IP Library Granted Patent US 11,953,805
Granted Patent B2
US 11,953,805 · App. 18/139,011 · Granted Apr 9, 2024

Adaptive light source

Inventors: Arjen Gerben Van der Sijde (Eindhoven, NL); Nicola Bettina Pfeffer (Eindhoven, NL); Pieter Johannes Quintus van Voorst Vader (Eindhoven, NL); Yourii Martynov (Geldrop, NL)
Assignee: Lumileds LLC
G03B15/05G06T7/586G06V10/141G06V10/147G06V20/10G06V20/64G06V40/166G06V40/172H04N5/33H04N23/56H04N23/71H04N23/74G03B2215/0567H04N23/69
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 11,953,805
App. No.
18/139,011
Granted
Apr 9, 2024
Kind
B2
Abstract

A method according to embodiments of the invention includes creating a three-dimensional profile of a scene, calculating a relative amount of light for each portion of the scene based on the three-dimensional profile, and activating a light source to provide a first amount of light to a first portion of the scene, and a second amount of light to a second portion of the scene. The first amount and the second amount are different. The first amount and the second amount are determined by calculating a relative amount of light for each portion of the scene.

Claims (44)

1. An imaging system, comprising:

a camera having a field of view that includes a scene;

a light source configured to illuminate the scene, the light source including a collimating lens and a light-emitting diode (LED) array located at a focal plane of the collimating lens, the LED array including LEDs that are independently controllable and configured to direct light to different portions of the scene;

a driver configured to electrically power the light source and independently control the LEDs in the LED array;

a three-dimensional (3D) sensor configured to determine distances from the imaging system to the respective portions of the scene; and

at least one processor configured to:

determine a set of power values from the determined distances, the power values increasing with increasing distance to the respective portions of the scene;

cause the driver to electrically power the light source to illuminate the scene such that the LEDs in the LED array are electrically powered based on the determined power values; and

cause the camera to capture an image of the scene while the scene is illuminated.

2. The imaging system of claim 1 , wherein the determined set of power values at least partially compensates for a decrease in power density with increasing distance away from the light source.

3. The imaging system of claim 1 , wherein the LED array includes LEDs that are monolithically grown on a single substrate.

4. The imaging system of claim 1 , further comprising an input device configured to receive input from a user to initiate the determination of the distances, the determination of the set of power values, the powering of the light source, and the capture of the image.

5. The imaging system of claim 1 , wherein the 3D sensor includes a time-of-flight camera configured to measure time durations for light reflected from the respective portions of the scene to arrive at the time-of-flight camera.

6. The imaging system of claim 1 , wherein the 3D sensor includes a structure light sensor configured to project a specified pattern onto the scene and determine positions of objects in the scene via analysis of distortion of the specified pattern from at least one captured image of the scene.

7. The imaging system of claim 1 , wherein the 3D sensor includes a plurality of cameras configured to capture images of the scene from different locations and determine positions of objects in the scene via triangulation from the captured images.

8. An imaging system, comprising:

a camera having a field of view that includes a scene;

a light source that, when operative, illuminates the scene, the light source including a collimating lens and a light-emitting diode (LED) array located at a focal plane of the collimating lens, the LED array including LEDs that are independently controllable and, when operative, direct light to different portions of the scene;

a driver that, when operative, electrically powers the light source and independently controls the LEDs in the LED array;

a three-dimensional (3D) sensor that, when operative, determines distances from the imaging system to the respective portions of the scene; and

at least one processor that, when operative:

determines a set of power values from the determined distances, the power values increasing with increasing distance to the respective portions of the scene;

causes the driver to electrically power the light source to illuminate the scene such that the LEDs in the LED array are electrically powered based on the determined power values; and

causes the camera to capture an image of the scene while the scene is illuminated.

9. The imaging system of claim 8 , wherein the determined set of power values at least partially compensates for a decrease in power density with increasing distance away from the light source.

10. The imaging system of claim 8 , wherein the LED array includes LEDs that are monolithically grown on a single substrate.

11. The imaging system of claim 8 , further comprising an input device that, when operative, receives input from a user to initiate the determination of the distances, the determination of the set of power values, the powering of the light source, and the capture of the image.

12. The imaging system of claim 8 , wherein the 3D sensor includes a time-of-flight camera that, when operative, measures time durations for light reflected from the respective portions of the scene to arrive at the time-of-flight camera.

13. The imaging system of claim 8 , wherein the 3D sensor includes a structure light sensor that, when operative, projects a specified pattern onto the scene and determine positions of objects in the scene via analysis of distortion of the specified pattern from at least one captured image of the scene.

14. The imaging system of claim 8 , wherein the 3D sensor includes a plurality of cameras that, when operative, capture images of the scene from different locations and determine positions of objects in the scene via triangulation from the captured images.

15. An imaging system, comprising:

a camera having a field of view that includes a scene;

a camera flash configured to illuminate the scene, the camera flash including a collimating lens and a light-emitting diode (LED) array located at a focal plane of the collimating lens, the LED array including LEDs that are independently controllable and configured to direct light to different portions of the scene;

a driver configured to electrically power the camera flash and independently control the LEDs in the LED array;

a three-dimensional (3D) sensor configured to determine distances from the imaging system to the respective portions of the scene; and

at least one processor configured to:

determine a set of power values from the determined distances, the power values increasing with increasing distance to the respective portions of the scene;

cause the driver to electrically power the camera flash to illuminate the scene such that the LEDs in the LED array are electrically powered based on the determined power values; and

cause the camera to capture an image of the scene while the scene is illuminated.

16. The imaging system of claim 15 , wherein the determined set of power values at least partially compensates for a decrease in power density with increasing distance away from the camera flash.

17. The imaging system of claim 15 , wherein the LED array includes LEDs that are monolithically grown on a single substrate.

18. The imaging system of claim 15 , wherein the 3D sensor includes a time-of-flight camera configured to measure time durations for light reflected from the respective portions of the scene to arrive at the time-of-flight camera.

19. The imaging system of claim 15 , wherein the 3D sensor includes a structure light sensor configured to project a specified pattern onto the scene and determine positions of objects in the scene via analysis of distortion of the specified pattern from at least one captured image of the scene.

20. The imaging system of claim 15 , wherein the 3D sensor includes a plurality of cameras configured to capture images of the scene from different locations and determine positions of objects in the scene via triangulation from the captured images.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2025
From: LUMILEDS LLC
To: LUMILEDS SINGAPORE PTE. LTD.
Reel/Frame 071888/0086 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2023
From: LUMILEDS HOLDING B.V.
To: LUMILEDS LLC
Reel/Frame 063446/0251 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2023
From: VAN DER SIJDE, ARJEN GERBEN; PFEFFER, NICOLA BETTINA; VAN VOORST VADER, PIETER JOHANNES QUINTUS; MARTYNOV, YOURII
To: LUMILEDS HOLDING B.V.
Reel/Frame 063458/0907 →
Priority Claims (1)
EP 16158004 · Mar 1, 2016 · regional
Continuity (5)
Continuation 17537614 · Nov 30, 2021
Continuation 16790433 · Feb 13, 2020
Continuation 15773356
Provisional Application 62253580 · Nov 10, 2015
Related Publication 20230266639A1 · Aug 24, 2023