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Multi machine power system stability enhancement using Static Synchronous Series Compensator (SSSC)

机译:多机电源系统稳定性增强静态同步串联补偿器(SSSC)

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This paper investigates the enhancement of voltage stability using Static Synchronous Series Compensator (SSSC). The continuous demand in electric power system network has caused the system to be heavily loaded leading to voltage instability. Under heavy loaded conditions there may be insufficient reactive power causing the voltages to drop. This drop may lead to drops in voltage at various buses. The result would be the occurrence of voltage collapse which leads to total blackout of the whole system. Flexible AC transmission systems (FACTS) controllers have been mainly used for solving various power system stability control problems. In this study, a static synchronous series compensator (SSSC) is used to investigate the effect of this device in controlling active and reactive powers as well as damping power system oscillations in transient mode. The PI controller is used to tune the circuit and to provide the zero signal error. The dynamic performance of SSSC is presented by real time voltage and current waveforms using MATLAB software for IEEE 4 bus system.
机译:本文使用静态同步串联补偿器(SSSC)来调查电压稳定性的增强。电力系统网络中的连续需求导致系统负荷负荷,导致电压不稳定。在重载条件下,可能存在不足的无功功率,导致电压下降。该跌落可能导致各个总线的电压下降。结果将是电压崩溃的发生,从而导致整个系统的全部停电。灵活的AC传输系统(事实)控制器主要用于解决各种电力系统稳定性控制问题。在本研究中,使用静态同步串联补偿器(SSC)来研究该装置在控制主动和无功功率方面的效果以及瞬态模式下的阻尼电力系统振荡。 PI控制器用于调谐电路并提供零信号误差。 SSC的动态性能由使用Matlab软件用于IEEE 4总线系统的实时电压和电流波形。

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