首页> 外文会议>Visualization, Image-Guided Procedures, and Display pt.1; Progress in Biomedical Optics and Imaging; vol.6,no.21 >Photographic measurement of the effects of viewing angle on the luminance and contrast of liquid crystal displays
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Photographic measurement of the effects of viewing angle on the luminance and contrast of liquid crystal displays

机译:摄影测量视角对液晶显示器亮度和对比度的影响

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An actively cooled charge couple device detector in combination with a 4 mm focal length lens (camera) was used to evaluate the luminance and perceived contrast properties of a liquid crystal display (LCD). The circular field of view (FOV) of the camera occupied an angular range (θ) of ± 42.5° from normal in all directions. Uniform field images corresponding to 17 equally spaced grayscale values in the 8 bit digital driving level (DDL) range of the display system were acquired. The 12 bit grayscale digital images produced by the camera were converted to luminance (cd/m~2) units via the measured DDL vs. luminance response of the camera. The Barten model of the grayscale response of the human visual system was used to compute the perceived contrast of the display within the angular FOV of the camera and throughout the 8-bit DDL range of the display. 1D profiles were extracted from the 2D measurements and compared to measurements acquired from a similar display using a Fourier-optics-based luminance meter and published methods. The results of the two methods generally agreed to within 5%. Greater discrepancy was realized for the lowest portion of the DDL range. The photographic methods used were straightforward and resulted in accurate display assessment measurements over a FOV that is relevant for the clinical use of LCDs.
机译:主动冷却的电荷耦合器件检测器与4 mm焦距镜头(相机)结合使用,以评估液晶显示器(LCD)的亮度和对比度。相机的圆形视场(FOV)在所有方向上均偏离法线±42.5°的角度范围(θ)。获取对应于显示系统的8位数字驱动级别(DDL)范围内的17个等距灰度值的均匀场图像。摄像机产生的12位灰度数字图像通过DDL与摄像机的亮度响应之间的关系转换为亮度(cd / m〜2)单位。人类视觉系统的灰度响应的Barten模型用于计算在相机的视角FOV内以及整个显示器的8位DDL范围内显示器的感知对比度。从2D测量中提取1D轮廓,并将其与使用基于傅立叶光学的亮度计和公开方法从类似显示器获得的测量结果进行比较。两种方法的结果通常在5%之内。对于DDL范围的最低部分,实现了更大的差异。使用的照相方法简单明了,并且可以在与LCD的临床使用相关的FOV上进行准确的显示评估测量。

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