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Active splitting strategy searching approach based on MISOCP with consideration of power island stability

机译:考虑功率岛稳定性的基于MISOCP的主动分裂策略搜索方法

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摘要

Active splitting control utilizes real-time decision and system-level splitting to prevent cascading blackouts and to maintain power supply under severe disturbances. Splitting strategy searching (SSS) is one of the most crucial issues in active splitting control for deciding “where to split”. SSS determines the splitting surface in real time to properly divide the asynchronous generators into isolated islands with an optimal control effect. In this paper, an SSS approach that focuses on island stability is presented. The proposed SSS approach is designed to ensure a rational stability margin and regulation ability on each island during and after the transient process of system splitting. This method includes the active/reactive power flow feasibility constraints and voltage/angle stability constraints in the steady state, as well as the frequency response capability constraints in the transient process. By considering the island stability constraints in the SSS, the proposed approach can avoid the splitting strategies with poor stability performance. Therefore, the major advantage of the proposed approach is ensuring better island static and transient stability during and after the splitting control. In addition, the entire model is formulated as a mixed-integer second-order cone programming (MISOCP) model. Thus, it can be rapidly solved by using commercial optimization solvers. Numerical simulation of a realistic provincial power system in central China demonstrates the validity of the proposed approach and the necessity of considering the island stability issues.
机译:主动拆分控制利用实时决策和系统级拆分来防止连锁停电并在严重干扰下维持电源。分割策略搜索(SSS)是主动分割控制中确定“分割位置”的最关键问题之一。 SSS实时确定劈裂面,以将异步发电机适当地分成孤立的孤岛,从而获得最佳控制效果。在本文中,提出了一种以岛屿稳定为重点的SSS方法。提出的SSS方法旨在确保在系统分裂的瞬态过程中和之后的每个岛上具有合理的稳定裕度和调节能力。该方法包括稳态下的有功/无功潮流可行性约束和电压/角度稳定性约束,以及瞬态过程中的频率响应能力约束。通过考虑SSS中的岛屿稳定性约束,该方法可以避免稳定性差的分裂策略。因此,所提出的方法的主要优点是在分裂控制期间和之后确保更好的岛静态和瞬态稳定性。此外,整个模型被公式化为混合整数二阶锥规划(MISOCP)模型。因此,可以通过使用商业优化求解器快速解决它。中国中部一个现实的省级电力系统的数值模拟证明了该方法的有效性以及考虑岛屿稳定问题的必要性。

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