addition, no permanent data connection is required. Instead of the minimum distance until a change in the speed limit, several distances for various possible routes may be transmitted. In other words, the shortest distance until a change in the speed limit is stored subject to the directional constraint of the first encountered intersection. To give an example, if the vehicle 40 turns left at the first intersection in 500 m, the next change is at a distance of 525 m. If the vehicle 40 carries straight on at the first intersection in 500 m, the next change is at a distance of 751 m. If the vehicle 40 turns right at the first intersection in 500 m, the next change is at a distance of 612 m. In this case, the vehicle 40 not only monitors the distance covered, but also the selected route.
(54) According to another variant, the back end 90 transmits a simple intersection model in addition to the current speed limit and the distances until a change in the speed limit. An example of an intersection model of this kind is shown in
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(56) The distance to the intersection “1” is 150 m in the example, and the distance to the intersection “2” is 450 m. The speed limit does not change on the stretches of road to the two intersections.
(57) Therefore, in any event, the minimum distance until a change in the speed limit is greater than 150 m. The current stretch of road is now marked as having already been used for the search.
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REFERENCE NUMBER LIST
(60) 10 Determining position and direction of movement 11 Transmitting position and direction of movement 12 Receiving information concerning applicable traffic regulations 20 Device 21 Input 22 Tracking unit 23 Transmission apparatus 24 Data processing unit 25 Control unit 26 Output 27 Memory 28 User interface 30 Device 31 Memory 32 Processor 33 Input 34 Output 40 Motor vehicle 41 Navigation system 42 Surround sensor system 43 Network 44 Memory 45 Communication unit 46 Driver assistance system 47 User interface 50 Receiving position and direction of movement 51 Determining information concerning applicable traffic regulations 52 Transmitting information concerning applicable traffic regulations 60 Assigning the position to a road 61 Determining traffic regulations applicable to the road 62 Determining a distance of validity of the applicable traffic regulations 70 Device 71 First interface 72 Transmission apparatus 73 Positioning unit 74 Computing unit 75 Control unit 76 Second interface 77 Memory 78 User interface 79 Database 80 Device 81 Memory 82 Processor 83 Input 84 Output 90 Back end 91 Database 92 Search algorithm 93 Algorithm P Position VP Previous position ZP Future position
(61) The invention has been described in the preceding using various exemplary embodiments. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims. In the claims, the word “comprising” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude a plurality. A single processor, module or other unit or device may fulfil the functions of several items recited in the claims.
(62) The mere fact that certain measures are recited in mutually different dependent claims or embodiments does not indicate that a combination of these measures cannot be used to advantage. Any reference signs in the claims should not be construed as limiting the scope.