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Modular approach for characterizing and modeling conducted EMI emissions in power converters.

机译:用于表征和建模功率转换器中传导EMI辐射的模块化方法。

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摘要

With the development of power electronics, electromagnetic interference (EMI) and electromagnetic compatibility (EMC) issues have become more and more important for both power converter designers and customers. This dissertation studies EMI noise emission characterization and modeling in power converters.; A modular-terminal-behavioral (MTB) equivalent EMI noise source modeling approach is proposed. This work is the first to systematically develop a 3-terminal EMI noise source model for a switching phase-leg device module. Each module is modeled as pairs of equivalent noise current sources and source impedances. Although the proposed MTB modeling approach applies the linear circuit theory to a semiconductor switching device, which exhibits nonlinear behavior during switching transients, the analysis and experiments show that the nonlinearity has negligible practical effect on the modeling methodology. The validation range of the modeling methodology has been analyzed.; One of the differences between the proposed MTB model and the other state-of-the-art models is that the MTB model characterizes and predicts the CM and DM noise simultaneously. The inseparable high-frequency CM and DM noise characteristics contributed by the source impedance and propagation path are analyzed. A comprehensive evaluation of different EMI noise source modeling approaches according to the criteria of accuracy, feasibility and generality has been presented. Results show that the MTB modeling approach is more accurate, feasible and general than other approaches.; The modular and terminal characteristics of the MTB noise source model are verified in two more complicated cases. One example is the application of the MTB equivalent source model in a half-bridge AC converter with variable switching conditions. Although the MTB model is derived under a certain operating condition, the models under different conditions can be combined together to predict the EMI noise for the converter with variable switching conditions. Another example is the application of the MTB equivalent source model in multiple-phase-leg converters. The EMI noise of a full-bridge converter is predicted based on the MTB equivalent source model of one phase-leg module. The implementation procedures and results for both applications are verified by the experiment. The applicability of the MTB model in different type of converters is discussed. (Abstract shortened by UMI.)
机译:随着电力电子技术的发展,电磁干扰(EMI)和电磁兼容性(EMC)问题对于功率转换器设计人员和客户而言都变得越来越重要。本文研究了功率变换器中的EMI噪声发射特性和建模。提出了一种模块化的终端行为(MTB)等效EMI噪声源建模方法。这项工作是第一个系统地开发用于开关相脚设备模块的3端EMI噪声源模型的工作。每个模块建模为成对的等效噪声电流源和源阻抗。尽管提出的MTB建模方法将线性电路理论应用于半导体开关器件,该器件在开关瞬态过程中表现出非线性行为,但分析和实验表明,非线性对建模方法的实际影响可忽略不计。分析了建模方法的验证范围。所提出的MTB模型与其他最新模型之间的差异之一是,MTB模型可同时表征和预测CM和DM噪声。分析了源阻抗和传播路径对高频CM和DM噪声特性的影响。根据准确性,可行性和通用性的标准,对各种EMI噪声源建模方法进行了综合评估。结果表明,MTB建模方法比其他方法更准确,可行和通用。在两种更为复杂的情况下,验证了MTB噪声源模型的模块化和终端特性。一个示例是MTB等效源模型在具有可变开关条件的半桥AC转换器中的应用。尽管MTB模型是在特定工作条件下得出的,但可以将不同条件下的模型组合在一起,以预测具有可变开关条件的转换器的EMI噪声。另一个例子是MTB等效源模型在多相支路转换器中的应用。基于一个相脚模块的MTB等效源模型,可以预测全桥转换器的EMI噪声。实验验证了两种应用程序的实现过程和结果。讨论了MTB模型在不同类型的转换器中的适用性。 (摘要由UMI缩短。)

著录项

  • 作者

    Liu, Qian.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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