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Estimating Black-Level Emissions of Computer-Controlled Displays

机译:估计计算机控制显示器的黑电平发射

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摘要

It is quite common for computer-controlled displays to emit light in image areas set to digital values of zero, referred to as their black level. This is expected for liquid-crystal displays and also can occur for cathode-ray tube displays when the "brightness" (gun-amplifier offset) is set excessively high. For either display, the light emission at the black level results in color channels whose chromaticities vary with luminance level. Consequently, typical methods of colorimetric characterization result in large error. When this black-level emission is measured and accounted for suitably, characterization accuracy is dramatically improved. Unfortunately, many instruments used to measure displays have too low a sensitivity to measure black-level emission with sufficient precision and accuracy. A method of estimating black-level emissions was derived and tested. Because the optimal black-level results in channel chromaticities that are invariant to the greatest extent with luminance level, an objective function was defined as the sum of chromaticity variances of each channel over a range of measurements. Minimizing this objective function resulted is an estimate of a display's black level. The estimated black level resulted in equivalent or superior performance to direct measurements.
机译:计算机控制的显示器在设置为数字值零(称为黑电平)的图像区域中发光是很常见的。对于液晶显示器,这是预期的,而当“亮度”(喷枪放大器偏移)设置得过高时,对于阴极射线管显示器也可能发生这种情况。对于任何一种显示,黑色电平的发光都会导致颜色通道的色度随亮度级别而变化。因此,比色表征的典型方法导致较大的误差。当测量并适当考虑该黑电平发射时,表征精度会大大提高。不幸的是,许多用于测量显示器的仪器灵敏度太低,无法以足够的精度和准确度来测量黑电平发射。推导并测试了一种估计黑电平发射的方法。因为最佳黑电平会导致通道色度在最大程度上随亮度级不变,所以将目标函数定义为在一系列测量范围内每个通道的色度方差之和。最小化此目标函数的结果是估计显示器的黑电平。估计的黑电平导致与直接测量相当或更好的性能。

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