IP Library Granted Patent US 11,762,084
Granted Patent B2
US 11,762,084 · App. 16/314,884 · Granted Sep 19, 2023

Vehicle radar system

Inventors: Walter Poiger (Bad Neustadt, DE); Juergen Maisel (Grafing Bei Muenchen, DE)
Assignee: Arriver Software AB
G01S13/878G01S13/343G01S13/345G01S13/4445G01S13/584G01S13/931G01S13/505G01S13/72G01S2013/93271
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Quick Facts
Patent No.
US 11,762,084
App. No.
16/314,884
Granted
Sep 19, 2023
Kind
B2
Abstract

A vehicle radar system ( 3 ) and method including a first and second radar sensor arrangement ( 4 a, 4 b ). Each radar sensor arrangement ( 4 a, 4 b ) includes at least two transmitter antenna devices ( 10 a 1, 10 a 2 ) and at least two receiver antenna devices ( 13 a 1, 13 a 2, 13 a 3, 13 a 4 ), where each receiver antenna device ( 13 a 1, 13 a 2, 13 a 3, 13 a 4 ) has a corresponding boresight extension ( 46 a, 46 b ) that is perpendicular to an antenna plane ( 57 ). Each receiver antenna device ( 13 a 1, 13 a 2, 13 a 3, 13 a 4 ) has a corresponding antenna radiation pattern ( 47 a, 47 b ) that has a lower gain ( 48 a, 48 b ) in its boresight extension ( 46 a, 46 b ) than at a certain corresponding first maximum gain azimuth angle (φ 1a , φ 1b ) where there is a first maximum gain ( 49 a, 49 b ). Each radar sensor arrangement ( 4 a, 4 b ) is mounted such that each first maximum gain ( 49 a, 49 b ) is directed along a corresponding first maximum gain extension ( 51 a, 51 b ), such that an overlap part ( 56 ) of the antenna radiation patterns ( 47 a, 47 b ) is formed.

Claims (33)

1. A vehicle radar system comprising:

a first radar sensor arrangement and a second radar sensor arrangement,

wherein each of the radar sensor arrangements includes at least two transmitter antenna devices and at least two receiver antenna devices,

wherein each of the at least two receiver antenna devices of the corresponding radar sensor arrangement defines a corresponding boresight extension that is perpendicular to a corresponding antenna plane,

wherein each of the at least two receiver antenna devices of the corresponding radar sensor arrangement defines a corresponding antenna radiation pattern, the antenna radiation pattern having a lower gain in the corresponding boresight extension than at a certain corresponding first maximum gain azimuth angle with respect to the corresponding boresight extension, where there is a first maximum gain at the first maximum gain azimuth angle, wherein each of the radar sensor arrangements is mounted such that the corresponding first maximum gain is directed along a corresponding first maximum gain extension, such that an overlap part of the antenna radiation patterns is formed,

wherein the vehicle radar system is arranged to determine an angle position relative to the vehicle radar system for a target object from a difference of radial velocity of the first radar sensor arrangement and the second radar sensor arrangement,

wherein the at least two transmitter antenna devices of the first radar sensor arrangement define a corresponding boresight extension and are arranged to switch between transmitting a first relative antenna radiation pattern and a second relative antenna radiation pattern,

wherein the first relative antenna radiation pattern has a maximum gain at the corresponding boresight extension, and

wherein the second relative antenna radiation pattern has a notch at the corresponding boresight extension.

2. The vehicle radar system according to claim 1 , wherein the radar sensor arrangements are arranged to be mounted to a vehicle, having a forward direction, such that the first maximum gain extension extends in the forward direction, and such that the corresponding first maximum gain azimuth angle is formed between the boresight extension and the first maximum gain extension.

3. The vehicle radar system according to claim 1 , wherein the antenna radiation pattern for each of the receiver antenna devices has a lower gain in the corresponding boresight extension than at a second maximum gain azimuth angle where there is a second maximum gain.

4. The vehicle radar system according to claim 1 , wherein the overlap part enables an overlap processing.

5. The vehicle radar system according to claim 1 , wherein the vehicle radar system is arranged to synchronize the first radar sensor arrangement and the second radar sensor arrangement such that a number of detections are doubled for the target object when the target object is in a field of view of both of the first radar sensor arrangement and the second radar sensor arrangement.

6. The vehicle radar system according to claim 1 , wherein the at least two transmitter antenna devices are arranged to transmit a first relative antenna radiation pattern and a second relative antenna radiation pattern, where the first relative antenna radiation pattern is obtained by feeding two of the transmitter antenna devices in phase, while the second relative antenna radiation pattern is obtained by feeding two of the transmitter antenna devices out of phase with each other.

7. The vehicle radar system according to claim 1 , wherein the at least two transmitter antenna devices are arranged to transmit a Frequency Modulated Continuous Wave (FMCW) chirp signal.

8. A method for a vehicle radar system that includes a first radar sensor arrangement and a second radar sensor arrangement, the method comprising:

receiving signals by the first radar sensor arrangement and the second radar sensor arrangement, wherein each of the radar sensor arrangements includes at least two transmitter antenna devices and at least two receiver antenna devices, wherein each of the at least two receiver antenna devices of the corresponding radar sensor arrangement defines a corresponding boresight extension that is perpendicular to a corresponding antenna plane, wherein each of the at least two receiver antenna devices of the corresponding radar sensor arrangement defines a corresponding antenna radiation pattern that has a lower gain in the corresponding boresight extension than at a certain corresponding first maximum gain azimuth angle with respect to the boresight extension, where there is a first maximum gain at the first maximum gain azimuth angle, wherein each of the radar sensor arrangements is mounted such that the corresponding first maximum gain is directed along a corresponding first maximum gain extension, such that an overlap part of the antenna radiation patterns is formed;

feeding the at least two transmitter antenna devices of the first radar sensor arrangement to switch between transmitting a first relative antenna radiation pattern and a second relative antenna radiation pattern; and

determining an angle position relative the vehicle radar system for a target object from a difference of radial velocity of the first radar sensor arrangement and the second radar sensor arrangement,

wherein

the at least two transmitter antenna devices of the first radar sensor arrangement define a corresponding boresight extension,

the first relative antenna radiation pattern has a maximum gain at the corresponding boresight extension, and

the second relative antenna radiation pattern has a notch at the corresponding boresight extension.

9. The method according to claim 8 , wherein the radar sensor arrangements are mounted to the vehicle, having a forward direction, such that the maximum gain extension extends in the forward direction, and such that the corresponding first maximum gain azimuth angle is formed between the corresponding boresight extension and a first maximum gain extension.

10. The method according claim 8 , wherein the antenna radiation pattern for each of the receiver antenna devices has a lower gain in the corresponding boresight extension than at a second maximum gain azimuth angle where there is a second maximum gain.

11. The method according to claim 8 , further comprising:

feeding the at least two transmitter antenna devices of the first radar sensor arrangement to switch between transmitting a first relative antenna radiation pattern and a second relative antenna radiation pattern, wherein

the first relative antenna radiation pattern is obtained by feeding two of the transmitter antenna devices in phase, and

the second relative antenna radiation pattern is obtained by feeding two of the transmitter antenna devices out of phase with each other.

12. The method according to claim 8 further comprising:

transmitting, using the transmitter antenna devices of the vehicle radar system, Frequency Modulated Continuous Wave (FMCW) chirp signals.

13. The vehicle radar system according to claim 1 , wherein one of the first maximum gain extensions of the at least two receiver antenna devices of the first radar sensor arrangement and one of the first maximum gain extensions of the at least two receiver antenna devices of the second radar sensor arrangement are parallel.

14. The method according to claim 8 , wherein one of the first maximum gain extensions of the at least two receiver antenna devices of the first radar sensor arrangement and one of the first maximum gain extensions of the at least two receiver antenna devices of the second radar sensor arrangement are parallel.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2024
From: ARRIVER SOFTWARE AB
To: QUALCOMM AUTO LTD.
Reel/Frame 069171/0233 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2022
From: VEONEER SWEDEN AB
To: ARRIVER SOFTWARE AB
Reel/Frame 059596/0826 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2019
From: POIGER, WALTER
To: VEONEER SWEDEN AB
Reel/Frame 048399/0026 →
Priority Claims (1)
EP 16178640 · Jul 8, 2016 · regional
Continuity (1)
Related Publication 20190204435A1 · Jul 4, 2019
Cited By (1)
US 12,498,455