Effect of Wind Farm and Thyristor Switched Series Capacitors on a Faulty Network

Milad Gheydi, S. Bagheri
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Abstract

Controlling voltage and active or reactive losses are one of the most important issues in each power grid. In this paper, the influence of wind farm and thyristors switched capacitors on the network are considered. TSSC and Wind turbines are one of the significant components of each network. These instruments are also one of the resources of producing active and reactive power. In this study, wind farm and TSSC are already located optimally by Genetic algorithm. This network studied when a fault considered in one of buses. So that, in first step none of wind farm and TSSC are in the power grid. In the second step, both wind farm and TSSC are connected while a short circuit accrues in one of the busses or lines of the network.  At the end, it will be observed that using thyristor switched capacitors and wind farm influence the network. So that, the capacity of producing the reactive and active power will be increased and totally the loss of the system will be decreased. Furthermore, the voltage profile will be in a suitable range.
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风电场和晶闸管开关串联电容器对故障网络的影响
控制电压和有功或无功损耗是各电网的重要问题之一。本文考虑了风电场和可控硅开关电容器对电网的影响。TSSC和风力涡轮机是每个网络的重要组成部分之一。这些仪器也是产生有功和无功功率的资源之一。在本研究中,风电场和TSSC已经通过遗传算法进行了最优定位。该网络研究了当某一总线出现故障时的情况。因此,在第一步,没有风电场和TSSC在电网中。在第二步中,风电场和TSSC同时连接,当其中一个总线或网络线路发生短路时。最后,将观察到使用晶闸管开关电容器和风电场对网络的影响。从而提高系统的无功和有功发电量,降低系统的总损耗。此外,电压分布将在一个合适的范围内。
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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