IP Library Granted Patent US 10,641,867
Granted Patent B2
US 10,641,867 · App. 15/675,919 · Granted May 5, 2020

Vehicle radar system with shaped radar antennas

Inventor: Holger Hess (Aschaffenburg, DE)
Assignee: MAGNA ELECTRONICS INC.
G01S7/4021G01S7/2813G01S7/4008G01S13/04G01S13/878G01S13/931G01S15/04G01S15/876G01S15/931H01Q1/3233H01Q13/0233H01Q21/065H01Q21/293B60K31/0008B60Q9/008G01S2013/9367
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,641,867
App. No.
15/675,919
Granted
May 5, 2020
Kind
B2
Abstract

A sensing system for a vehicle includes a control and sensor disposed at the vehicle. The sensor includes a plurality of antennas, which includes transmitting antennas and receiving antennas. The plurality of antennas includes a two-dimensional antenna array having a rhombus grid arrangement of antennas. Outputs of the antennas are communicated to the control, and the control, responsive to the outputs of the antennas, determines the presence of one or more objects exterior the vehicle and within the field of sensing of the antennas.

Claims (32)

1. A sensing system for a vehicle, said sensing system comprising:

a sensor disposed at the vehicle;

wherein said sensor comprises a plurality of antennas;

wherein said plurality of antennas comprises transmitting antennas and receiving antennas;

wherein said plurality of antennas comprises a two-dimensional antenna array having a rhombus grid arrangement of antennas comprising a plurality of sets of antennas each set having a V shape, and wherein each of the V-shaped sets of antennas comprises an apex;

wherein a signal feed is provided to the apex of each of the V-shaped sets of antennas; and

a control, wherein outputs of said receiving antennas are communicated to said control, and wherein said control, responsive to said outputs of said receiving antennas, determines the presence of one or more objects exterior the vehicle and within a field of sensing of said sensor.

2. The sensing system of claim 1 , wherein said sensor comprises a radar sensor and wherein said radar sensor comprises a plurality of radar antennas.

3. The sensing system of claim 1 , wherein said sensor comprises an ultrasonic sensor and wherein said ultrasonic sensor comprises a plurality of ultrasonic antennas.

4. The sensing system of claim 1 , wherein said sensing system provides sensing for at least one of automated parking, blind spot detection, cross traffic alert, lane change and merge aid, automatic emergency braking, pedestrian detection, turn assist, and intersection collision mitigation.

5. A sensing system for a vehicle, said sensing system comprising:

a sensor disposed at the vehicle;

wherein said sensor comprises a plurality of antennas;

wherein said plurality of antennas comprises transmitting antennas and receiving antennas;

wherein said plurality of antennas comprises a two-dimensional antenna array comprising a plurality of sets of antennas each set having a V shape, and wherein each of the V-shaped sets of antennas comprises an apex;

wherein a signal feed is provided to the apex of each of the V-shaped sets of antennas;

a control, wherein outputs of said receiving antennas are communicated to said control, and wherein said control, responsive to said outputs of said receiving antennas, determines the presence of one or more objects exterior the vehicle and within a field of sensing of said sensor; and

wherein said sensing system provides sensing for at least one of automated parking, blind spot detection, cross traffic alert, lane change and merge aid, automatic emergency braking, pedestrian detection, turn assist, and intersection collision mitigation.

6. The sensing system of claim 5 , wherein the plurality of V-shaped sets of antennas combine to form a rhombus grid arrangement of antennas.

7. The sensing system of claim 5 , wherein said sensor comprises a radar sensor and wherein said radar sensor comprises a plurality of radar antennas.

8. The sensing system of claim 5 , wherein said sensor comprises an ultrasonic sensor and wherein said ultrasonic sensor comprises a plurality of ultrasonic antennas.

9. A sensing system for a vehicle, said sensing system comprising:

a sensor disposed at the vehicle;

wherein said sensor comprises a plurality of antennas;

wherein said plurality of antennas comprises transmitting antennas and receiving antennas;

wherein said plurality of antennas comprises a two-dimensional antenna array comprising a plurality of sets of antennas each set having an X shape, and wherein each of the X-shaped sets of antennas comprises a center region where signal traces of the antennas of each of the X-shaped sets of antennas intersect;

wherein a signal feed is provided to the center region of each of the X-shaped sets of antennas;

a control, wherein outputs of said receiving antennas are communicated to said control, and wherein said control, responsive to said outputs of said receiving antennas, determines the presence of one or more objects exterior the vehicle and within a field of sensing of said sensor; and

wherein said sensing system provides sensing for at least one of automated parking, blind spot detection, cross traffic alert, lane change and merge aid, automatic emergency braking, pedestrian detection, turn assist, and intersection collision mitigation.

10. The sensing system of claim 9 , wherein the plurality of X-shaped sets of antennas combine to form a rhombus grid arrangement of antennas.

11. The sensing system of claim 9 , wherein said sensor comprises a radar sensor and wherein said radar sensor comprises a plurality of radar antennas.

12. The sensing system of claim 9 , wherein said sensor comprises an ultrasonic sensor and wherein said ultrasonic sensor comprises a plurality of ultrasonic antennas.

Continuity (2)
Provisional Application 62375161 · Aug 15, 2016
Related Publication 20180045812A1 · Feb 15, 2018