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Intentional controlled islanding: when to island for power system blackout prevention

机译:故意控制的孤岛:何时为防止电力系统停电而孤岛

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摘要

Power systems are prone to cascading outages leading to large-area blackouts with significant social and economic consequences. Intentional controlled islanding (i.e. the separation of the system into sustainable islands) is an effective strategy to mitigate these catastrophic events. To ensure a correct separation, nonetheless, it is crucial to define a suitable time to split the system (i.e. to answer the when to island question). To consider the probability of the event, the reliability of the system components, the reliability of the information and communication technologies, and the potential economic costs of the event, answering the above question within a risk-based framework becomes critical. To date, however, this has not been done. This study proposes a risk-based methodology to define, in an adaptive manner, a suitable time to split the system following an event. This methodology complements the well-studied where to island question, resulting in an integral solution of the islanding problem. To illustrate the approach, the IEEE 118-bus dynamic system is adopted considering realistic security criteria. Simulation results demonstrate the effectiveness and flexibility of the methodology in identifying a suitable time for the creation of islands, which, in turn, results in the prevention of blackouts that would otherwise be obtained.
机译:电力系统容易发生连锁故障,导致大面积停电,并带来严重的社会和经济后果。故意控制的离岛(即将系统分成可持续的岛)是减轻这些灾难性事件的有效策略。尽管如此,为了确保正确的分隔,至关重要的是定义一个合适的时间来分割系统(即回答何时出现孤岛问题)。为了考虑事件的可能性,系统组件的可靠性,信息和通信技术的可靠性以及事件的潜在经济成本,在基于风险的框架内回答以上问题变得至关重要。但是,到目前为止,还没有完成。这项研究提出了一种基于风险的方法,以自适应方式定义事件发生后分裂系统的合适时间。这种方法补充了经过深入研究的“哪里有孤岛”问题,从而为孤岛问题提供了完整的解决方案。为了说明这种方法,考虑了现实的安全标准,采用了IEEE 118总线动态系统。仿真结果证明了该方法在确定创建岛屿的合适时间方面的有效性和灵活性,从而防止了原本可以避免的停电。

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