IP Library Patent Application 19044564
Patent Application
App. No. 19/044,564

IMAGING RADAR SYSTEM WITH DISTRIBUTED ANTENNA ARRAY

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Quick Facts
Patent No.
US None
App. No.
19/044,564
Abstract

A radar system comprises a physical radar array including a plurality of physical transmit antennas, each configured to transmit a respective signal having a wavelength λ. The physical radar array further comprises a plurality of physical receive antennas, each configured to receive each of the respective transmitted signals. At least one of the plurality of physical receive antennas is positioned at a different elevation than the other receive antennas. In some embodiments at least one of the plurality of physical transmit antennas is positioned at a different elevation than the other transmit antennas. In some embodiments the radar system further comprises a neural network arranged to receive data from the physical radar array and to generate or update data for one or more missing virtual antennas, generate a new fraction of the virtual antennas, generate the full set of virtual antennas, or directly generate the processed data.

Claims (30)

1 . A radar system comprising:

a physical radar array comprising:

a plurality of physical transmit antennas, each configured to transmit a respective signal having a wavelength λ; and

a plurality of physical receive antennas, each configured to receive each of the respective signals, wherein at least a first physical receive antenna of the plurality of physical receive antennas is at an elevation that is different than a second physical receive antenna of the plurality of receive antennas.

2 . The radar system of claim 1 , further comprising a processor arranged to receive data from the physical radar array and to generate data for a two-dimensional virtual antenna array, wherein a spacing between a first and a second virtual antenna of the virtual antenna array is greater than λ/2.

3 . The radar system of claim 2 , wherein the processor is further arranged to generate data for a supplemental virtual antenna positioned between the first and the second virtual antenna.

4 . The radar system of claim 3 , wherein the processor employs a trained neural network to generate the data.

5 . The radar system of claim 3 , wherein a distance between the first virtual antenna and the supplemental virtual antenna is λ/2 and wherein a distance between the second virtual antenna and the supplemental virtual antenna is λ/2.

6 . The radar system of claim 1 , wherein at least a first physical transmit antenna of the plurality of physical transmit antennas is at an elevation that is different than a second physical transmit antenna of the plurality of physical transmit antennas.

7 . The radar system of claim 1 , further comprising a processor arranged to receive data from the physical radar array and to generate data for a two-dimensional emulated virtual antenna array.

8 . The radar system of claim 7 , wherein a horizontal distance between each virtual antenna of the emulated virtual antenna array is λ/2.

9 . The radar system of claim 7 , wherein the processor employs a trained neural network to generate the data.

10 . A radar system comprising:

a physical transmit antenna configured to transmit a signal having a wavelength λ;

a first physical receive antenna positioned at a first vertical position and arranged to receive a reflected signal corresponding to the transmitted signal; and

a second physical receive antenna positioned at a second vertical position and arranged to receive the reflected signal corresponding to the transmitted signal, wherein the first vertical position is higher than the second vertical position.

11 . The radar system of claim 10 , further comprising a processor arranged to receive data from the first physical receive antenna and from the second physical receive antenna, the processor further arranged to generate data for a two-dimensional virtual antenna array, wherein a spacing between a first and a second virtual antenna of the virtual antenna array is greater than λ/2.

12 . The radar system of claim 11 , wherein the processor is further arranged to generate data for a supplemental virtual antenna positioned between the first and the second virtual antenna.

13 . The radar system of claim 12 , wherein the processor employs a trained neural network to generate the data.

14 . The radar system of claim 13 , wherein a distance between the first virtual antenna and the supplemental virtual antenna is λ/2, and wherein a distance between the second virtual antenna and the supplemental virtual antenna is λ/2.

15 . The radar system of claim 10 , further comprising a processor arranged to receive data from the first physical receive antenna and from the second physical receive antenna, the processor further arranged to generate data for a two-dimensional emulated virtual antenna array.

16 . The radar system of claim 7 , wherein the processor employs a trained neural network to generate the data such that a horizontal distance between each virtual antenna of the emulated virtual antenna array is λ/2.

17 . A method of operating a radar system, the method comprising:

transmitting a signal from a physical transmit antenna at a wavelength (λ);

receiving a reflected signal at a first physical receive antenna positioned at a first elevation, wherein the reflected signal corresponds to the transmitted signal; and

receiving the reflected signal at a second physical receive antenna positioned at a second elevation, wherein the reflected signal corresponds to the transmitted signal; and

wherein the first elevation is greater than the second elevation.

18 . The method of claim 17 , wherein the method further comprises, generating, using a processor, data corresponding to a virtual antenna array, wherein a horizontal distance between a first virtual antenna of the virtual antenna array and a second virtual antenna of the virtual antenna array is greater than λ/2.

19 . The method of claim 18 , wherein the processor is further arranged to generate data for a supplemental virtual antenna positioned between the first virtual antenna of the virtual antenna array and the second virtual antenna of the virtual antenna array.

20 . The method of claim 17 , wherein the method further comprises, generating, using a processor, data corresponding to an emulated virtual antenna array, wherein a horizontal distance between a first virtual antenna of the emulated virtual antenna array and a second virtual antenna of the emulated virtual antenna array is λ/2.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2025
From: MORADI, HASSAN DANIEL; BASIREDDY, ASHISH
To: SENSORIDE CORPORATION
Reel/Frame 071252/0512 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2025
From: SENSORIDE CORPORATION
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 071056/0439 →