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Luminance measurement of curved surface sources

机译:曲面光源的亮度测量

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摘要

As they are light, thin, rollable, break-resistant, and have fewer limitations on space, flexible components, especially flexible displays, are highly attractive for next generation electronic products. Curved is the most common shape for current flexible products. Two methods for measuring the luminance distribution of curved surface sources are investigated in this paper, including the theoretical analysis, numerical simulation, experiment and uncertainty analysis. The luminance measurement results of flexible sources not only depend on the photometric characteristics of the sources themselves, but also depend on the measurement method, such as the setting of the measuring instrument and the measurement position. The results of numerical simulation show that the more the source is unlike a Lambertian source or the smaller the curvature of the source, the greater the effect of the measurement method on the measurement results. Theoretically, the luminance distribution from one measurement method can be estimated from the other method by multiplying by conversion factors. An experiment is performed to verify the possibility of converting and also verify the correction of the theoretical analysis. For precise luminance measurement, position alignment is the key factor to reduce the uncertainty. Unlike with flat surface sources, the luminance measurement result for a curved surface source is strongly dependent on the measurement conditions. The currently documented standards for evaluating the optical performance of a flat surface source may not be appropriate for a flexible surface source. It is necessary to refine a new measurement provision to help the manufacturers utilize the appropriate metrology.
机译:由于它们轻巧,薄,可滚动,耐折断并且在空间上具有较少的限制,因此柔性组件(尤其是柔性显示器)对于下一代电子产品非常有吸引力。弯曲是当前柔性产品最常见的形状。本文研究了两种测量曲面光源亮度分布的方法,包括理论分析,数值模拟,实验和不确定性分析。柔性光源的亮度测量结果不仅取决于光源本身的光度特性,还取决于测量方法,例如测量仪器的设置和测量位置。数值模拟结果表明,该源与朗伯源不同,或者源的曲率越小,该测量方法对测量结果的影响越大。从理论上讲,一种测量方法的亮度分布可以通过将另一种方法乘以转换因子来估算。进行实验以验证转换的可能性,并还验证理论分析的正确性。对于精确的亮度测量,位置对准是减少不确定性的关键因素。与平面光源不同,曲面光源的亮度测量结果在很大程度上取决于测量条件。当前记录的用于评估平面光源的光学性能的标准可能不适用于柔性表面光源。有必要完善一项新的测量规定,以帮助制造商利用适当的度量衡。

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