Configurable platform
US-2024366089-A1 · Nov 7, 2024 · US
US10127472B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10127472-B2 |
| Application number | US-201615041320-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 11, 2016 |
| Priority date | Feb 16, 2015 |
| Publication date | Nov 13, 2018 |
| Grant date | Nov 13, 2018 |
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A light distribution characteristic measurement apparatus includes an imaging unit disposed at a predetermined distance from a light source, a movement mechanism that successively changes a positional relation of the imaging unit with respect to the light source, while keeping the distance between the light source and the imaging unit, and a processing module that calculates the light distribution characteristic of the light source. The processing module obtains a plurality of image data taken under a first imaging condition and a plurality of image data taken under a second imaging condition different from the first condition, and determines corrected image information corresponding to a relative position of interest, from first image information corresponding to the relative position of interest included in the image data taken under the first condition and second image information corresponding to the relative position of interest included in the image data taken under the second condition.
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What is claimed is: 1. A light distribution characteristic measurement apparatus for measuring a light distribution characteristic of a light source, comprising: an imaging unit disposed at a predetermined distance from the light source; a movement mechanism configured to successively change a positional relation of the imaging unit with respect to the light source, while keeping the distance between the light source and the imaging unit; and a processing module configured to calculate the light distribution characteristic of the light source, based on a plurality of image data taken by the imaging unit and a relative position of the imaging unit with respect to the light source when each of the plurality of image data is taken, the processing module being configured to obtain a plurality of image data taken under a first imaging condition and a plurality of image data taken under a second imaging condition different from the first imaging condition, determine corrected image information corresponding to a relative position of interest, from first image information corresponding to the relative position of interest included in the image data taken under the first imaging condition and second image information corresponding to the relative position of interest included in the image data taken under the second imaging condition, and calculate the light distribution characteristic based on the corrected image information corresponding to the relative position of interest, the light distribution characteristic including information about the luminance for each illumination angle at each point on the light source. 2. The light distribution characteristic measurement apparatus according to claim 1 , wherein imaging under the second imaging condition is performed with a higher imaging sensitivity than an imaging sensitivity with which imaging is performed under the first imaging condition, and the processing module is configured to preferentially use the first image information when the second image information indicates saturation of a pixel value, and otherwise preferentially use the second image information. 3. The light distribution characteristic measurement apparatus according to claim 1 , wherein the processing module is configured to adjust a level of one of the first image information and the second image information, depending on a difference in imaging sensitivity between the first imaging condition and the second imaging condition. 4. The light distribution characteristic measurement apparatus according to claim 1 , wherein the processing module is configured to determine the corrected image information corresponding to the relative position of interest, by averaging the first image information and the second image information. 5. The light distribution characteristic measurement apparatus according to claim 1 , wherein the processing module is configured to calculate image information corresponding to the relative position of interest, from a plurality of image data taken at different positions from the relative position of interest. 6. A light distribution characteristic measurement method of measuring a light distribution characteristic of a light source, comprising the steps of: successively changing a positional relation of an imaging unit with respect to the light source, while keeping a distance between the light source and the imaging unit; and calculating the light distribution characteristic of the light source, based on a plurality of image data taken by the imaging unit and a relative position of the imaging unit with respect to the light source when each of the plurality of image data is taken, the step of calculating the light distribution characteristic of the light source including the steps of: obtaining a plurality of image data taken under a first imaging condition and a plurality of image data taken under a second imaging condition different from the first imaging condition; determining corrected image information corresponding to a relative position of interest, from first image information corresponding to the relative position of interest included in the image data taken under the first imaging condition and second image information corresponding to the relative position of interest included in the image data taken under the second imaging condition; and calculating the light distribution characteristic based on the corrected image information corresponding to the relative position of interest, the light distribution characteristic including information about the luminance for each illumination angle at each point on the light source. 7. The light distribution characteristic measurement method according to claim 6 , wherein imaging under the second imaging condition is performed with a higher imaging sensitivity than an imaging sensitivity with which imaging is performed under the first imaging condition, and the step of calculating the light distribution characteristic of the light source includes the step of preferentially using the first image information when the second image information indicates saturation of a pixel value, and otherwise preferentially using the second image information. 8. The light distribution characteristic measurement method according to claim 6 , wherein the step of calculating the light distribution characteristic of the light source includes the step of adjusting a level of one of the first image information and the second image information, depending on a difference in imaging sensitivity between the first imaging condition and the second imaging condition. 9. The light distribution characteristic measurement method according to claim 6 , wherein the step of calculating the light distribution characteristic of the light source includes the step of determining the corrected image information corresponding to the relative position of interest, by averaging the first image information and the second image information. 10. The light distribution characteristic measurement method according to claim 6 , wherein the step of calculating the light distribution characteristic of the light source includes the step of calculating image information corresponding to the relative position of interest, from a plurality of image data taken at different positions from the relative position of interest.
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