IP Library Granted Patent US 10,721,380
Granted Patent B2
US 10,721,380 · App. 15/226,365 · Granted Jul 21, 2020

Plenoptic camera and method of controlling the same

Inventors: Valter Drazic (Betton, FR); Franck Galpin (Thorigne-Fouillard, FR); Mozhdeh Seifi (Thorigne-Fouillard, FR)
Assignee: INTERDIGITAL CE PATENT HOLDINGS, SAS
H04N5/2254G02B3/0056G02B6/0011H04N5/2253H04N5/3572H04N13/232H04N17/002
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Quick Facts
Patent No.
US 10,721,380
App. No.
15/226,365
Granted
Jul 21, 2020
Kind
B2
Abstract

A plenoptic camera having a camera lens, a microlens array and a photosensors array is described. An optical device is arranged before the camera lens according to a light-traveling direction of a light flux entering the plenoptic camera. The optical device includes a first layer that is controllable between a transmissive mode and a scattering mode and at least one light source arranged at a border of the optical device. A method for controlling the plenoptic camera is also described.

Claims (15)

1. An optical assembly for a plenoptic camera, the optical assembly comprising a camera lens and an optical device arranged before the camera lens according to a light-traveling direction of a light flux entering the optical assembly, the optical device comprising a first layer that is controllable between a transmissive mode and a scattering mode and at least one light emitting device arranged at a border of said optical device, wherein the optical device further comprises a second layer made of a transparent material, the first layer being arranged before the second layer according to the light-traveling direction of the light flux entering the optical assembly to block at least partially the light flux when in scattering mode.

2. The optical assembly according to claim 1 , wherein the first layer is arranged on a front face of the optical device according to the light-traveling direction of the light flux entering the optical assembly.

3. The optical assembly according to claim 1 , wherein said first layer is in the scattering mode when the at least one light emitting device emits light.

4. The optical assembly according to claim 1 , further comprising at least one processor configured to control the optical device.

5. The optical assembly according to claim 1 , wherein the at least one light emitting device emits light when a change in focus of the camera lens is detected.

6. A plenoptic camera comprising a microlens array, a photosensors array and a plenoptic assembly according to claim 1 .

7. The optical assembly according to claim 1 , wherein the at least one light emitting device comprises a plurality of light emittinci devices arranged to form a ring around the optical device.

8. A method of controlling an optical assembly for a plenoptic camera, the optical assembly comprising a camera lens, the method comprising controlling an optical device arranged before the camera lens according to a light-traveling direction of a light flux entering the optical assembly, the optical device comprising a first layer that is controllable between a transmissive mode and a scattering mode and at least one light emitting device arranged at a border of said optical device, wherein the optical device further comprises a second layer made of a transparent material, the first layer being arranged before the second layer according to the light-traveling direction of the light flux entering the optical assembly to block at least partially the light flux when in scattering mode.

9. The method according to claim 8 , wherein the first layer is arranged on a front face of the optical device according to the light-traveling direction of the light flux entering the optical assembly.

10. The method according to claim 8 , further comprising switching said first layer in the scattering mode when the at least one light emitting device emits light.

11. The method according to claim 8 , further comprising detecting a change in focus of the camera lens and controlling the at least one light emitting device to emit light when the change in focus of the camera lens is detected.

12. The method according to claim 8 , wherein the at least one light emitting device comprises a plurality of light emitting devices arranged to form a ring around the optical device.

13. A non-transitory processor readable medium having stored therein instructions for causing a processor to perform a method of controlling an optical assembly for a plenoptic camera, the optical assembly comprising a camera lens, the method comprising controlling an optical device arranged before the camera lens according to a light-traveling direction of a light flux entering the optical assembly, the optical device comprising a first layer that is controllable between a transmissive mode and a scattering mode and at least one light emitting device arranged at a border of said optical device, wherein the optical device further comprises a second layer made of a transparent material, the first layer being arranged before the second layer according to the light-traveling direction of the light flux entering the optical assembly to block at least partially the light flux when in scattering mode.

14. A non-transitory processor readable medium having stored therein instructions for causing a processor to perform a method of controlling an optical assembly for a plenoptic camera, the optical assembly comprising a camera lens, the method comprising controlling an optical device arranged before the camera lens according to a light-traveling direction of a light flux entering the optical assembly, the optical device comprising a first layer that is controllable between a transmissive mode and a scattering mode and at least one light emitting device arranged at a border of said optical device, wherein the optical device further comprises a second layer made of a transparent material, the first layer being arranged before the second layer according to the light-traveling direction of the light flux entering the optical assembly to block at least partially the light flux when in scattering mode, the method further switching said first layer in the scattering mode when the at least one light emitting device emits light.

15. A non-transitory processor readable medium having stored therein instructions for causing a processor to perform a method of controlling an optical assembly for a plenoptic camera, the optical assembly comprising a camera lens, the method comprising controlling an optical device arranged before the camera lens according to a light-traveling direction of a light flux entering the optical assembly, the optical device comprising a first layer that is controllable between a transmissive mode and a scattering mode and at least one light emitting device arranged at a border of said optical device, wherein the optical device further comprises a second layer made of a transparent material, the first layer being arranged before the second layer according to the light-traveling direction of the light flux entering the optical assembly to block at least partially the light flux when in scattering mode, the method further comprising detecting a change in focus of the camera lens and controlling the at least one light emitting device to emit light when the change in focus of the camera lens is detected.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY NAME FROM INTERDIGITAL CE PATENT HOLDINGS TO INTERDIGITAL CE PATENT HOLDINGS, SAS. PREVIOUSLY RECORDED AT REEL: 47332 FRAME: 511. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 28, 2024
From: THOMSON LICENSING
To: INTERDIGITAL CE PATENT HOLDINGS, SAS
Reel/Frame 066703/0509 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2018
From: THOMSON LICENSING
To: INTERDIGITAL CE PATENT HOLDINGS
Reel/Frame 047332/0511 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 17, 2016
From: DRAZIC, VALTER; GALPIN, FRANCK; SEIFI, MOZHDEH
To: THOMSON LICENSING
Reel/Frame 040029/0902 →
Priority Claims (1)
EP 15306265 · Aug 4, 2015 · regional
Continuity (1)
Related Publication 20170041518A1 · Feb 9, 2017