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The simulation of self-healing restoration control for smart distribution network

机译:智能配电网自愈恢复控制的仿真

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In this paper, a novel self-healing restoration control method after distribution network faulting is applied to minimize the active power loss. Back-Forward sweep method based on layered node is selected to calculate power flow according to the radial distribution network model. Moreover, in order to avoid closed-loop structure scheme, a new solution which can reduce the dimension of mathematical optimization calculation is offered during network reconstruction process. If the total number of open switches in the system is equal to the number of tie-switches, and at the same time the system has no island, then the network must be the structure without closed-loop. Furthermore, the island judgement is made conveniently by flow calculation program with no need for a special program. The design is implemented to an IEEE16 nodes system by matlab. Simulation result shows that the solutions of reconstruction decrease from 65536 groups to 13 groups. Accordingly, the correctness and validity of the proposed method can be verified, which is simple and easy to be programmed. It is suited to the real-time control for smart distribution network.
机译:本文提出了一种新的配电网故障后自愈恢复控制方法,以减小有功功率损耗。根据径向分布网络模型,选择了基于分层节点的前向扫频方法来计算潮流。此外,为了避免闭环结构方案,在网络重构过程中提供了一种可以减小数学优化计算量的新解决方案。如果系统中开放交换机的总数等于联络交换机的数量,并且系统同时没有孤岛,则网络必须是没有闭环的结构。此外,通过流量计算程序可以方便地进行孤岛判断,而无需特殊程序。该设计由matlab实现到IEEE16节点系统。仿真结果表明,重构的解由65536组减少到13组。因此,可以验证所提出方法的正确性和有效性,这是简单且易于编程的。适用于智能配电网的实时控制。

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