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Novel reactive power controllers for the STATCOM and SSSC

机译:STATCOM和SSSC的新型无功功率控制器

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The paper investigates the dynamic operation of both static synchronous compensator (STATCOM) and static synchronous series compensator (SSSC) based on a new model comprising full 48-pulse GTO voltage source converter for combined reactive power compensation and voltage stabilization of the electric grid network. These key FACTS devices are power electronic GTO converters connected in parallel or series with the power system grid and are controlled by novel decoupled controllers. The complete digital simulation of the STATCOM and SSSC within the power system is performed in the MATLAB/Simulink environment using the power system blockset (PSB). The STATCOM scheme and the electric grid network are modeled by specific electric blocks from the power system blockset while the control system is modeled using Simulink. Two novel controllers for the STATCOM and SSSC are presented in this paper based on a decoupled current control strategy to ensure stable operation of the STATCOM under various load excursions. A novel control scheme for the static synchronous series compensator (SSSC) is also implemented to provide a full controllable series compensating (buck/boost) injected voltage over a specified capacitive and inductive range, independently of the magnitude of the transmission line current. The series reactive compensation scheme with an external dc power supply can also compensate for any voltage drops across resistive component of the transmission line impedance. The novel decoupled controller uses a phase locked loop (PLL) with a novel reduced inherent time delay to improve the transient performance of the SSSC. The performance of both STATCOM and SSSC schemes connected to the 230 kV grid are evaluated. The proposed novel control schemes for the STATCOM and SSSC are fully validated by digital simulation.
机译:本文基于包含全48脉冲GTO电压源转换器的新模型,研究了静态同步补偿器(STATCOM)和静态同步串联补偿器(SSSC)的动态运行,以实现电网无功补偿和电压稳定的组合。这些关键的FACTS设备是与电力系统电网并联或串联的电力电子GTO转换器,并由新颖的解耦控制器控制。电力系统中STATCOM和SSSC的完整数字仿真是在MATLAB / Simulink环境中使用电力系统模块集(PSB)进行的。 STATCOM方案和电网网络通过电力系统模块集中的特定电气模块进行建模,而控制系统则使用Simulink进行建模。本文基于去耦电流控制策略,针对STATCOM和SSSC提出了两种新颖的控制器,以确保STATCOM在各种负载波动下均能稳定运行。还实现了一种用于静态同步串联补偿器(SSSC)的新颖控制方案,以在指定的电容和电感范围内提供完全可控的串联补偿(降压/升压)注入电压,而与传输线电流的大小无关。带有外部直流电源的串联无功补偿方案还可以补偿传输线阻抗中电阻性组件两端的任何压降。新颖的解耦控制器使用锁相环(PLL)并减少了固有的时间延迟,以改善SSSC的瞬态性能。评估了连接到230 kV电网的STATCOM和SSSC方案的性能。所提出的针对STATCOM和SSSC的新型控制方案已通过数字仿真得到了充分验证。

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