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A connection-mode based optimal united planning for the branch and switch in distributed network

机译:基于连接模式的分布式网络中分支机构和交换机的最佳联合规划

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The network-planning of a middle-voltage distributed system includes branch planning and switch allocation. This two main aspects determinate the economy and reliability of a planning scheme. Therefore, taking the economy and reliability optimization as the two objectives, a multi-objective optimal model for branches and switches united planning of a distributed system is established in this paper. Based on the Pareto optimum theory, and by the specific genetic operators of Partheno-genetic algorithm (PGA), the proposed model is solved efficiently in specified connection mode. By constructing a rational fitness function and performing elitist preservation strategy, a well-proportioned Pareto solution set is obtained. From which the final network planning scheme can be found according to different actual engineering conditions. A typical example is used to verify the proposed model and algorithm to be effective. The results indicated that the proposed method can satisfied the different demands in engineering, and provides theory basis to flexible network planning of the distributed system.
机译:中压分布式系统的网络规划包括分支规划和开关分配。这两个主要方面决定了计划方案的经济性和可靠性。因此,本文以经济性和可靠性优化为两个目标,建立了分布式系统分支机构与交换机联合规划的多目标最优模型。基于帕累托最优理论,通过单性遗传算法(PGA)的特定遗传算子,在指定的连接模式下有效地求解了该模型。通过构造一个合理的适应度函数并执行精英保留策略,可以获得比例均衡的Pareto解集。从中可以根据不同的实际工程条件找到最终的网络规划方案。一个典型的例子被用来验证所提出的模型和算法是有效的。结果表明,该方法可以满足工程中的不同需求,为分布式系统的灵活网络规划提供理论依据。

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