IP Library › Granted Patent US 12,455,534
Granted Patent B2
US 12,455,534 · App. 18/005,458 · Granted Oct 28, 2025

Light detection and ranging

Inventors: Abdullah Asmari (Milton Keynes, GB); Timothy Smeeton (Milton Keynes, GB)
Assignee: Envisics Ltd
G03H1/2294G01S17/894G03H2001/306
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Quick Facts
Patent No.
US 12,455,534
App. No.
18/005,458
Granted
Oct 28, 2025
Kind
B2
Abstract

A method for light detection and ranging that includes forming a first light pattern within a region of a scene by holographic projection. The first light pattern includes n light spots arranged in a regular array. A light return signal is received from each light detection element of an array of light detection elements directed at the region of the scene. The intensity of the light return signals is assessed. If the light return signals do not meet at least one signal validation criterion, a second light pattern is formed within the region of the scene by holographic projection. The second light pattern includes m light spots arranged in a regular array, wherein m≠n. A time-of-flight in association with each light spot of the second light pattern is then determined.

Claims (34)

1. A method for performing light detection and ranging, the method comprising:

forming a first light pattern within a region of a scene by holographic projection, wherein the first light pattern comprises n light spots arranged in a regular array;

receiving a light return signal from each light detection element of an array of light detection elements directed at the region of the scene;

assessing an intensity of the light return signals, and when the light return signals do not meet at least one signal validation criterion based at least in part on the assessing of the intensity of the light return signals, (i) forming a second light pattern within the region of the scene by holographic projection, wherein the second light pattern comprises m light spots arranged in a regular array, wherein m≠n, and (ii) determining a time-of-flight in association with each light spot of the second light pattern.

2. The method for performing light detection and ranging according to claim 1 , further comprising:

determining a background light intensity of the scene.

3. The method for performing light detection and ranging according to claim 2 , wherein the at least one signal validation criterion is that a ratio of a total intensity detected by light detection elements directed at a light spot of the first light pattern to the determined background light intensity exceeds a threshold value, and wherein m<n.

4. The method for performing light detection and ranging according to claim 2 , wherein the at least one signal validation criterion is that a ratio of a total intensity detected by the array of light detection elements to the determined background light intensity exceeds a threshold value, and wherein m<n.

5. The method for performing light detection and ranging according to claim 3 , wherein the threshold value is in a range of 1.4 to 1.6.

6. The method for performing light detection and ranging according to claim 1 , wherein the at least one signal validation criterion is that the array of light detection elements has been substantially evenly illuminated and m>n.

7. The method for performing light detection and ranging according to claim 6 , wherein the at least one signal validation criterion is that a number light detection elements that have been saturated is less than a threshold number of light detection elements.

8. The method for performing light detection and ranging according to claim 1 , wherein the at least one signal validation criterion is that a number of light detection elements receiving light of the first light pattern is greater than a threshold number of light detection elements.

9. The method for performing light detection and ranging according to claim 1 , wherein each light pattern is a holographic reconstruction formed by illuminating a respective hologram displayed on a spatial light modulator.

10. The method for performing light detection and ranging as claimed in claim 9 , wherein a first hologram corresponding to the first light pattern comprises a first number of pixels and a second hologram corresponding to the second light pattern comprises a second number of pixels, wherein the second number of pixels is different to the first number of pixels.

11. The method for performing light detection and ranging according to claim 9 , wherein a first hologram corresponding to the first light pattern is displayed on the spatial light modulator in accordance with a first tiling scheme and a second hologram corresponding to the second light pattern is displayed on the spatial light modulator in accordance with a second tiling scheme, wherein the second tiling scheme is different from the first tiling scheme.

12. The method for performing light detection and ranging according to claim 1 , wherein at least one of the first light pattern and second light pattern is formed by rapidly interlacing in time a plurality of different holographic reconstructions from a respective plurality of different holograms.

13. The method for performing light detection and ranging a according to claim 12 , wherein a number of holograms forming the first light pattern is different from a number of holograms forming the second light pattern.

14. The method for performing light detection and ranging according to claim 12 , wherein the regular array of n light spots of the first light pattern is a subset of the regular array of m light spots of the second light pattern, or vice versa.

15. The method for performing light detection and ranging according to claim 14 , wherein the first light pattern is formed by interlacing in time an array of m light spots formed from a first hologram and an array of x light spots formed from a second hologram, and wherein the second light pattern is formed entirely from the first hologram.

16. The method for performing light detection and ranging according to claim 14 wherein, the second light pattern is formed by interlacing in time an array of n light spots formed from a first hologram and an array of y light spots formed from a second hologram, and wherein the first light pattern is formed entirely from the first hologram.

17. A light detection and ranging system comprising:

a holographic projector configured to form light patterns within a region of a scene, wherein each light pattern comprises a plurality of light spots arranged in an array;

a light detector array that comprises an array of light detection elements directed at the region of the scene; and

a controller configured to:

assess an intensity of light return signals received by the light detector array in response to formation of a first light pattern comprising a regular array of n light spots in the region of the scene, wherein when the light return signals do not meet at least one signal validation criterion based at least in part on the assessed intensity of the light return signals, the controller is further configured to (i) instruct the holographic projector to form a second light pattern within the region of the scene, wherein the second light pattern comprises a regular array of m light spots, wherein m≠n, and (ii) determine a time-of-flight in association with each light spot of the second light pattern.

18. The light detection and ranging system according to claim 17 , wherein the light detection and ranging system is further configured to:

determine a background light intensity of the scene, wherein the at least one signal validation criterion is at least one selected from a group comprising:

a ratio of a total intensity detected by light detection elements directed at a light spot of the first light pattern to the determined background light intensity exceeds a threshold value and m<n;

a ratio of a total intensity detected by the array of light detection elements to the determined background light intensity exceeds a threshold intensity value and m<n;

the array of light detection elements has been substantially evenly illuminated and m>n;

a number light detection elements that have been saturated is less than a threshold number of light detection elements and m>n; and

a number of light detection elements receiving light of the first light pattern is greater than a threshold number of light detection elements and m>n.

19. The method for performing light detection and ranging according to claim 4 , wherein the threshold value is in a range of 1.4 to 1.6.

20. The method for performing light detection and ranging according to claim 10 , wherein a first hologram corresponding to the first light pattern is displayed on the spatial light modulator in accordance with a first tiling scheme and a second hologram corresponding to the second light pattern is displayed on the spatial light modulator in accordance with a second tiling scheme, wherein the second tiling scheme is different from the first tiling scheme.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2026
From: ENVISICS LTD
To: DUALITAS LTD
Reel/Frame 076113/0595 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2023
From: SMEETON, TIMOTHY; ASMARI, ABDULLAH
To: ENVISICS LTD
Reel/Frame 062373/0329 →
Priority Claims (1)
GB 2012155 · Aug 5, 2020 · national
Continuity (1)
Related Publication 20230266712A1 · Aug 24, 2023
References Cited (5)
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WO 2017009848A1 · 2017 [cited by applicant]
Combined Search and Examiner Report for GB2012155.4, Dated Apr. 23, 2021. [cited by applicant]
Search Report and Written Opinion for PCT/EP2021/065137, Dated Oct. 13, 2021. [cited by applicant]