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Using the Feature Selective Validation Technique to Compare CEM Code Predictions and Measurements of Field Distributions for Cavity Problems

机译:使用特征选择性验证技术比较CEM码预测和腔腔问题的场分布测量

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This paper illustrates the application of the Feature Selective Validation (FSV) technique based on the IEEE 1597.1 Standard for the Validation of CEM Computer Modeling and Simulations. The FSV method facilitates comparisons of sets of electromagnetic (EM) observable data for a given problem to determine a "level of agreement" measure across any independent variable. This paper compares the results of CEM computer simulations for a cavity problem and a phantom pickup wire used to measure statistical field distributions at various sample points along the length of the wire. The objective of this exercise is to confirm the hypothesis that the field distributions will not vary too significantly along the short wire length. Several different CEM techniques were used, namely finite difference frequency domain (FDTD), multi-level fast multipole (MLFM), and the moment method (MoM). This paper focuses on the results of the FDTD simulations. Future comparisons will be made between the full complement of predictions and a reverberation chamber baseline measurement to establish a level of goodness metric to validate results and demonstrate the efficacy of the FSV approach.
机译:本文说明了基于IEEE 1597.1标准的特征选择性验证(FSV)技术的应用,以验证CEM计算机建模和仿真。 FSV方法有助于对给定问题的电磁(EM)可观察数据集的比较,以确定任何独立变量的“协议水平”测量。本文比较了用于腔问题的CEM计算机模拟的结果和用于测量沿着线的长度的各种样品点处测量统计场分布的幻像拾取线。本练习的目的是确认现场分布在短线长度不会显着变化的假设。使用了几种不同的CEM技术,即有限差分域(FDTD),多级快速多极(MLFM),以及矩法(MOM)。本文重点介绍了FDTD模拟的结果。将在预测的全部补充和混响室基线测量之间进行未来的比较,以建立验证结果的良好度量水平并证明FSV方法的功效。

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