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A Fault Recovery Strategy of Distribution Network Based on Mixed-integer Second-order Cone Programming

机译:基于混合整数二阶锥规划的配电网故障恢复策略

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In the fault recovery problem of distribution network with distribution generators (DG), the method of island partitioning is always adopted without considering network reconfiguration and tie switches. And in the traditional distribution network reconfiguration problem, the radial constraints of the network are necessary to ensure that all loads are powered. In this paper, a fault recovery strategy, which can rationally coordinate the distribution network reconfiguration with isolated island partitioning, is presented. Firstly, load cutting and islanding operation are allowed by modifying the relevant radial constraints in the reconfiguration problem. Then, the 0-1 state variables in the constraint are used to simplify the network model and improve the computing efficiency. Finally, the original nonconvex nonlinear problem is optimized and relaxed to the standard mixed integer second-order cone programming (MISOCP) problem which can be easily solved via commercial solver. The example results prove the effectiveness of the strategy and the superiority and accuracy of the algorithm.
机译:在带有配电发电机(DG)的配电网的故障恢复问题中,总是采用孤岛划分的方法,而无需考虑网络重新配置和联系交换机。并且在传统的配电网络重新配置问题中,必须对网络进行径向约束,以确保为所有负载供电。本文提出了一种故障恢复策略,该策略可以合理地协调配电网重构与孤立岛划分。首先,通过修改重配置问题中的相关径向约束,可以进行负载削减和孤岛操作。然后,使用约束中的0-1状态变量简化网络模型并提高计算效率。最后,对原始的非凸非线性问题进行了优化,并将其放宽到标准混合整数二阶锥规划(MISOCP)问题,该问题可以通过商用求解器轻松解决。算例结果证明了该策略的有效性以及算法的优越性和准确性。

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