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Identification of Critical Buses for FACTS Integration into Nigerian Grid

机译:确定将FACTS集成到尼日利亚电网的关键巴士

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The transmission component of power system network spans over very large area, covering long distances is highly susceptible to various technical challenges capable of disrupting continuous supply of electric power to load centers. To effectively and efficiently operate the system, all insecure operating states that could result to cascading outages must be quickly detected and mitigated. Consequently, this work investigates the insecure operating states within the Nigeria power grid system considering the integration of Static Var Compensator (SVC). Power flow analysis is performed on the system and line stability index is deployed to monitor the system while gradually increasing reactive power at load buses. The voltage collapse point for all load buses are determined and the weakest identified for compensation. Thus the results obtained show that active and reactive power losses reduce as the bus voltages improve to acceptable limits. The results validate the technical and cost effectiveness of SVC.
机译:电力系统网络的传输组件跨越非常大的区域,覆盖很长的距离,极易受到各种技术挑战的影响,这些挑战会破坏对负载中心的持续供电。为了有效和高效地操作系统,必须迅速检测和缓解所有可能导致级联中断的不安全操作状态。因此,这项工作考虑了静态无功补偿器(SVC)的集成,调查了尼日利亚电网系统中不安全的运行状态。在系统上执行潮流分析,并部署线路稳定性指标来监视系统,同时逐渐增加负载母线上的无功功率。确定所有负载母线的电压崩溃点,并确定最弱的点以进行补偿。因此,获得的结果表明,随着母线电压提高到可接受的极限,有功功率和无功功率的损耗会降低。结果验证了SVC的技术和成本效益。

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