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Analytic determination of optimal projector lens design requirements for pixilated projectors used to test pixilated imaging sensors

机译:解析确定用于测试像素化成像传感器的像素化投影仪的最佳投影仪镜头设计要求

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摘要

A model is described for the problem of optimally projecting a pixellated light source onto a pixellated imaging sensor, in the context that the projected source is used for performance testing of the sensor. The model can be used, for example, to compute the paraxial design requirements of the projection lens, given that the parameters of all other subsystems in the problem are fixed. For remote sensing applications, where the performance of a sensor focused at infinity is to be tested, the projector lens becomes a collimator. For optimal projection when using the source for performance testing of the sensor, one then requires that the projector pixels are not spatially resolved by the imaging sensor, the entrance pupil of the sensor is overfilled without vignetting, and also, where feasible, the sensor field of view is overfilled. The model uses paraxial analytical ray tracing approximations to provide a set of equations that are used in an associated spreadsheet to determine the basic collimator requirements such as effective focal length, f/#, and relief distance, given the geometrical characteristics of the projector spatial light modulator and the sensor under test. Beyond this, the model provides a sense of intuition and guidance prior to detailed computerized ray tracing.
机译:描述了一种模型,该模型用于在将投影光源用于传感器的性能测试的情况下将像素化光源最佳地投影到像素化成像传感器上的问题。假设问题中所有其他子系统的参数都是固定的,则该模型可用于例如计算投影镜头的近轴设计要求。对于需要检测聚焦在无限远处的传感器性能的遥感应用,投影仪镜头将成为准直仪。为了在使用光源进行传感器性能测试时获得最佳的投影效果,则要求投影仪像素不被成像传感器在空间上分辨,传感器的入射光瞳会被过度填充而不会出现渐晕现象,并且在可行的情况下还需要传感器场视野太满了。该模型使用近轴分析射线追踪近似值提供一组方程式,该方程式可在关联的电子表格中使用,以确定基本的准直仪要求,例如有效的焦距,f /#和释放距离(给定投影仪空间光的几何特性)调制器和被测传感器。除此之外,该模型还可以在进行详细的计算机射线追踪之前提供直觉和指导感。

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