Method for radar detection of targets
The method and system enhance radar target detection reliability by using high-resolution maps and sensor data to calculate a reliable confidence index, effectively distinguishing false targets and improving guidance and warning systems for autonomous vehicles.
Patent Information
- Application Number
- JP2022552126
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-03-04
- Filing Date
- 2021-02-04
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2041-02-04
AI Technical Summary
Existing radar systems often detect non-existent targets, called 'ghost targets' or 'false targets', due to stray reflections, leading to unreliable target detection.
A method and system that utilize real-time digital data from high-resolution maps and optional sensor data to calculate a reliable confidence index for radar targets, distinguishing between false and real targets by modeling electromagnetic wave propagation and integrating data from multiple sensors to enhance accuracy.
Improves the reliability of radar target detection by accurately distinguishing between false and real targets, enhancing the guidance and warning systems for autonomous vehicles.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The invention relates to a method for detecting targets using radar. The invention also relates to a method for guiding or warning a motor vehicle implementing such a method for detecting targets using radar. The invention also relates to a device for detecting targets using radar. The invention also relates to a motor vehicle equipped with such a device for detecting targets using radar. [Background technology]
[0002] Various types of sensing sensors are used to assist in driving or autonomously guiding a motor vehicle. Among them, radar exhibits important qualities, including robustness with respect to weather conditions, a detection range greater than 200 meters, and the ability to detect hidden targets. Radar thus enables effective assistance in driving a motor vehicle by detecting targets that tend to obstruct the motor vehicle's path. However, existing radar target detection solutions are not sufficiently reliable. Specifically, radar often detects non-existent targets, called "ghost targets" or "false targets," due to numerous stray reflections of radar waves. A major challenge for radar is distinguishing ghost targets from real targets. Summary of the Invention
[0003] The aim of the invention is to provide a device and method for detecting targets using radar, the degree of reliability of which is improved and which in particular allows the guidance or warning of autonomous vehicles.
[0004] To that end, the invention relates to a first method for detecting a target using a radar, the first method comprising: - determining digital data representative of the environment of said radar in real time; - calculating probabilities of the presence of false targets in a plurality of regions of the environment of the radar based on the digital data representative of the environment of the radar; - receiving digital data transmitted by said radar corresponding to at least one radar target, said digital data including digital data about the position of said at least one radar target; - calculating a reliable confidence index associated with the at least one radar target based on the probability of the presence of the false target within a region in which the at least one radar target is located; Includes:
[0005] The step of determining digital data representative of the environment of the radar may use digital data from a high resolution map, and optionally data from the radar and optionally from one or more other sensors.
[0006] The step of calculating the probability of the presence of the false target may be based on equations relating to the propagation of electromagnetic waves in the environment of the radar which depend on the digital data representing the environment of the radar.
[0007] The digital data transmitted by the radar corresponding to at least one radar target may include an initial confidence index, and the calculation of a reliable confidence index relating to the at least one radar target may include the following substeps: - if the probability of the presence of the false target in the region in which the at least one radar target is located is lower than a given threshold, the reliable confidence index is equal to the initial confidence index; - if the probability of the presence of the false target in the region in which the at least one radar target is located is equal to or greater than the given threshold, the new reliable confidence index is strictly smaller than the initial confidence index. This may include:
[0008] The invention also relates to a second method for detecting targets using radar and at least one other sensor, which may include a first phase consisting of implementing a method for detecting targets using radar according to the first method as defined above, and may also include a fusion step of integrating said digital data from said method for detecting targets using radar and additional digital data transmitted by at least one other sensor to output digital data corresponding to at least one target, said digital data including a position of said at least one target and a fusion confidence index for said at least one target.
[0009] The second method for detecting targets using a radar and at least one other sensor may further include the following step: if a target from the fusion step has a fusion confidence index greater than a predetermined threshold, the digital data relating to the at least one target is transmitted to the at least one target to be taken into account in the step of determining digital data representative of the environment of the radar.
[0010] The invention also relates to a third method for guiding or warning a vehicle, which method comprises implementing the method for detecting targets using radar according to the first method as defined above, or implementing the method for detecting targets using radar and at least one other sensor according to the second method as defined above, and transmitting the digital data representing each identified target to a vehicle computer so that the digital data can be taken into account when guiding or warning the vehicle.
[0011] According to the invention, a first system allows the detection of targets using a radar, said first system comprising at least one radar connected by a communication device to a computer comprising hardware and / or software elements implementing said first method as defined above, in particular hardware and / or software elements designed to implement said first method as defined above.
[0012] According to the invention, a second generic system allows for the detection of targets using a radar and at least one sensor, said second system comprising a system for detecting targets using a radar as defined by the first system, at least one other sensor and another computer, said other computer comprising hardware and / or software elements implementing the second method as defined above, in particular hardware and / or software elements designed to implement the second method as defined above.
[0013] The invention also relates to a motor vehicle equipped with a driver assistance system, a comprehensive system for detecting targets using a radar and at least one sensor as defined in accordance with the second system above, and a computer implementing a method for guiding or warning the vehicle according to the third method as defined above.
[0014] These objects, features and advantages of the present invention will be disclosed in detail in the following description of one particular embodiment, given by way of non-limiting example and with reference to the accompanying drawings. [Brief explanation of the drawings]
[0015] [Figure 1] 1 is a schematic flow diagram of a method for detecting a target using radar, according to one embodiment of the invention. [Figure 2]1 is a schematic diagram of a system for detecting targets using radar, according to one embodiment of the invention. DETAILED DESCRIPTION OF THE INVENTION
[0016] One embodiment of a method for detecting targets using radar is described below with reference to FIG.
[0017] Throughout the remainder of the specification, the expression "radar target" is used to refer to a target detected using radar, the term "false target" is used to refer to a radar target that is incorrectly detected, and the term "real target" is used to refer to a radar target that is not false. The object of the invention is to determine at least which radar targets have a high probability of being false targets.
[0018] The method is based on the real-time calculation of a reliability index associated with each radar target as a function of the area in which the radar target is located, and in particular as a function of the level of electromagnetic wave reflection caused by the radar's specific environment.
[0019] The method performs a first step E1 of determining, in real time, digital data representative of the environment of the radar 1. For this, the method for detecting targets using a radar uses digital data from a high-resolution map 3, and optionally data from said radar and optionally from one or more other sensors. The digital data from the high-resolution map 3 may be on-board and stored locally in an electronic memory, or may be transmitted from a remote server by any communication means.
[0020] The high resolution map 3 describes the road environment and can include information such as road width, tunnel height, obstacle types, bridge locations, etc.
[0021] In addition, additional digital data from the radar itself and / or from any other sensors make it possible to obtain a complete picture of the radar's environment. Such additional digital data may come from a fusion step E5, which will be explained later. These additional digital data include in particular elements that may not be present in the high-resolution map 3, such as, for example, trucks parked on the side of the road.
[0022] In this step, the geometry of the elements making up the road environment may be simplified in order to preserve only those geometric characteristics that affect the model used in the next step, step E2.
[0023] In a second step E2, the method performs a calculation of the probability of the presence of false targets in a number of regions based on the digital data representative of this environment of the radar, i.e. the environment of the radar determined in the first step.
[0024] The calculation of the probability of the presence of a false target is performed by modeling the physical laws that cause the reflection of radar waves leaving the environment. According to an embodiment, this calculation is based on a model of the electromagnetic radiation pattern. This calculation uses more data provided by an on-board database 2 that contains digital data corresponding to the electromagnetic properties of road objects. This calculation may also use configuration parameters of the radar 1, such as transmit and receive radio frequency parameters, as well as the configuration of the radar antenna.
[0025] At the completion of this second step of the method, the environment of the radar 1 is thus mapped in real time, along with the level of probability of the presence of false targets in various regions within this environment of the radar.
[0026] In a third step E3, the method calculates a reliable confidence index transmitted by the radar and relating to at least one radar target, and preferably to each radar target, as a function of the probability of the presence of a false target in the region of the radar's environment in which the at least one radar target is located.
[0027] In this third step, processing involves detecting all or some of the radar targets from radar 1. Radar 1 transmits digital data representing the detected radar targets as output. These digital data include, among other things, at least information about the location of each radar target and an initial confidence index associated with each radar target. This initial confidence index for the radar targets has been established by radar 1 itself and, in practice, is not accurate enough for sufficiently reliable identification of false targets. According to the method of the invention, the probability of the presence of a false target calculated in the second step corresponds to the location of the presence of each radar target. This probability is used in the calculation of a new, more reliable confidence index for the radar target, referred to as the reliable confidence index.
[0028] An exemplary calculation performed according to this embodiment is: - if the probability of the presence of a false radar target in the area where the radar target is located is lower than a given threshold (for example, 0.5), the reliable confidence index for that radar target is equal to the initial confidence index, i.e., the confidence index remains unchanged; - Otherwise, the trusted confidence index will be set to a value strictly lower than the initial confidence index. For example, the trusted confidence index is calculated using the formula: reliable_confidence_index=2×initial_confidence_index×(1-probability_track_false) It should be calculated according to
[0029] In a fourth, filtering step E4, digital data representing the detected radar targets coming directly from radar 1 are compared with the data from step E3. If there is a correspondence between the radar targets coming directly from radar 1 and the radar targets processed by the inventive method (especially at substantially the same location), the radar targets coming directly from the radar are replaced by the corresponding targets from step E3, and the reliability of the associated digital data for this has been determined.
[0030] This fourth, filtering step E4, involves storing the radar targets from the third step E3 in memory to enable them to be correlated with targets directly from the radar.
[0031] One embodiment of a method for detecting targets using a radar and at least one other sensor is further described below with reference to Figure 1. In particular, it is advantageous to be able to enrich information from a single radar with additional information of the same environment detected by one or more other sensors, e.g., cameras, which may be of a different nature.
[0032] The method for detecting a target using a radar and at least one other sensor integrates steps E1 to E4 described above for reliable detection of a radar target by the radar 1, as well as an additional, fusion step E5.
[0033] The purpose of the fusion step E5 is to use the information collected by the various sensors to increase the accuracy of the data on each target, and in particular the reliability of the confidence index for each target.
[0034] A fusion step E5 processes the targets from the fourth filtering step E4 described above, as well as data from one or more other sensors, which may be, for example, radar and / or camera sensors.
[0035] For each radar target, the fusion step E5 recalculates a confidence index, called the fusion confidence index, which takes into account the information from the filtering step E4, in particular the reliable confidence index relating to the radar target, and the digital data relating to this same target from one or more other sensors.
[0036] Step E5 transmits the thus recalculated radar targets, ie in particular the values of the fusion confidence indices, to processes that use these radar targets, for example autonomous driving or driver assistance systems.
[0037] In one embodiment, the fusion step E5 includes a step of comparing each fusion confidence index with a minimum threshold. In this case, the fusion step E5 transmits as output, for example to at least one user process, only those digital data related to radar targets whose fusion confidence index is greater than the minimum threshold. After output from this fusion step E5, the confidence index for the radar target detected using the radar has thus been improved through a dual process consisting of both considering the effect of radar wave reflection by the radar environment and considering additional data from at least one other sensor. As a result, the confidence index related to the radar target is thus highly reliable, thereby making it possible to distinguish false targets from real radar targets. In other words, the "fused target" obtained from this fusion step E5 will be filtered according to its own confidence index, hence referred to as the fusion confidence index.
[0038] Incidentally, from among the radar targets coming directly from radar 1 that are not associated with any target from the third step E3, these are preferably transmitted to the fusion of sensors.
[0039] In addition, the digital data from this fusion step E5 may also be used in a first step E1 of determining digital data representative of the radar's environment. Preferably, only those targets with a large fusion confidence index are transmitted to be taken into account in this first determining step E1. For this purpose, it is possible, for example, to set criteria related to one or more minimum fusion confidence indexes related to the fused targets processed by this first step. For example, it is possible to impose a first large minimum fusion confidence index (e.g., 0.9) for fused targets located by a single sensor and a second minimum fusion confidence index (e.g., 0.5) smaller than the first one for fused targets located by two or more sensors.
[0040] One embodiment of a method for guiding or warning a motor vehicle is further described below with reference to FIG.
[0041] The method incorporates steps E1 to E5 described above as well as the additional step of assisting or autonomously driving the motor vehicle. To this end, the method includes a step E6 of transmitting digital data representing the targets identified by the fusion step E5 to a vehicle computer to be taken into account in the vehicle's guidance or warning management, in which only those fused targets with a fusion confidence index greater than a given threshold are considered.
[0042] Step E6 of transmitting digital data representing each identified target to the vehicle's computer may have the end purpose, for example, of displaying the targets on a screen for the driver and / or of being taken into account by a vehicle guidance system or an information or driver warning system to prevent danger.
[0043] The invention also relates to a system for detecting targets using radar, a system for detecting targets using radar and at least one other sensor, and a motor vehicle 10 incorporating such a system.
[0044] An example of a motor vehicle 10 equipped with a system 7 for detecting targets using radar is described below with reference to Figure 2. The motor vehicle 10 may be any type of vehicle, in particular a passenger vehicle, a work vehicle or an autonomous vehicle.
[0045] The system 7 for detecting targets using radar may be part of a comprehensive system 8 for detecting targets using radar and at least one other sensor, the comprehensive system 8 itself forming part of a guidance or warning device 9 for the motor vehicle 10.
[0046] According to an embodiment, the system 7 for detecting a target using radar mainly comprises: - Radar 1 and - an on-board database2 of the electromagnetic properties of all materials likely to be encountered in the road environment; - High-resolution maps3 containing information about the road environment; - Computer 4 and Equipped with.
[0047] The system advantageously further comprises an electronic memory 49 constituting a storage medium readable by the computing device or by the computer 4 and containing instructions which, when executed by the computing device or computer, cause the latter to perform the method for detecting targets described above.
[0048] All of these components are interconnected by communication devices.
[0049] Computer 4 has the following modules: a first module 41 implementing a step E1 of determining the environment of the vehicle; a second module 42 implementing a step E2 of calculating the probability of the presence of a false target in the environment of the vehicle; a third module 43 for implementing a third step E3 of calculating a reliable confidence index for the radar target; a fourth module 44 for carrying out a fourth filtering step E4 before transmitting the radar targets to the fusion device for the sensor 5; This allows the execution of software including
[0050] The comprehensive system 8 for detecting a target using radar and at least one other sensor mainly comprises: - at least one system 7 for detecting targets using radar as described above; - at least one other sensor 11, for example a radar or camera sensor, - a computer forming a fusion device 5 enabling the execution of software for implementing the data fusion step E5; Equipped with.
[0051] Incidentally, the aforementioned computers 4 and 5 may be separate or may form a single computer.
[0052] Automatic vehicle guidance or warning systems9 primarily: - at least one comprehensive system 8 for detecting targets using a radar and at least one other sensor as described above; - Driver assistance systems 6 and Equipped with.
[0053] This guidance or warning system may form a driver assistance system or an autonomous guidance system for an autonomous vehicle.
[0054] The motor vehicle 10, and in particular the system 7 for detecting targets using radar, preferably comprises all of the hardware and / or software elements configured to implement the method defined above.
Claims
1. A method for detecting a radar target using a radar (1), comprising: a step (E1) of determining digital data representative of the environment of said radar (1) in real time; a step (E2) of calculating, based on the digital data representative of the environment of the radar, the probability of the presence of false targets in a number of regions of this environment of the radar (1); receiving digital data transmitted by the radar (1) corresponding to at least one radar target, the digital data including digital data about the position of the at least one radar target; a step (E3) of calculating a reliable confidence index relating to said at least one radar target based on said probability of the presence of said false target in said region in which said at least one radar target is located; a fusion step (E5) of integrating said digital data with additional digital data transmitted by at least one other sensor, the integrated digital data including a position of said at least one radar target and a fusion confidence index relating to said at least one radar target; Including, If the fused target resulting from the fusion step (E5) has a fusion confidence index greater than a predetermined threshold, the additional digital data is transmitted as output and is used together with the digital data representative of the environment of the radar (1) in a step (E1) of determining digital data representative of the environment of the radar. A method characterized by:
2. After said fusion step (E5), a step (E1) of determining digital data representative of said environment of said radar uses digital data from a high resolution map (3) and said additional digital data from said radar (1) and / or from said at least one other sensor (11), 2. The method of claim 1, wherein said additional digital data includes elements that may not be present in said high resolution map (3).
3. 3. The method according to claim 1 or 2, characterized in that the step (E2) of calculating the probability of the presence of a false target is based on equations relating to the propagation of electromagnetic waves in the environment of the radar (1), which depend on the digital data representative of the environment of the radar.
4. 4. A method according to claim 1 or 3, characterized in that the digital data transmitted by the radar (1) corresponding to at least one radar target includes an initial confidence index.
5. A step (E3) of calculating a reliable confidence index relating to said at least one radar target, if the probability of the presence of the false target in the region in which the at least one radar target is located is lower than a given threshold, the reliable confidence index is equal to the initial confidence index; If the probability of the presence of the false target in the region in which the at least one radar target is located is equal to or greater than the given threshold, a new reliable confidence index is smaller than the initial confidence index.
5. The method of claim 4, comprising:
6. 2. The method of claim 1, wherein said fusing step (E5) compares said fusion confidence index with a predetermined threshold and transmits as output only digital data relating to said radar targets for which said fusion confidence index is greater than said threshold.
7. 1. A method for guiding or warning a vehicle, comprising implementing the method for detecting radar targets using a radar according to any one of claims 1 to 4, or implementing the method for detecting radar targets using a radar and at least one other sensor according to claim 5 or 6, and comprising a step (E6) of transmitting the digital data representing each identified radar target to a vehicle computer to be taken into account when guiding or warning the vehicle.
8. 1. A system (7) for detecting radar targets using a radar comprising at least one radar (1) connected by a communication device to a computer (4) comprising hardware and / or software elements (41, 42, 43, 44), the system (7) implementing the method according to any one of claims 1 to 4 and comprising hardware and / or software elements designed to implement the method according to any one of claims 1 to 4.
9. A comprehensive system (8) for detecting radar targets using a radar and at least one sensor, comprising: a system (7) for detecting radar targets using a radar according to claim 8; at least one other sensor (11); and a further computer (5), wherein the further computer (5) comprises hardware and / or software elements, and wherein the comprehensive system (8) implements and comprises hardware and / or software elements designed to implement the method according to claim 5 or 6.
10. 10. A motor vehicle (10) comprising a driver assistance system (6), a comprehensive system (8) for detecting radar targets using a radar and at least one sensor according to claim 9, and a computer implementing the method for guiding or warning a vehicle according to claim 7.
Citation Information
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