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Effect of viewing angle on visual detection in liquid crystal displays

机译:视角对液晶显示器视觉检测的影响

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Display devices for medical diagnostic workstations should have a diffuse emission with apparent luminance independent of viewing angle. Such displays are called Lambertian, or they obey Lambert's law. Actual display devices are never truly Lambertian; the luminance of a pixel depends on the viewing angle. In active-matrix liquid crystal displays (AMLCD), the departure from the Lambertian profile depends on the gray level and complex pixel designs having multiple domains, in-plain switching or vertically-aligned technology. Our previous measurements established that the largest deviation from the desired Lambertian distribution occurs in the low luminance range for the diagonal viewing direction. Our purpose in this work is to determine the effect that non-uniform changes of the angular emission have on the detection of low-contrast signals in noisy backgrounds. We used a sequential two-alternative forced choice (2AFC) approach with test images displayed at the center of the screen. The observer location was fixed at different viewing angles: on-axis and off-axis. The results are expressed in terms of percent-correct for each observer and for each experimental condition (viewing angle and luminance). Our results show that for the test images used in this experiment with human observers, the changes in detectability between on-axis and off-axis viewing are smaller than the observer variability. Model observers are consistent with these results but also indicate that different background and signal levels can lead to meaningful performance differences between on-axis and off-axis viewing.
机译:用于医疗诊断工作站的显示装置应具有与视角无关的表观亮度的漫反射发射。这种展示称为Lambertian,或者他们遵守Lambert的法律。实际显示设备永远不会真正兰博尼亚;像素的亮度取决于视角。在主动矩阵液晶显示器(AMLCD)中,距离兰伯利亚轮廓的偏离取决于具有多个域,普通开关或垂直对准技术的灰度级和复杂像素设计。我们以前的测量结果确定了与所需灯泡分布的最大偏差发生在对角线观察方向的低亮度范围内。我们在这项工作中的目的是确定角度发射对嘈杂背景中的低对比度信号的不均匀变化的影响。我们使用了一个序贯的双替代强制选择(2AFC)方法,并在屏幕中心显示的测试图像。观察者位置以不同的观察角度固定:在轴上和轴上。结果以每个观察者和每个实验条件(观察角度和亮度)为表示的百分比。我们的研究结果表明,对于在该实验中使用的测试图像与人类观察者中使用的测试图像,在轴上和轴外观察之间的可检测性的变化小于观察者可变性。模型观察者与这些结果一致,但也表明不同的背景和信号电平可能导致轴上和轴外观看之间有意义的性能差异。

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