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Multi-objective reconfiguration of radial distribution systems using reliability indices

机译:使用可靠性指标的径向配电系统多目标重构

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This paper deals with the distribution network reconfiguration problem in a multi-objective scope, aiming to determine the optimal radial configuration by means of minimizing the active power losses and a set of commonly used reliability indices formulated with reference to the number of customers. The indices are developed in a way consistent with a mixed-integer linear programming (MILP) approach. A key contribution of the paper is the efficient implementation of the å-constraint method using lexicographic optimization in order to solve the multi-objective optimization problem. After the Pareto efficient solution set is generated, the resulting configurations are evaluated using a backward/forward sweep load-flow algorithm to verify that the solutions obtained are both non-dominated and feasible. Since the å-constraint method generates the Pareto front but does not incorporate decision maker (DM) preferences, a multi-attribute decision making procedure, namely, the technique for order preference by similarity to ideal solution (TOPSIS) method is used in order to rank the obtained solutions according to the DM preferences, facilitating the final selection. The applicability of the proposed method is assessed on a classical test system and on a practical distribution system.
机译:本文在多目标范围内解决配电网络重构问题,旨在通过最小化有功功率损耗和一组参考客户数量制定的常用可靠性指标来确定最佳的径向配置。索引以与混合整数线性规划(MILP)方法一致的方式开发。本文的一个关键贡献是使用词典编纂优化有效地实现了å约束方法,从而解决了多目标优化问题。生成帕累托高效解集后,使用后向/正向扫描潮流算法评估所得的配置,以验证所获得的解既非主导性又可行。由于å约束方法生成Pareto前沿,但不包含决策者(DM)偏好,因此使用了多属性决策过程,即通过类似于理想解决方案(TOPSIS)方法进行订单偏好的技术,以便根据DM偏好对获得的解决方案进行排名,以方便最终选择。在经典的测试系统和实际的分发系统上评估了所提出方法的适用性。

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