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Optimal control of UPFC for load flow control and voltage flicker elimination and current harmonics elimination

机译:UPFC的最优控制,用于潮流控制,电压闪变消除和电流谐波消除

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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. Most of the control schemes introduced were designed either for eliminating current harmonics or eliminating voltage flickers or for load flow control. They are mostly based on the PI controller. None of these control schemes were based on a systematic optimal control law that can control the converters to achieve all purposes at the same time, load flow control, voltage flicker elimination and also current harmonics elimination. This paper presents three novel control strategies: optimal control with tracking according to desired steady-state behaviour, optimal control with linear quadratic tracker design, and optimal control with tracking with PI controllers. The strategies were tested using a power system distribution model. The presented results show that all three control strategies improve the performance of the load flow and eliminate the current harmonics and voltage flicker. The controller design based on the desired steady-state behaviour is superior compared to other way of designs as the low value of the weighting matrix Q is satisfactory to obtain the desired tracking.
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。引入的大多数控制方案都旨在消除电流谐波或消除电压闪变,或用于潮流控制。它们主要基于PI控制器。这些控制方案都不基于系统最优控制律,该最优控制律可以控制转换器同时实现所有目的,控制潮流,消除电压闪变以及消除电流谐波。本文提出了三种新颖的控制策略:根据所需的稳态行为进行跟踪的最优控制,采用线性二次跟踪器设计的最优控制以及采用PI控制器的跟踪的最优控制。使用电源系统分配模型对策略进行了测试。给出的结果表明,所有三种控制策略均可以改善潮流性能,并消除电流谐波和电压闪变。与其他设计方式相比,基于所需稳态行为的控制器设计要优越,因为权重矩阵Q的低值足以获得所需跟踪。

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