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The Origin of Nonlinear Phenomena in TCR-SVC Associated With Parametric Excitation of Intrinsic Oscillation and External Excitation

机译:与固有振荡和外部激励的参数激励相关的TCR-SVC非线性现象的起源

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摘要

This paper focuses on anomalous nonlinear phenomena in a thyristor controlled reactor-static var compensator (TCR-SVC) system, called switching time bifurcation, and clarifies the relationship between the occurrence of nonlinear phenomenon and the intrinsic characteristics of the circuit equation with switching function. The occurrence of nonlinear phenomenon in a TCR-SVC system cannot be predicted when the dynamics of the circuit related to the switching action is neglected. Therefore, this paper considers the dynamics related to the switching operations in the analysis of nonlinear phenomena. The parametric excitation of circuit is discussed in relation to the homogeneous expression of the circuit equation. This paper indicates that the homogeneous equation of the TCR-SVC system results in Hill's equation, and it can be approximated as Mathieu's equation. The occurrence of nonlinear phenomena in the system is evaluated using the characteristics of Mathieu's equation. The anomalous nonlinear phenomena occur when the natural frequency of Mathieu's equation coincides with the frequency of the ac voltage in a TCR-SVC system. The parametric excitation is also confirmed through the characteristics of Hill's equation. This study clarified the interaction between the switching dynamics of the circuit and its external excitation, and clued the occurrence of nonlinear phenomena in the circuit. The proposed procedure can also be applied to the analysis for other switching converter circuits with periodic excitation source.
机译:本文重点研究晶闸管控制的电抗器-静态无功补偿器(TCR-SVC)系统中的异常非线性现象,称为开关时间分叉,并阐明非线性现象的发生与具有开关功能的电路方程的固有特性之间的关系。当忽略了与开关动作有关的电路的动态特性时,就无法预测TCR-SVC系统中非线性现象的发生。因此,本文在分析非线性现象时考虑了与开关操作相关的动力学。关于电路方程的齐次表达式,讨论了电路的参数激励。本文表明,TCR-SVC系统的齐次方程产生了Hill方程,可以近似为Mathieu方程。使用Mathieu方程的特征评估系统中非线性现象的发生。当Mathieu方程的固有频率与TCR-SVC系统中交流电压的频率一致时,就会出现异常的非线性现象。参数激励也通过希尔方程的特征得到证实。这项研究阐明了电路的开关动力学与其外部激励之间的相互作用,并阐明了电路中非线性现象的发生。所提出的程序也可以应用于具有周期性激励源的其他开关变换器电路的分析。

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