Digital simulation of the FACTS system with 60-pulse GTO-based Voltage Source Converter

Rakhmad Syafutra Lubis
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引用次数: 1

Abstract

The Flexible AC Transmission System (FACTS) controller devices based Voltage Source Converter (VSC) for shunt and series compensation, allocated in a substation, among the multiline transmission systems is presented in this paper. The paper proposes the full model comprising of the 60-pulse Gate Turn-Off (GTO) thyristor VSC that is constructed becomes the FACTS devices in digital simulation system and investigates the dynamic operation of control scheme for shunt and two series VSC for active and reactive power compensation and voltage stabilization of the electric grid network. The complete digital simulation of the shunt VSC operating as a Static Synchronous Compensator (STATCOM) controlling voltage and Var at bus, the series VSC operating as a Static Synchronous Series Capacitor (SSSC) controlling injected voltage while keeping injected voltage in quadrature with current, the two series VSCs operating as a Interline Power Flow Controller (IPFC) controlling injected voltage for power flow and the shunt VSC with the one series VSC operating as a Unified Power Flow Controller (UPFC) within the power system are performed in the MATLAB/Simulink environment using the Power System Blockset (PSB). The FACTS control system scheme and the network are modeled by specific electric blocks from the power system blockset. The controllers for the shunt VSC and two series VSCs are presented in this paper based on the decoupled current control strategy. The performance of the proposed FACTS device schemes connected to the 500-kV grid are evaluated and fully validated by digital simulation.
基于60脉冲gto电压源变换器的FACTS系统的数字仿真
介绍了一种基于电压源变换器(VSC)的柔性交流输电系统(FACTS)控制器,在变电站中配置用于多线路输电系统间的并联和串联补偿。本文提出了将60脉冲门关断(GTO)晶闸管VSC构成数字仿真系统FACTS器件的完整模型,并研究了并联控制方案和两个串联VSC对电网有功、无功补偿和电压稳定的动态运行。并联VSC作为静态同步补偿器(STATCOM)控制母线电压和Var的完整数字仿真,串联VSC作为静态同步串联电容器(SSSC)控制注入电压,同时保持注入电压与电流正交。两个系列VSC作为线间功率流控制器(IPFC)运行,控制功率流的注入电压,并联VSC与一个系列VSC作为电力系统内的统一功率流控制器(UPFC)运行,使用电力系统块集(PSB)在MATLAB/Simulink环境中执行。FACTS控制系统方案和网络由电力系统块集中的特定电气块建模。本文提出了基于解耦电流控制策略的并联型和双串联型变频调速系统的控制器。通过数字仿真对所提出的FACTS装置方案的性能进行了评估和充分验证。
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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