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Comparison between optimal control strategies applied to a system with unified power flow controller, shunt converter and series converter

机译:应用于具有统一潮流控制器,并联变换器和串联变换器的系统的最佳控制策略之间的比较

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Recent advances in the power system handling capabilities of static switches have made the use of the voltage source inverter (VSI) feasible at both transmission and distribution levels. This paper is focused on comparison between optimal control strategies applied to a system with unified power flow controller, shunt converter and series converter. The control strategies were tested using a power system distribution model. The presented results show that when the system is with one converter, there will be only two control inputs in the system, making it possible to track only two outputs in the system. If the objective is to maintain capacitor voltage constant, it is possible to track one output of the system for the capacitor voltage to be maintained constant. When the system is with two converters, then there will be four control inputs in system, and so it is possible to track four outputs in the system. The series converter can eliminate the voltage flicker that exists in the same branch the series converter is located in, while the shunt converter can eliminate the current harmonics. The UPFC can remove both the current harmonics and voltage flicker from the system.
机译:静态开关在电源系统处理能力方面的最新进展已使电压源逆变器(VSI)在传输和分配级别上都可行。本文着重比较应用于具有统一潮流控制器,并联转换器和串联转换器的系统的最佳控制策略。使用电力系统分配模型对控制策略进行了测试。呈现的结果表明,当系统使用一个转换器时,系统中将只有两个控制输入,从而可以仅跟踪系统中的两个输出。如果目标是保持电容器电压恒定,则可以跟踪系统的一个输出,以使电容器电压保持恒定。当系统具有两个转换器时,系统中将有四个控制输入,因此可以跟踪系统中的四个输出。串联转换器可以消除串联转换器所在分支中存在的电压闪变,而并联转换器可以消除电流谐波。 UPFC可以消除系统中的电流谐波和电压闪烁。

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