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Selecting and applying distribution optimization methods

机译:选择和应用分配优化方法

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In order to determine the design of a distribution system a planner must determine three aspects of design simultaneously: layout (the manner in which the distribution pathways are split and resplit on their way from a few sources, or substation buses, to many customers), line size (the selection of conductor size, number of phases, and line type for each segment), and radial switching pattern (determining the normally open points within the network that force an electrical flow into a radial pattern). These three aspects of design interact heavily with one another, and generally the true least-cost plan can be found only by considering all three simultaneously. In most real-world situations, the number of possible combinations of layout, line sizing, and switching is so large that the probability of a smart, experienced engineer finding the very best configuration unaided is rather remote. Optimization methods that analyze all three aspects simultaneously to minimize cost can provide a real benefit. But no optimization method encompasses all aspects of distribution design, and no method is completely free of approximations and limitations. They are merely tools that can provide great help in distribution design if properly applied. Their good performance depends on proper selection and fitting to the problem and engineering CAD environment. This article focuses on selection and application of optimization methods for distribution design. The methods are numerical optimisation (both nontransshipment and transshipment), genetic algorithms, and null point load flow.
机译:为了确定配电系统的设计,计划人员必须同时确定设计的三个方面:布局(将分配路径从几个来源或变电站总线传递到许多客户的方式进行分配和拆分的方式);线路尺寸(每个段的导体尺寸,相数和线路类型的选择)和径向开关模式(确定网络中迫使电流变成径向模式的常开点)。设计的这三个方面相互影响很大,通常只有同时考虑这三个方面,才能找到真正的最低成本计划。在大多数实际情况下,布局,线路尺寸和切换的可能组合数量如此之多,以至于一个聪明,有经验的工程师在没有任何帮助的情况下找到最佳配置的可能性就很小。同时分析所有三个方面以最小化成本的优化方法可以带来真正的好处。但是,没有任何一种优化方法可以涵盖配电设计的所有方面,并且没有一种方法完全没有近似和局限性。如果适当地使用它们,它们只是可以在配电设计中提供巨大帮助的工具。它们的良好性能取决于对问题和工程CAD环境的正确选择和配合。本文重点介绍配电设计优化方法的选择和应用。这些方法是数值优化(非转运和转运),遗传算法和零点潮流。

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