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Performance analysis of IEEE 9 Bus system using TCSC

机译:使用TCSC的IEEE 9总线系统的性能分析

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摘要

The events of damaging blackouts, voltage fluctuation and collapses are a point of major concern for electricity boards, power system engineers and the consumers all over the globe. Better compensation of reactive power in a system will lead to a better voltage profile, improving the overall power quality. In this paper authors are focusing on reactive power compensation of a IEEE-9 Bus system using thyristor controlled series capacitor. The simulation and the analysis of data is carried out using Mipower (version9.0) software. Netwon Raphson method of load flow solutions has been used. At first we have analyzed the IEEE-9 bus system under the standard test data and after that we analyzed the same IEEE-9 bus system with Thyristor controlled series capacitor. The system is studied to analyze reactive power compensation, voltage profile and line losses with and without TCSC. The results obtained in both the cases have been comparatively analyzed and proves that TCSC improves the performance of the system.
机译:断电,电压波动和崩溃等破坏性事件是配电板,电源系统工程师和全球消费者的主要关注点。系统中无功功率的更好补偿将导致更好的电压曲线,从而改善整体功率质量。本文的作者集中在使用晶闸管控制串联电容器的IEEE-9总线系统的无功补偿。使用Mipower(version9.0)软件进行数据的仿真和分析。已使用Netwon Raphson方法的潮流解决方案。首先,我们在标准测试数据下分析了IEEE-9总线系统,然后我们使用晶闸管控制串联电容器分析了相同的IEEE-9总线系统。研究该系统以分析有无TCSC时的无功功率补偿,电压曲线和线损。两种情况下获得的结果都经过了比较分析,并证明TCSC可以改善系统的性能。

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