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Evaluation of Interconnected Power Systems Splitting

机译:互连电源系统拆分的评估

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Controlled splitting of an interconnected power system is the last defense line against wide-area blackout. As a special protection scheme, the methodology of system splitting is a comprehensive decision-making problem. This article introduces a novel approach for separation of the integrated power systems into several stable islands. The proposed method combines both the dynamic and static characteristics of interconnected power networks and determines the proper splitting schemes. The presented algorithm searches for proper islanding strategies using the Krylov projection method and a new optimization algorithm to find the proper splitting points such that the total load shedding is minimized. The method reduces the huge initial search space of islanding strategies by considering dynamic characteristics of integrated power systems. A spanning-tree-based Prim algorithm is used to find all possible combination of the islands. The speed of the proposed algorithm is remarkably high, and it can be used for real-time splitting of the power systems. The algorithm is applied to an IEEE 118-bus test system. Results show the effectiveness and capability of the method for determining fast and accurate proper islanding strategies. The stability of the islands is verified by time domain simulation.
机译:互连电源系统的受控拆分是防止广域停电的最后一道防线。作为一种特殊的保护方案,系统拆分的方法是一个全面的决策问题。本文介绍了一种将集成电源系统分为几个稳定岛的新颖方法。所提出的方法结合了互连电网的动态和静态特性,并确定适当的分割方案。提出的算法使用Krylov投影方法和新的优化算法来寻找合适的孤岛策略,以找到合适的分裂点,从而使总的负载减少最小化。通过考虑集成电力系统的动态特性,该方法减少了孤岛策略的巨大初始搜索空间。使用基于生成树的Prim算法查找岛的所有可能组合。所提算法的速度非常快,可用于电力系统的实时分割。该算法被应用于IEEE 118总线测试系统。结果表明了该方法确定快速,准确的正确孤岛策略的有效性和能力。通过时域仿真验证了孤岛的稳定性。

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