用随机降阶模型分析电缆束串扰的不确定性

IF 2.5 3区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Zhehao Zhang;Gang Zhang;Xiao Chen;Zhongliang Du;Zhitian Wang;Alistair Duffy
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引用次数: 0

摘要

本文提出了一种基于随机降阶建模(SROM)方法的电缆束串扰不确定性分析方法。首先,提出了一种改进随机中点位移法的多点束随机电缆束建模方法,并对非均匀电缆串扰确定性计算的迭代摄动法进行了验证。根据串扰参数的灵敏度分析结果和电缆束的几何特性,对电缆模型进行降维处理。随后,利用只读存储器对随机采样的电缆束串扰进行了不确定性分析,并与蒙特卡罗方法得到的参考基准进行了比较。最后,对电缆串扰进行了实验测试,验证了所提出的随机电缆束串扰不确定性分析方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uncertainty Analysis of Crosstalk in Cable Bundles With Stochastic Reduced Order Models
This article proposes an uncertainty analysis method for crosstalk in cable bundles based on the stochastic reduced order modeling (SROM) method. First, a multipoint bundled random cable bundle modeling method is proposed by modifying the random midpoint displacement method and the iterative perturbation method for deterministic calculation of nonuniform cable crosstalk are demonstrated. According to the sensitivity analysis results of crosstalk parameters and the geometric characteristics of the cable bundle, dimensionality reduction is applied to the cable model. Subsequently, SROM is applied to perform uncertainty analysis on crosstalk for randomly sampled cable bundles, and the results are compared with a reference benchmark obtained via Monte Carlo method. Finally, experimental tests on cable crosstalk are conducted, validating the effectiveness of the proposed uncertainty analysis method for random cable bundle crosstalk.
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来源期刊
CiteScore
4.80
自引率
19.00%
发文量
235
审稿时长
2.3 months
期刊介绍: IEEE Transactions on Electromagnetic Compatibility publishes original and significant contributions related to all disciplines of electromagnetic compatibility (EMC) and relevant methods to predict, assess and prevent electromagnetic interference (EMI) and increase device/product immunity. The scope of the publication includes, but is not limited to Electromagnetic Environments; Interference Control; EMC and EMI Modeling; High Power Electromagnetics; EMC Standards, Methods of EMC Measurements; Computational Electromagnetics and Signal and Power Integrity, as applied or directly related to Electromagnetic Compatibility problems; Transmission Lines; Electrostatic Discharge and Lightning Effects; EMC in Wireless and Optical Technologies; EMC in Printed Circuit Board and System Design.
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