首页> 外文会议>Conference on Sensors, Systems, and Next-Generation Satellites IV 25-28 September 2000 Barcelona, Spain >Uncertainty and confidence intervals in optical design using the Monte Carlo ray-trace method
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Uncertainty and confidence intervals in optical design using the Monte Carlo ray-trace method

机译:使用蒙特卡洛射线追踪法进行光学设计的不确定度和置信区间

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The increasing use of probablistic methods, such as the Monte Carlo ray-trace (MCRT) method, in thermal radiation and optical modeling, has created a general awareness in the community of the need for a protocol to predict, to a specified level of confidence, the uncertainty of the results obtained using these methods. This paper presents such a protocol applied to models of radiometric channels used in spaced-based earth observations. It is anticipated that the same protocol, with suitable modification, may be extended to data from actual instruments. The authors and their colleagues have developed a powerful generic MCRT-based computational environment that, among other features, is capable of simulatign radiative exchange among surfaces and within enclosures. As in any MCRT thermal-radiative/optical model, the spatial resolution and accuracy of the results obtained depend on the fineness of the mesh, the number of rays traced, and the accuracy of directional and spectral surface property models. The protocol presented in this paper identifies and quantifies the contribution of these factors to the ultimate uncertainty in predicted results and to their relate4d confidence intervals.
机译:在热辐射和光学建模中,越来越多地使用概率方法,例如蒙特卡洛射线追踪(MCRT)方法,已经使社区普遍意识到需要一种协议来预测特定的置信度,使用这些方法获得的结果的不确定性。本文提出了一种适用于基于空间的地球观测中的辐射测量通道模型的协议。可以预期,经过适当修改的相同协议可以扩展到实际仪器的数据。作者及其同事开发了一个功能强大的,基于MCRT的通用计算环境,该环境除其他功能外,还能够模拟表面之间以及封闭空间内的辐射交换。像在任何MCRT热辐射/光学模型中一样,所获得结果的空间分辨率和准确性取决于网孔的细度,所追踪的光线数量以及定向和光谱表面特性模型的准确性。本文提出的协议可以识别和量化这些因素对预测结果的最终不确定性及其相关置信区间的影响。

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