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Impact study on a load rich island and development of frequency based auto load shedding scheme to improve service reliability of the island

机译:富负荷孤岛的影响研究和基于频率的自动减载方案的开发,以提高孤岛的服务可靠性

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Electrical quantities such as frequency, voltage, current are being fluctuated due to abnormalities in power system. Most of the abnormalities cause fluctuation in system frequency and sometimes extreme abnormalities lead to system blackout. To protect the system from complete blackout planned and proper islanding plays a very important role even in case of extreme abnormalities. Islanding operation not only helps stabilizing a faulted system but also supports power supplies to critical and important loads, in extreme emergency. But the islanding systems are weaker than integrated system so the stability of islands is the prime concern when an integrated system is disintegrated. In this paper different impacts on a load rich island have been studied and a frequency based auto load shedding scheme has been developed for sudden load addition, generation outage and combined effect of both to the island. The developed scheme has been applied to Khulna-Barisal Island to validate the effectiveness of the developed technique. Various types of abnormalities to the test system have been simulated and for the simulation purpose CYME PSAF (Power System Analysis Framework) has been used.
机译:电力系统中的异常会导致诸如频率,电压,电流之类的电量波动。大多数异常会导致系统频率波动,有时极端异常会导致系统停电。为了保护系统免受计划的完全停电,即使在极端异常的情况下,正确的孤岛也起着非常重要的作用。孤岛运行不仅有助于稳定故障系统,还可以在极端紧急情况下为关键负载和重要负载供电。但是孤岛系统比集成系统要弱,因此当集成系统解体时,孤岛的稳定性是首要考虑的问题。在本文中,研究了对一个富负荷岛的不同影响,并开发了一种基于频率的自动减载方案,用于突然增加负荷,发电中断以及两者对岛的综合影响。所开发的方案已应用于库尔纳-巴里萨尔岛,以验证所开发技术的有效性。已对测试系统的各种类型的异常进行了仿真,并且出于仿真目的,已使用CYME PSAF(电源系统分析框架)。

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