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A Binary Water Cycle Algorithm for Service Restoration Problem in Power Distribution Systems Considering Distributed Generation

机译:考虑分布式生成的配电系统中服务恢复问题的二元水循环算法

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摘要

The traditional service restoration methods are experiencing a significant challenge because the performance of such methods is often dominated by very large processing time. Therefore, it is important to develop a fast and an accurate method to solve a complex non-linear optimization problem representing the service restoration problem in a distribution system. In this paper, due to a binary nature of the service restoration problem, the Binary Water Cycle Algorithm (BWCA) is proposed to reduce out-of-service loads and system losses considering operational constraints, the radial topology of the distribution systems, and the influence of the presence of distributed generations (DGs) on the service restoration problem. The proposed method is a modified form of the Water Cycle Algorithm (WCA) that is mainly used for discrete and continuous optimization problems. The effectiveness of the proposed method is validated by comparing with other well-known meta-heuristic algorithms using a modified IEEE 33-node radial distribution system. The simulation results demonstrate the robustness of this method to provide a precise decision with short convergence time for solving service restoration problems.
机译:传统的服务恢复方法正在经历重大挑战,因为这些方法的性能通常由非常大的处理时间主导。因此,重要的是要开发一种快速和准确的方法来解决代表分发系统中的服务恢复问题的复杂非线性优化问题。在本文中,由于服务恢复问题的二进制性,提出了二进制水循环算法(BWCA),以减少考虑运行限制,分配系统的径向拓扑的运行负载和系统损耗,以及分布代(DGS)存在对服务恢复问题的影响。该方法是一种修改形式的水循环算法(WCA),其主要用于离散和连续优化问题。通过使用修改的IEEE 33节点径向分布系统比较了与其他众所周知的元启发式算法进行了验证了所提出的方法的有效性。仿真结果展示了该方法的稳健性,以便在求解服务恢复问题的短收敛时间内提供精确的决定。

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