Dynamic performance of a STATCOM under grid disturbances for two different linear controllers

Jorge Valero-Rodriguez, E. B. Peña, P. Larrea, H. Duarte, A. Rodriguez
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引用次数: 6

Abstract

The aim of this paper is to present a comparative stability study between vectorial control (VC) and power-synchronization control (PSC) related to a STATCOM under different grid disturbances. Both of them are linear control methods of grid-connected voltage source converters (VSC's). VC is a very well known control method based on the dq decomposition to control the instantaneous active and reactive power independently. On the other hand, PSC is a novel method which uses the internal synchronization mechanism in AC systems, similar to the operation of a synchronous machine [1], [2]. By using this type of control, the VSC avoids the instability caused by a phase-locked loop (PLL) in weak AC systems [1]. The comparison between both control methods is verified through time simulations in the discrete domain under several grid disturbances as active and reactive power steps, grid impedance steps and voltage dips.
两种不同线性控制器下电网扰动下STATCOM的动态性能
本文的目的是对矢量控制(VC)和功率同步控制(PSC)在不同电网干扰下的稳定性进行比较研究。这两种方法都是并网电压源变换器的线性控制方法。VC是一种非常有名的基于dq分解来独立控制瞬时有功和无功功率的控制方法。另一方面,PSC是一种利用交流系统内部同步机制的新方法,类似于同步机的操作[1],[2]。通过使用这种类型的控制,VSC避免了弱交流系统中由锁相环(PLL)引起的不稳定性[1]。在有功功率阶跃、无功功率阶跃、电网阻抗阶跃和电压降等多种电网干扰下,通过离散域时间仿真验证了两种控制方法的比较。
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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