Laser image speckle measurement system and measurement method based on human eye characteristics
A technology of measurement system and measurement method, which is applied in the field of laser image speckle measurement system, can solve the problems of measurement error and inconsistency of human eye perception, and achieve the effect of accurate measurement
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Embodiment 1
[0035] Such as figure 1 as shown,
[0036] The laser display system for displaying laser images includes a laser display device light modulator 101, a laser display device projection lens 102, and a screen 103,
[0037] The laser image speckle measurement system based on human eye characteristics provided in this embodiment includes
[0038] A lens 104 for imaging the laser image onto the photosensitive element 105,
[0039] A photosensitive element 105 for imaging the laser image acquired by the lens, and obtaining imaging image data after imaging,
[0040] A data processor 106 for calculating data representing speckle features of the laser image according to the imaging image data,
[0041] The effective aperture of the lens 104 is the size of the pupil of the human eye, and the focal length of the lens 104 is the focal length of the human eye,
[0042] The pixel size of the photosensitive element 105 is similar to the size of retinal cells of the human eye, and the ligh...
Embodiment 2
[0051] Such as figure 2 As shown, the measurement method of laser image speckle based on human eye characteristics provided in this embodiment includes steps:
[0052] Use the lens to image the laser image onto the photosensitive element;
[0053] Use the photosensitive element to image the laser image acquired by the lens to obtain imaging image data;
[0054] calculating and obtaining data characterizing the speckle feature of the laser image according to the imaging image data;
[0055] The effective aperture of the lens is set to the size of the pupil of the human eye, the focal length of the lens is set to the focal length of the human eye,
[0056] The pixel size of the photosensitive element is selected to approximate the size of the retinal cells of the human eye, and the light intensity response curve of the photosensitive element is corrected to a curve approximately in line with the human eye's perception of light intensity.
[0057] in
[0058] The distance be...
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