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Maximum crosstalk estimation and modeling of electromagnetic radiation from PCB/high-density connector interfaces.

机译:PCB /高密度连接器接口的电磁辐射的最大串扰估计和建模。

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摘要

This dissertation explores two topics pertinent to electromagnetic compatibility research: maximum crosstalk estimation in weakly coupled transmission lines and modeling of electromagnetic radiation resulting from printed circuit board/high-density connector interfaces. Despite an ample supply of literature devoted to the study of crosstalk, little research has been performed to formulate maximum crosstalk estimates when signal lines are electrically long. Paper one illustrates a new maximum crosstalk estimate that is based on a mathematically rigorous, integral formulation, where the transmission lines can be lossy and in an inhomogeneous media. Paper two provides a thorough comparison and analysis of the newly derived maximum crosstalk estimates with an estimate derived by another author. In paper two the newly derived estimates in paper one are shown to be more robust because they can estimate the maximum crosstalk with fewer and less restrictive assumptions.;One current industry challenge is the lack of robust printed circuit board connector models and methods to quantify radiation from these connectors. To address this challenge, a method is presented in paper three to quantify electromagnetic radiation using network parameters and power conservation, assuming the only losses at a printed circuit board/connector interface are due to radiation. Some of the radiating structures are identified and the radiation physics explored for the studied connector in paper three. Paper four expands upon the radiation modeling concepts in paper three by extending radiation characterization when material losses and multiple signals may be present at the printed circuit board/connector interface. The resulting radiated power characterization method enables robust deterministic and statistical analyses of the radiated power from printed circuit board connectors. Paper five shows the development of a statistical radiated power estimate based on the radiation characterization method presented in paper four. Maximum radiated power estimates are shown using the Markov and Chebyshev inequalities to predict a radiated power limit. A few maximum radiated power limits are proposed that depend on the amount of known information about the radiation characteristics of a printed circuit board connector.
机译:本文探讨了与电磁兼容性研究相关的两个主题:弱耦合传输线中的最大串扰估计以及印刷电路板/高密度连接器接口产生的电磁辐射建模。尽管有大量有关串扰研究的文献,但是当信号线较长时,很少有研究来制定最大串扰估计。论文一举例说明了一种新的最大串扰估算值,该估算值基于数学上严格的积分公式,其中传输线可能有损耗,并且介质不均匀。论文二对新推导的最大串扰估算值与另一位作者推导的估算值进行了全面的比较和分析。在论文二中,论文一中的新推导估计值显示出更强的鲁棒性,因为它们可以用越来越少的限制性假设来估计最大串扰。;当前的行业挑战是缺乏鲁棒的印刷电路板连接器模型和量化辐射的方法从这些连接器。为了解决这一挑战,在论文三中提出了一种使用网络参数和功率守恒来量化电磁辐射的方法,假设印刷电路板/连接器接口处的唯一损耗是辐射引起的。在第三篇论文中,确定了一些辐射结构,并研究了所研究连接器的辐射物理。当材料损失和多个信号可能出现在印刷电路板/连接器界面时,第四篇论文通过扩展辐射特性来扩展第三篇论文中的辐射建模概念。最终的辐射功率表征方法可以对印刷电路板连接器的辐射功率进行可靠的确定性和统计分析。第五篇论文展示了基于第四篇论文中描述的辐射表征方法的统计辐射功率估计的发展。使用Markov和Chebyshev不等式显示最大辐射功率估计值,以预测辐射功率极限。提出了一些最大辐射功率极限,这些极限取决于有关印刷电路板连接器辐射特性的已知信息量。

著录项

  • 作者

    Halligan, Matthew Scott.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Physics Electricity and Magnetism.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 250 p.
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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