Simulation image generation method and system for adb evaluation of test vehicle
US-2024067077-A1 · Feb 29, 2024 · US
US2017341565A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017341565-A1 |
| Application number | US-201515522941-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 6, 2015 |
| Priority date | Nov 7, 2014 |
| Publication date | Nov 30, 2017 |
| Grant date | — |
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Provided is an illumination device which has a coherent light source that emits a first coherent light beam and a second coherent light beam, an optical device that diffuses the first coherent light beam to illuminate a first illumination zone and diffuses a wave of the second coherent light beam to illuminate a second illumination zone, and a timing control unit that individually controls incidence timing of the first coherent light beam and the second coherent light beam on the optical device or illumination timing of the first illumination zone and the second illumination zone, wherein the optical device includes a first diffusion region on which the first coherent light beam is incident, and a second diffusion region on which the second coherent light beam is incident, the first diffusion region is capable of illuminating the first illumination zone by diffusion of the incident first coherent light beam.
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1 . An illumination device comprising: a coherent light source that emits a first coherent light beam and a second coherent light beam; an optical device that diffuses the first coherent light beam to illuminate a first illumination zone and diffuses a wave of the second coherent light beam to illuminate a second illumination zone; and a timing control unit that individually controls incidence timing of the first coherent light beam and the second coherent light beam on the optical device or illumination timing of the first illumination zone and the second illumination zone, wherein the optical device includes a first diffusion region on which the first coherent light beam is incident, and a second diffusion region on which the second coherent light beam is incident, the first diffusion region is capable of illuminating the first illumination zone by diffusion of the incident first coherent light beam, the second diffusion region is capable of illuminating the second illumination zone that is at least partially different from the first illumination zone by diffusion of the incident second coherent light beam, the first diffusion region includes a plurality of first element diffusion regions, the first element diffusion regions illuminating respective first partial regions in the first illumination zone by diffusion of the incident first coherent light beam, the first partial regions being respectively illuminated by the first element diffusion regions at least partially different from one another, and the second diffusion region also includes a plurality of second element diffusion regions, the second element diffusion regions illuminating respective second partial regions in the second illumination zone by diffusion of the incident second coherent light beam, the second partial regions being respectively illuminated by the second element diffusion regions at least partially different from one another. 2 . The illumination device according to claim 1 , wherein the first diffusion region is capable of illuminating the first illumination zone conforming to a light distribution standard of a headlight by diffusion of the incident first coherent light beam, and the second diffusion region is capable of illuminating the second illumination zone outside the light distribution standard by diffusion of the incident second coherent light beam. 3 . The illumination device according to claim 1 , further comprising a scanning unit that scans the optical device with the first coherent light beam and the second coherent light beam from the coherent light source. 4 . The illumination device according to claim 3 , wherein the scanning unit includes a light scanning device that periodically changes traveling directions of the first coherent light beam and the second coherent light beam emitted from the coherent light source. 5 . The illumination device according to claim 4 , wherein the timing control unit controls the incidence timing of the second coherent light beam on the optical device or the illumination timing of the second illumination zone in synchronization with timing of scan with the first coherent light beam and the second coherent light beam by the light scanning device, such that an illumination mode of the second illumination zone changes periodically or temporarily. 6 . The illumination device according to claim 1 , wherein the first diffusion region and the second diffusion region each have an elongated shape extending in a uniaxial direction and are disposed adjacent to each other in a direction orthogonal to the uniaxial direction. 7 . The illumination device according to claim 1 , further comprising an object detection unit that detects an object existing in the second illumination zone, wherein the light emission timing control unit controls the incidence timing of the second coherent light beam on the optical device or the illumination timing of the second illumination zone so as to illuminate the object detected by the object detection unit. 8 . The illumination device according to claim 7 , wherein the object detection unit comprises: an imaging device that images the inside of the second illumination zone; and an image processing unit that performs image processing on an imaging result of the imaging device to recognize the object in the second illumination zone. 9 . The illumination device according to claim 7 , wherein the object detection unit comprises: a position information acquisition unit that acquires position information of a vehicle; a storage unit that stores position information of an object; and an information processing unit that recognizes the object in the second illumination zone based on the position information of the vehicle acquired by the position information acquisition unit and the position information of the object stored in the storage unit. 10 . The illumination device according to claim 1 , wherein the optical device is a hologram recording medium, the first element diffusion regions of the first diffusion region are element hologram areas in which different interference fringe patterns are formed, and the second element diffusion regions of the second diffusion region are element hologram areas in which different interference fringe patterns are formed. 11 . The illumination device according to claim 1 , wherein the optical device is a lens array group including a plurality of lens arrays, the first element diffusion regions of the first diffusion region include lens arrays, and the second element diffusion regions of the second diffusion region include lens arrays. 12 . A vehicle comprising the illumination device according to claim 2 .
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