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A novel control algorithm for static series compensators by use of PQR instantaneous power theory

机译:基于PQR瞬时功率理论的静态串联补偿器控制算法

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摘要

This paper describes an algorithm and the related implementations to control static series compensators (SSCs). Directly sensed three-phase voltages are transformed to p-q-r coordinates without time delay, then the reference voltages in p-q-r coordinates become very simple form: single dc value. The controller in p-q-r coordinates is very simple and clear, has better steady state and dynamic performance. The controlled variables in p-q-r coordinates are then inversely transformed to the original a-b-c coordinates without time delay, generating control signals to SSCs. The control algorithm can be used for various kinds of SSCs such as dynamic voltage restorer (DVRs), series active filters (SAFs), synchronous static series compensators (SSSCs), bootstrap variable inductances (BVIs). The control algorithm was applied to a DVR system. The experimental results verified the performance of the proposed control algorithm.
机译:本文介绍了一种控制静态串联补偿器(SSC)的算法和相关实现。直接感测的三相电压被转换为p-q-r坐标而没有时间延迟,然后p-q-r坐标中的参考电压变得非常简单:单直流值。 p-q-r坐标中的控制器非常简单明了,具有更好的稳态和动态性能。然后,将p-q-r坐标中的受控变量无延迟地逆变换为原始的a-b-c坐标,从而生成控制信号到SSC。该控制算法可用于各种SSC,例如动态电压恢复器(DVR),串联有源滤波器(SAF),同步静态串联补偿器(SSSC),自举可变电感(BVI)。该控制算法已应用于DVR系统。实验结果验证了所提控制算法的性能。

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