多项式混沌
振幅
蒙特卡罗方法
数学
灵敏度(控制系统)
力矩(物理)
最大熵原理
应用数学
公差分析
算法
数学分析
统计
物理
电子工程
工程类
光学
经典力学
工程制图
作者
Zhonghua Wang,Chao Jiang,Xiang Ruan,Y. Q. Zhang,Zhiliang Huang,Congsi Wang,T. Fang
标识
DOI:10.1142/s0219876218501050
摘要
This paper develops an uncertainty propagation analysis method to analyze transmit/receive (T/R) modules with uncertain parameters, such as variability and tolerances in the physical parameters and geometry produced in the manufacturing processes. The method is a combination of the variance decomposition-based sensitivity analysis and the moment-based arbitrary polynomial chaos (MBaPC). First, the electromagnetic simulation model of a practical T/R module is created. Secondly, based on the model, the sensitivity analysis is carried out to determine the sensitive parameters to the amplitude difference and the phase difference between the input and output electromagnetic signal. Thirdly, their four order statistical moments are calculated using the MBaPC. At last, according to the maximum entropy principle, the statistical moments are used to fit the probability distribution functions of the amplitude difference and the phase difference of the T/R module. The results computed by MBaPC have been validated accurate and efficient compared with Monte Carlo simulation approach.
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