IP Library Granted Patent US 12,000,921
Granted Patent B2
US 12,000,921 · App. 17/204,274 · Granted Jun 4, 2024

Radar apparatus

Inventor: Takaaki Kishigami (Tokyo, JP)
Assignee: PANASONIC AUTOMOTIVE SYSTEMS CO., LTD.
G01S13/347G01S7/352G01S7/356G01S13/325
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Quick Facts
Patent No.
US 12,000,921
App. No.
17/204,274
Granted
Jun 4, 2024
Kind
B2
Abstract

The target detection accuracy of a radar apparatus is improved. The radar apparatus includes signal generation circuitry, which, in operation, generates a first transmission signal and a second transmission signal, and transmission circuitry, which, in operation, transmits a multiplexed signal resulting from code-multiplexing the first transmission signal and the second transmission signal, wherein a modulation frequency of the first transmission signal at a first timing is identical to a modulation frequency of the second transmission signal at a second timing that is later than the first timing.

Claims (21)

1. A radar apparatus, comprising:

signal generation circuitry, which, in operation, generates a first transmission signal and a second transmission signal per a transmission period; and

transmission circuitry, which, in operation, transmits a multiplexed signal resulting from code-multiplexing the first transmission signal and the second transmission signal, wherein, per the transmission period, a modulation frequency of the first transmission signal at a first timing is identical to a modulation frequency of the second transmission signal at a second timing that is later than the first timing.

2. The radar apparatus according to claim 1 , further comprising reception circuitry, which, in operation, down-mixes a reflected wave signal being the multiplexed signal reflected by an object, with reference to the second transmission signal.

3. The radar apparatus according to claim 2 , wherein a sampling rate in AD conversion for the reflected wave signal periodically varies.

4. The radar apparatus according to claim 1 , wherein the first transmission signal and the second transmission signal are chirp signals.

5. The radar apparatus according to claim 4 , wherein a frequency sweep width of at least one of the chirp signals periodically varies.

6. The radar apparatus according to claim 1 , wherein, per the transmission period, a transmission start timing of the first transmission signal is earlier than a transmission start timing of the second transmission signal.

7. The radar apparatus according to claim 1 , wherein the modulation frequency of the first transmission signal is higher than the modulation frequency of the second transmission signal at the first timing and a third timing that is different from the first timing.

8. The radar apparatus according to claim 7 , wherein a difference between the modulation frequency of the first transmission signal and the modulation frequency of the second transmission signal at the third timing is set based on a distance range where detection is performed using the first transmission signal.

9. The radar apparatus according to claim 1 , wherein a difference between the first timing and the second timing is set based on a distance range where detection is performed using the first transmission signal.

10. The radar apparatus according to claim 1 , wherein a difference between the first timing and the second timing periodically varies.

11. The radar apparatus according to claim 1 , wherein the multiplexed signal is code-multiplexed by using a part of a plurality of code sequences with a code length greater than a number of code multiplexing for the multiplexed signal.

12. The radar apparatus according to claim 11 , wherein,

a first code sequence and a second code sequence included in the plurality of code sequences include code elements so that, between the first code sequence and the second code sequence, either odd-numbered code elements are the same and even-numbered code elements have signs inverted, or even-numbered code elements are the same and odd-numbered code elements have signs inverted, and

either one of the first code sequence and the second code sequence is used for code multiplexing of the first transmission signal, and the other one of the first code sequence and the second code sequence is used for code multiplexing of the second transmission signal.

13. The radar apparatus according to claim 1 , wherein different transmission delays are cyclically set for the first transmission signal and the second transmission signal for each transmission period corresponding to a code length of a code sequence used for code multiplexing for the multiplexed signal.

14. The radar apparatus according to claim 13 , further comprising reception circuitry, which, in operation, determines aliasing, in Doppler frequency domain, of a reflected wave signal being the multiplexed signal reflected by an object, in a range (the code length x 2) times as large as a Doppler analysis range for the reflected wave signal.

15. A radar apparatus, comprising:

signal generation circuitry, which, in operation, generates a first transmission signal and a second transmission signal; and

transmission circuitry, which, in operation, transmits a multiplexed signal resulting from code-multiplexing the first transmission signal and the second transmission signal, wherein different transmission delays are cyclically set for the first transmission signal and the second transmission signal for each transmission period corresponding to a code length of a code sequence used for code multiplexing for the multiplexed signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2024
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: PANASONIC AUTOMOTIVE SYSTEMS CO., LTD.
Reel/Frame 066709/0702 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2021
From: KISHIGAMI, TAKAAKI
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 057010/0679 →
Priority Claims (1)
JP 2020-047718 · Mar 18, 2020 · national
Continuity (1)
Related Publication 20210302560A1 · Sep 30, 2021
Cited By (1)
US 12,386,053