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Optimal Placement of DG for Power Losses Minimization in Radial Distribution System using Backward Forward Sweep Algorithm

机译:DG的最佳位置使用向后扫描算法在径向分布系统中最小化

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The problem of voltage collapse, stability issues & real power losses in distribution system is increasing day by day. The performance of power system can be improved by employing distributed generation (DG) in the power system. This paper mainly focussed on DG Placement in Radial Distribution System (RDS). Optimal placements of DG are obtained with respect to real power losses, voltage profile and voltage stability index at every bus. Optimal location of DG placement is found by placing the distributed generation at different location to estimate real power losses and stability index at each location. The location which has minimum power losses and voltage stability index is more suitable DG placement. The load flow analysis algorithm used is Backward Forward Sweep (BFS). Voltage at each bus and real Power Losses are calculated using Load flow analysis. The proposed methodology of BFS is tested on a standard IEEE 33 Bus system. Different parameters such as voltage profile, power losses and stability index at each bus has been calculated with and without DG placement. After comparing the results, it has been found that optimal allocation of DG improves the system efficiency and economy. Significant reduction in power losses has been achieved by using the proposed BFS algorithm.
机译:分配系统中的电压崩溃,稳定性问题和实际功率损耗的问题在日复一日的日趋增加。通过在电力系统中采用分布式发电(DG),可以提高电力系统的性能。本文主要集中在径向分布系统(RDS)中的DG放置。在每个总线上的实际功率损耗,电压曲线和电压稳定性指标获得DG的最佳放置。通过将分布的发电放置在不同位置的分布式来估计每个位置的实际功率损耗和稳定性指标来找到DG放置的最佳位置。具有最小功率损耗和电压稳定性指标的位置更适合于DG放置。使用的负载流分析算法是向后扫描(BFS)。使用负载流分析计算每个总线和实际功率损耗的电压。在标准IEEE 33总线系统上测试了BFS的提出方法。在每个总线处的电压曲线,功率损耗和稳定性索引等不同的参数已经用且没有DG放置来计算。比较结果后,已经发现DG的最佳分配提高了系统效率和经济性。通过使用所提出的BFS算法实现了功率损耗的显着降低。

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