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首页> 外文期刊>IEEE Transactions on Power Systems >Distributed Self-Healing Scheme for Unbalanced Electrical Distribution Systems Based on Alternating Direction Method of Multipliers
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Distributed Self-Healing Scheme for Unbalanced Electrical Distribution Systems Based on Alternating Direction Method of Multipliers

机译:基于交替方向法的乘法器交替方向方法的分布式自愈方案

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With the advent of Smart Grids and advanced communication technologies, the self-healing scheme has become a desirable function of the operation and planning of electrical distribution systems (EDSs). In the presence of a permanent fault, an optimized self-healing scheme minimizes the unsupplied demand while maintaining the faulted section of the network isolated. The service restoration of the self-healing scheme is a combinatorial optimization problem whose computational complexity grows exponentially with the number of binary variables. To resolve this issue, a distributed optimal service restoration strategy is developed based on the alternating direction method of multipliers (ADMM). The service restoration problem is formulated as a mixed-integer second-order cone programming (MISOCP) problem. The decision variables of the problem are the status of the remote-controlled switches, load zones and load shedding at each controllable demand. Operational constraints, such as current and voltage magnitude constraints, distributed generation (DG) capacity constraints and radial topology constraints, are respected in the optimization problem. Through the ADMM, the optimization problem is distributed among the zones of the EDS, without requiring a central controller. Two test systems, an unbalanced 44-node system and the IEEE 123-node system, were used to conduct case studies. Results show that the proposed method can provide optimal service restoration solutions in reasonable time without a central controller.
机译:随着智能电网和先进通信技术的出现,自我修复方案已成为电气分配系统(EDSS)的操作和规划的理想功能。在永久性故障的情况下,优化的自我修复方案在维护隔离的网络的断层部分时最小化不浮平的需求。自我修复方案的服务恢复是组合优化问题,其计算复杂性与二进制变量的数量指数呈指数增长。要解决此问题,基于乘法器(ADMM)的交替方向方法开发了分布式最佳服务恢复策略。服务恢复问题被制定为混合整数二阶锥编程(MISOCP)问题。问题的决策变量是遥控开关,加载区域和每个可控需求的负载脱落的状态。在优化问题中,在优化问题中尊重操作约束,例如电流和电压幅度约束,分布式生成(DG)容量约束和径向拓扑约束。通过ADMM,优化问题在EDS的区域中分布,而无需中央控制器。两个测试系统,不平衡44节点系统和IEEE 123节点系统用于进行案例研究。结果表明,该方法可以在没有中央控制器的合理时间内提供最佳的服务恢复解决方案。

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