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An artificial immune approach for service restoration in smart distribution systems

机译:用于智能配电系统中服务恢复的人工免疫方法

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The power system reconfiguration is a challenging task. As smart grids concepts develop, different approaches try to take advantage of the grid intelligent features and infrastructure to evolve a fast and robust self-healing scheme. At the distribution level, the self-healing schemes are responsible for performing automatic corrective and self-restorative actions. This task includes managing the service restoration by locating and isolating the fault, and reconfiguring the network topology to decrease the harm. This paper presents a self-healing scheme using Artificial Immune System as an optimization tool to solve the service restoration problem in power systems considering faults within the internal switch breakers. To make this approach suitable for bigger systems, the Prim Algorithm is used due to its capacity to generate minimum spanning trees from a graph. The proposed scheme is tested on benchmark systems to investigate the capacity of proposing feasible solutions for faulted systems.
机译:电力系统的重新配置是一项艰巨的任务。随着智能电网概念的发展,不同的方法试图利用电网的智能功能和基础架构来发展快速而强大的自我修复方案。在分发级别,自我修复方案负责执行自动纠正和自我修复操作。该任务包括通过定位和隔离故障来管理服务恢复,以及重新配置网络拓扑以减少危害。本文提出了一种以人工免疫系统为优化工具的自修复方案,以解决考虑内部开关断路器内部故障的电力系统服务恢复问题。为了使该方法适用于较大的系统,使用了Prim算法,因为它具有从图形生成最小生成树的能力。该方案在基准系统上进行了测试,以调查为故障系统提出可行解决方案的能力。

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