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A novel method of distribution power system reconfiguration using parallel cooperative meta-heuristics

机译:基于并行协同元启发式的配电网重构新方法

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This paper presents a new robust methodology for solving radial distribution system reconfiguration (DSR) problem based on the concept of cooperative multi-thread strategy and hybrid meta-heuristics. The parallel cooperative meta-heuristics (PCMH) method deploys multiple concurrent explorations of the solution space using genetic algorithm (GA), particle swarm optimization (PSO) and ant colony system (ACS) running in parallel on independent processors. The meta-heuristics are subjected to communicate and cooperate with each other synchronously at a specified interval in the course of iteration. Dynamically at each interval, the best solution so far found is exchanged among all the three processors. In addition, the worst individuals of GA are replaced by the best particles of PSO if the current optimum is delivered by PSO; otherwise the best ants from ACS replace these individuals. The proposed method is applied to the standard IEEE 33-bus distribution network with the objective of minimizing the overall power loss while at the same time accounting for the operational constraints within allowable limits. The results demonstrate the validity and the effectiveness of the proposed approach in terms of accuracy and robustness.
机译:本文基于协作多线程策略和混合元启发式算法的概念,提出了一种解决径向分配系统重构(DSR)问题的鲁棒方法。并行协同元启发法(PCMH)方法使用在独立处理器上并行运行的遗传算法(GA),粒子群优化(PSO)和蚁群系统(ACS)部署对解决方案空间的多个并行探索。元启发式算法在迭代过程中以指定的间隔进行同步通信和彼此协作。动态地在每个时间间隔内,在所有三个处理器之间交换迄今为止找到的最佳解决方案。此外,如果PSO提供了当前的最优值,则GA的最差个体将被PSO的最佳粒子所替代;否则,ACS最好的蚂蚁会取代这些个体。所提出的方法被应用到标准的IEEE 33总线配电网络,目的是使总的功率损耗最小,同时在允许的范围内考虑操作约束。结果证明了该方法在准确性和鲁棒性方面的有效性和有效性。

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