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The analysis of travelling waves on power system transmission lines.

机译:电力系统传输线上的行波分析。

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摘要

This thesis is concerned with the mathematical representation of, and the analysis of travelling waves on, power system transmission lines. The transmission lines are described mathematically by the Telegrapher's equations. Two variants are considered in detail; where the equation coefficients are constant and where they are functions of frequency. A third variant where the coefficients are functions of the line voltage is introduced but not given a detailed treatment. The travelling wave analysis consists of finding solutions of the Telegrapher's equations, bearing in mind the characteristics of the transmission lines, the equipment to which they will be connected and the nature of the signals likely to be experienced in power system transient situations. The constant coefficient Telegrapher's equations form the basis of the 'Linear Transmission Line Analysis', the first part of this thesis. The assumptions involved in this representation and the approximations that they introduce are considered. The many techniques available for solution are critically reviewed. Even for this, the simplest travelling wave representation of a power system transmission line, solution of transient problems can introduce considerable difficulties. Application of the method of characteristics to the solution of transient propagation problems is studied in detail. This method of solution is shown to have a much wider application than has generally been recognised. Its application has led to a number of new solutions which are shown to be superior to those in current use. Both single circuit and mutually coupled multiple circuit transmission lines have been considered. In order to facilitate possible future extension of this work into the area of nonlinear transmission special consideration has been given to the direct application of time domain solution methods to transient propagation problems. The Telegrapher's equations with frequency dependent coefficients form the second part of this thesis. Literature in this subject area is both copious and scattered making it a time-consuming process to attain a current knowledge of this work. To alleviate this situation a critical summary and discussion of significant results in both the formulation of these effects and solution of the resulting equations is given. Presentation is detailed where necessary. In a number of instances the work being discussed is developed beyond that originally given. A brief concluding section considers the current state of development towards a comprehensive first order power system transmission line representation.
机译:本文涉及电力系统传输线的数学表示和行波分析。传输线由Telegrapher的方程式数学描述。详细考虑了两个变体。其中方程系数是常数,它们是频率的函数。引入了第三变体,其中系数是线电压的函数,但是没有给出详细的处理。行波分析包括找到电报员方程的解,并牢记传输线的特性,将要连接的设备以​​及电力系统瞬态情况下可能会遇到的信号的性质。常系数电报机方程式构成了本文的第一部分“线性传输线分析”的基础。考虑该表示中涉及的假设及其引入的近似值。严格审查了许多可用于解决方案的技术。即使是电力系统传输线最简单的行波表示,瞬态问题的解决也可能带来相当大的困难。详细研究了特征方法在求解瞬态传播问题中的应用。与通常公认的解决方案相比,该解决方案的应用范围更广。它的应用导致了许多新的解决方案,这些解决方案显示出优于当前使用的解决方案。已经考虑了单电路传输线和相互耦合的多电路传输线。为了便于将来将这项工作扩展到非线性传输领域,特别考虑了将时域求解方法直接应用于瞬态传播问题。具有频率相关系数的电报机方程式构成了本文的第二部分。该主题领域的文献既丰富又零散,这使得获得当前有关这项工作的知识非常耗时。为了缓解这种情况,给出了对这些影响的公式化以及所得方程的求解的重要结论的总结和讨论。必要时会详细介绍。在许多情况下,所讨论的工作超出了最初给出的范围。简短的结论部分考虑了朝着全面的一阶电力系统传输线表示的发展趋势。

著录项

  • 作者

    Barnett P. S.;

  • 作者单位
  • 年度 1974
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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