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Optimal size of Distributed Generation to minimize distribution loss using Dynamic Programming

机译:分布式发电的最佳大小,以最大限度地使用动态编程最小化分配损耗

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This paper first analyses the impact of Distributed Generations (DG) on distribution system loss and voltage profile. Distribution loss depends on various factors such as: the number and locations of DG connections, injected DG powers, distribution system configuration etc. To study the impact of injected DG powers and locations on the distribution loss, a 15-bus radial distribution system is modeled using PSCAD and simulations are carried with varying DG power injections and locations. Next, the optimum sizes of DG are evaluated which gives the minimum loss satisfying various other system constraints. Dynamic Programming approach is used to solve this optimization problem and the subroutine is developed in MATLAB.
机译:本文首先分析了分布式代代(DG)对分布系统损耗和电压型材的影响。分配损失取决于各种因素,如:DG连接的数量和位置,注入的DG功率,分配系统配置等。为了研究注入的DG功率和位置对分布损耗的影响,建模了15柱径向分布系统使用PSCAD和模拟,具有不同的DG电源喷射和位置。接下来,评估DG的最佳尺寸,其给出了满足各种其他系统约束的最小损耗。动态编程方法用于解决此优化问题,并在MATLAB中开发子程序。

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