Application of State Estimation Technique for Impedance matching to optimize Static Transfer Switch operation

T. Mahmood, M. Choudhry
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引用次数: 2

Abstract

The performance of complementary feeders, running in parallel, is significantly improved by installing static transfer switch (STS) at critical locations. Normally STS control logic is designed such that both feeder voltages are considered in phase and the three phase (3-Phi) line reactance of both the feeders are assumed to be equal. However, the two different feeders have different parameters and hence the phase angle between both bus voltages at the receiving end of the STS terminals is different. Depending on phase angle difference and time of disturbance, cross current phenomena occurs during switching consequently transfer time is maximized. Results show improvement in the performance of STS when weighted-least square state estimation technique has been used to estimate the phase angle at the input terminals of STS. The impedances of both feeders have been matched and phase angle difference at the STS terminals has been eliminated by installing shunt capacitor of proper size. PSCAD/EMTDC software package has been used for simulation and analysis.
阻抗匹配状态估计技术在静态转换开关工作优化中的应用
通过在关键位置安装静态转换开关(STS),可显著改善并联运行的互补馈线的性能。通常,STS控制逻辑的设计使得两个馈线电压都被认为是相的,并且假设两个馈线的三相(3-Phi)线路电抗相等。然而,两个不同的馈线具有不同的参数,因此STS终端接收端的两个母线电压之间的相角是不同的。根据相位角差和干扰时间的不同,开关过程中会出现交叉电流现象,从而使转移时间最大化。结果表明,采用加权最小二乘状态估计技术估计STS输入端相位角,提高了STS的性能。通过安装适当尺寸的并联电容,实现了两路馈线阻抗的匹配,消除了STS端相位角差。采用PSCAD/EMTDC软件包进行仿真分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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