Illustrative Application of the 2nd-Order Adjoint Sensitivity Analysis Methodology to a Paradigm Linear Evolution/Transmission Model: Point-Detector Response

D. Cacuci
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引用次数: 3

Abstract

This work illustrates the application of the “Second Order Comprehensive Adjoint Sensitivity Analysis Methodology” (2nd-CASAM) to a mathematical model that can simulate the evolution and/or transmission of particles in a heterogeneous medium. The model response is the value of the model’s state function (particle concentration or particle flux) at a point in phase-space, which would simulate a pointwise measurement of the respective state function. This paradigm model admits exact closed-form expressions for all of the 1st- and 2nd-order response sensitivities to the model’s uncertain parameters and domain boundaries. These closed-form expressions can be used to verify the numerical results of production and/or commercial software, e.g., particle transport codes. Furthermore, this paradigm model comprises many uncertain parameters which have relative sensitivities of identical magnitudes. Therefore, this paradigm model could serve as a stringent benchmark for inter-comparing the performances of all deterministic and statistical sensitivity analysis methods, including the 2nd-CASAM.
二阶伴随灵敏度分析方法在典型线性演化/传输模型中的说明性应用:点检测器响应
这项工作说明了“二阶综合伴随灵敏度分析方法”(2nd CASAM)在一个数学模型中的应用,该模型可以模拟粒子在非均匀介质中的演化和/或传输。模型响应是模型在相空间中某一点的状态函数(粒子浓度或粒子通量)的值,这将模拟相应状态函数的逐点测量。该范式模型允许对模型的不确定参数和域边界的所有一阶和二阶响应灵敏度的精确闭合形式表达式。这些闭式表达式可用于验证生产和/或商业软件(例如粒子传输代码)的数值结果。此外,该范式模型包括许多不确定的参数,这些参数具有相同大小的相对灵敏度。因此,该范式模型可以作为一个严格的基准,用于相互比较所有确定性和统计敏感性分析方法的性能,包括第二次CASAM。
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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