PEARLSS, A Sensor System Simulation of the Effects of Contaminants

L. Whitlock, J. Jackson
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引用次数: 2

Abstract

Space-borne optical systems have become increasingly important in recent history. Contamination of such sensors in space is a critical issue because it degrades the capability to detect or identify objects of interest through stray light scatter into the field-of-view (FOV), signal attenuation, false targeting, defocussing of the target image, etc. The magnitude and structure of the noise contribution from contamination must be weighed against the magnitude and structure of other noise components in order to determine its importance. Clearly, the problem is system design dependent and a flexible means of simulation is required to address the issue. Many previous models have dealt only with pieces of the problem; PEARLSS (Particulate Effects Analysis on Response Levels of Space-borne Sensors) is a model which deals with contamination generation, migration, deposition, and resulting optical degradation in a single 'end-to-end' code.
模拟污染物影响的传感器系统
近年来,星载光学系统变得越来越重要。这种传感器在空间中的污染是一个关键问题,因为它会通过杂散光散射到视场(FOV)、信号衰减、错误瞄准、目标图像散焦等降低探测或识别感兴趣目标的能力。污染噪声贡献的大小和结构必须与其他噪声成分的大小和结构进行权衡,以确定其重要性。显然,这个问题取决于系统设计,需要一种灵活的模拟方法来解决这个问题。许多先前的模型只处理了问题的一部分;PEARLSS(星载传感器响应水平的微粒效应分析)是一个模型,它处理污染的产生,迁移,沉积,以及在一个单一的“端到端”代码中导致的光学退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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