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Studies of imbalance difference theory in modeling conversion between differential mode and common mode signals.

机译:在差分模式和共模信号之间的转换建模中研究不平衡差异理论。

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摘要

This dissertation describes three related studies regarding the imbalance difference theory in modeling the conversion between differential mode and common mode/antenna mode signals. The topics covered are: rigorous derivation of imbalance difference theory for modeling radiated emission problems, modeling the conversion between differential mode and common mode propagation in transmission lines, and modeling the loading impedance on differential mode signals due to radiated emissions.;The imbalance difference theory describes a method for calculating the coupling between differential mode signals and common mode signals due to changes in electrical balance on a transmission line. It provides both physical insight and a simple technique for modeling the conversions between the two modes.;The first chapter presents a rigorous derivation of imbalance difference theory for modeling radiated emission problems. Although the theory has been successfully used to model a wide variety of important EMC problems over the past, it has not been rigorously derived. The derivation carefully defines the important quantities and demonstrates that imbalance difference calculations are exact provided that the differential-mode propagation is TEM and the current division factor, h, represents the actual ratio of currents on the two transmission line conductors excited by a common-mode source. This chapter also discusses the acquisition of the current division factor from 2D calculations of the cross-section of the transmission line.;The second chapter provides a rigorous development of the imbalance difference theory for three-conductor transmission lines where both the differential mode and common mode exhibit TEM propagation. It also derives expressions for the mode conversion impedances, which account for the energy converted from one mode to the other. They are essential for modeling the conversion between the two modes when they are strongly coupled.;The third chapter introduces conversion impedance to the existing imbalance difference theory model for modeling radiated emission problems, so that when the coupling between differential mode and antenna mode are strong, the imbalance difference theory can more accurately estimate the antenna mode current.;All three papers are about confirming, enriching and expanding the imbalance difference theory. The first chapter focuses on the rigorous derivation of theory for its most common application, radiated emission problems. The second chapter expands the theory to multi-conductor transmission line structure when the two modes are strongly coupled. The last chapter introduces conversion impedance to the theory in modeling radiated emission problems and improves the accuracy of the model at resonant frequencies.
机译:本文描述了关于不平衡差理论在差分模式与共模/天线模式信号转换建模中的三项相关研究。涵盖的主题包括:严格推导不平衡差分理论,以对辐射发射问题进行建模,对传输线中的差模与共模传播之间的转换进行建模,以及对由于辐射引起的差模信号的负载阻抗进行建模;描述了一种用于计算由于传输线上的电平衡变化而引起的差模信号和共模信号之间的耦合的方法。它既提供了物理见解,又提供了一种简单的技术来对两种模式之间的转换进行建模。;第一章对不平衡差理论进行了严格的推导,以对辐射发射问题进行建模。尽管在过去,该理论已成功地用于对各种重要的EMC问题进行建模,但尚未得到严格的推论。该推导仔细定义了重要的量,并证明了不平衡差的计算是精确的,只要差模传播为TEM且分流系数h表示由共模激励的两条传输线导体上电流的实际比率资源。本章还讨论了从传输线横截面的2D计算中获取电流分配因子的方法;第二章对差模和共模的三导体传输线的不平衡差理论进行了严格的发展模式显示TEM传播。它还导出了模式转换阻抗的表达式,该表达式考虑了从一种模式转换为另一种模式的能量。它们对于在两个模式强耦合时建模之间的转换至关重要。第三章将转换阻抗引入到现有的不平衡差分理论模型中,以建模辐射发射问题,以便在差分模式与天线模式之间的耦合较强时;不平衡差理论可以更准确地估计天线模式电流。三篇论文都是关于确认,丰富和扩展不平衡差理论的。第一章着重于对最常见的应用理论的严格推导,即辐射问题。第二章将两种模式强耦合时,将理论扩展到多导体传输线结构。最后一章将转换阻抗引入到辐射辐射问题建模的理论中,并提高了谐振频率下模型的精度。

著录项

  • 作者

    Niu, Li.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Electrical engineering.;Automotive engineering.;Electromagnetics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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