IP Library Granted Patent US 12,436,612
Granted Patent B2
US 12,436,612 · App. 18/911,770 · Granted Oct 7, 2025

Dynamic IR emission control for fast recognition of eye tracking system

Inventor: Liang Yuan (Peachtree City, GA)
Assignee: Panasonic Automotive Systems America, LLC
G06F3/013G02B27/0101G02B27/0179H04N23/20B60K35/00B60K35/23B60K35/654B60K2360/21B60K2360/23G02B2027/0138G02B2027/014G02B2027/0187
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Quick Facts
Patent No.
US 12,436,612
App. No.
18/911,770
Granted
Oct 7, 2025
Kind
B2
Abstract

A picture generation unit emits a light field. A mirror reflects the light field toward a windshield of a motor vehicle such that the light field is reflected off of the windshield and is visible to the driver as a virtual image. An infrared emitter transmits infrared energy through the mirror such that the infrared energy is substantially co-axial with the light field, and such that the infrared energy is reflected off of the windshield toward the human driver. An infrared camera captures infrared images based on the transmitted infrared energy reflected off of the human driver and received by the infrared camera. Eye tracking is performed based on the captured infrared images. The infrared energy is transmitted at a higher power level at a beginning of the eye tracking than after the beginning of the eye tracking.

Claims (34)

1. An eye tracking arrangement for a motor vehicle, the arrangement comprising:

at least one infrared emitter positioned to transmit infrared energy toward a human driver of the motor vehicle;

an infrared camera positioned to capture infrared images based on the transmitted infrared energy reflected off of the human driver and received by the infrared camera; and

an electronic processor communicatively coupled to the at least one infrared emitter and to the infrared camera, the electronic processor being configured to:

perform eye tracking based on the captured infrared images; and

cause the infrared energy to be transmitted at an initial power level during a beginning stage of the eye tracking and at a later power level immediately after the beginning stage of the eye tracking, the initial power level being greater than the later power level.

2. The arrangement of claim 1 wherein the electronic processor is configured to cause the infrared energy to be transmitted at an initial power level while the infrared emitter is being driven during a beginning stage of the eye tracking and at a later power level while the infrared emitter is being driven immediately after the beginning stage of the eye tracking, the initial power level being greater than the later power level.

3. The arrangement of claim 1 wherein the initial power level is at least 80 percent greater than the later power level.

4. The arrangement of claim 1 wherein the later power level comprises a steady-state power level.

5. The arrangement of claim 1 wherein the electronic processor is configured to cause the infrared energy to be transmitted at an initial duty cycle during the beginning stage of the eye tracking and at a later duty cycle immediately after the beginning stage of the eye tracking, the initial duty cycle being greater than the later power duty cycle.

6. The arrangement system of claim 1 wherein the at least one infrared emitter comprises a first infrared emitter and a second infrared emitter, the electronic processor being configured to cause the second infrared emitter to be on during the beginning stage of the eye tracking and off immediately after the beginning stage of the eye tracking, and remain off for a time duration at least half as long as a time duration of the beginning stage of the eye tracking.

7. The arrangement of claim 1 wherein the electronic processor is configured to cause the infrared energy to be transmitted at the later power level for a time duration at least half as long as a time duration of the beginning stage of the eye tracking.

8. A display and eye tracking method for a motor vehicle, the method comprising:

transmitting infrared energy toward a human driver;

receiving the transmitted infrared energy after the transmitted infrared energy has been reflected off of the human driver; and

performing eye tracking based on the received infrared energy, wherein the infrared energy is transmitted at an initial power level during a beginning stage of the eye tracking and at a later power level immediately after the beginning stage of the eye tracking, the initial power level being greater than the later power level.

9. The method of claim 8 further comprising producing infrared images based on the received infrared energy, wherein the eye tracking is performed based on the infrared images.

10. The method of claim 8 wherein the initial power level is at least 80 percent greater than the later power level.

11. The method of claim 8 wherein the later power level comprises a steady-state power level.

12. The method of claim 8 wherein the infrared energy is transmitted at an initial duty cycle during the beginning stage of the eye tracking and at a later duty cycle immediately after the beginning stage of the eye tracking, the initial duty cycle being greater than the later power duty cycle.

13. The method of claim 8 wherein the infrared energy is transmitted by both a first infrared emitter and a second infrared emitter during the beginning stage of the eye tracking, and the second infrared emitter is off immediately after the beginning stage of the eye tracking.

14. The method of claim 8 wherein the infrared energy is transmitted at the later power level for a time duration at least 75 percent of the time duration of the beginning stage of the eye tracking.

15. The method of claim 8 wherein the infrared energy is transmitted at an initial power level during a beginning stage of the eye tracking and the infrared energy is continuously transmitted at a later power level immediately after the beginning stage of the eye tracking, the initial power level being greater than the later power level.

16. A head up display and eye tracking arrangement for a motor vehicle, the arrangement comprising:

at least one infrared emitter positioned to emit infrared energy toward a human driver;

an infrared camera positioned to capture infrared images based on the emitted infrared energy reflected off of the human driver and received by the infrared camera; and

an electronic processor communicatively coupled to the at least one infrared emitter and to the infrared camera, the electronic processor being configured to:

perform eye tracking based on the captured infrared images;

cause the infrared energy to be emitted at an initial brightness level during a beginning stage of the eye tracking and at a later brightness level immediately after the beginning stage of the eye tracking, the initial brightness level being greater than the later brightness level; and

cause the at least one infrared emitter to be on during the beginning stage of the eye tracking and off immediately after the beginning stage of the eye tracking, and remain off for a time duration greater than a time duration of the beginning stage of the eye tracking.

17. The arrangement of claim 16 wherein the initial power level is at least 80 percent greater than the later power level.

18. The arrangement of claim 16 wherein the electronic processor is configured to cause the infrared energy to be emitted at an initial duty cycle during the beginning stage of the eye tracking and at a later duty cycle immediately after the beginning stage of the eye tracking, the initial duty cycle being greater than the later power duty cycle.

19. The arrangement of claim 16 wherein the electronic processor is configured to cause the infrared energy to be emitted at the later brightness level for a time duration at least 25 percent of a time duration of the beginning stage of the eye tracking.

20. The arrangement of claim 16 wherein the electronic processor is configured to cause the infrared energy to be transmitted at an initial power level while the infrared emitter is being driven during a beginning stage of the eye tracking and at a later power level while the infrared emitter is being driven immediately after the beginning stage of the eye tracking, the initial power level being greater than the later power level.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE SUPPORTIVE DOCUMENTS PREVIOUSLY RECORDED ON REEL 72222 FRAME 267. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 23, 2025
From: PANASONIC CORPORATION OF NORTH AMERICA
To: PANASONIC AUTOMOTIVE SYSTEMS AMERICA, LLC.
Reel/Frame 072930/0871 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2025
From: PANASONIC CORPORATION OF NORTH AMERICA
To: PANASONIC AUTOMOTIVE SYSTEMS AMERICA, LLC
Reel/Frame 072222/0267 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2024
From: YUAN, LIANG
To: PANASONIC AUTOMOTIVE SYSTEMS COMPANY OF AMERICA, DIVISION OF PANASONIC CORPORATION OF NORTH AMERICA
Reel/Frame 068864/0360 →
Continuity (4)
Continuation 18141574 · May 1, 2023
Continuation 17682879 · Feb 28, 2022
Provisional Application 63158308 · Mar 8, 2021
Related Publication 20250036198A1 · Jan 30, 2025
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