状态变量法在快速求出输电线路谐振频率中的应用

A. Pana, A. Baloi, F. Molnar-Matei
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引用次数: 3

摘要

谐波在电网中的传播直接受到电网各部分等效谐波阻抗值的影响。状态变量法最初应用于自动化系统的研究,现在有许多其他的应用。其中之一,在本文中提出,包括快速确定频率的谐波阻抗,从电网总线看到,显示极性(最大值-对应于并联谐振)和零(最小值-对应于串联谐振)。将这些频率与电网中谐波电流的频率进行比较,可以快速评估谐波放大的风险。本文还介绍了将该方法应用于传输线谐波谐振频率的计算结果,并将结果与经典方法——网络导纳矩阵的反演所得结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of the State Variables Method on Quickly Evaluation of the Harmonic Resonance Frequencies in a Transmission Line
The harmonics propagation in a power network is directly influenced by the value of the equivalent harmonic impedance (seen) in each section of the network. The state variable method, initially applied for the automated systems study, has many other applications. One of them, presented in this paper, consists in a quick determination of the frequencies for which the harmonic impedance, as seen from a power network bus, exhibits poles (maximums - corresponding to parallel resonance) and zeroes (minimurns -corresponding to series resonance). The comparison of these frequencies with those of the harmonic currents - present in the network - allows a quick evaluation of the harmonics amplifying risk. The paper also presents the results of applying this method at the evaluation of the harmonic resonance frequencies on a transmission line, results later compared with those obtained with a classical method -the inversion of the network admittance matrix.
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