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Planning Algorithm for Single Wire Earth Return Distribution Networks

机译:单线接地返回分配网络规划算法

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Power flow in earth return distribution systems typically depends on geographical location and specific earth properties. The planning of such systems has to take into account different operational and safety constraints from conventional distribution systems. This work presents the mathematical modeling and planning of Single Wire Earth Return (SWER) power distribution networks. The SWER load flow is modeled and formulated as an optimization problem. Then by using a heuristic iterative procedure, a planning algorithm is developed for the SWER system. The developed procedure includes optimal feeder routing and overhead conductor selection for both primary and lateral feeders with load growth over several time periods. A 30 node test network extracted from a rural area in Uganda is used to test the algorithm’s practical application to give reasonable and consistent results. The model presented can be used in planning SWER networks for areas which have previously not been electrified as well as determining suitable upgrades for existing SWER distribution feeders. The algorithm’s mathematical modeling and simulations were done using the General Algebraic Modeling System (GAMS).
机译:地球返回分配系统中的功率流通常取决于地理位置和特定地球性质。这些系统的规划必须考虑来自传统分配系统的不同操作和安全限制。这项工作介绍了单线接地返回(SWER)配电网络的数学建模和规划。 SWER负载流是为优化问题的建模和制定。然后通过使用启发式迭代过程,为摇摆系统开发了规划算法。开发的程序包括最佳进料器路由和初级和横向馈线的架空导体选择,在几个时间段内具有负载增长。从乌干达的农村地区提取了30个节点测试网络,用于测试算法的实际应用,以提供合理和一致的结果。提供的模型可用于规划用于以前没有通电的区域的摇摆网络,也可以用于确定现有的旋转式驱动器分配馈线的合适升级。使用一般代数建模系统(Gam)完成算法的数学建模和仿真。

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