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Optimal location, size and type of DGs to reduce power losses and voltage deviation considering THD in radial unbalanced distribution systems

机译:DG的最佳位置,大小和类型,以降低径向不平衡分配系统中考虑THD的功率损耗和电压偏差

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DGs Technology has become the center of attention of the researchers and engineers because it is considered as an appropriate solution to overcome the shortage of electricity supply and power quality problems. DGs placement in appropriate locations with the right type and size is a challenging issue. This research discusses the simultaneous placement and sizing of multi-types of DGs in unbalanced radial distribution systems for power loss reduction and voltage deviation improvement while maintaining harmonics at the standard limit. The optimizations are performed simultaneously on three parameters; the locations, the types and the sizes of DGs. Genetic Algorithm (GA) is employed to ensure the optimal point is reached. The proposed method is applied on Kaliasin East Java radial distribution systems. The results show that the placement of four DGs type III are the most effective in reducing power loss and voltage deviation than the other scheme of optimization. The size of each DG is 175 kW+166.25 kVar. The active power loss reduction is 51.16%. All of individual harmonic (iHD) and total harmonic distortion (THD) are below the standard limit.
机译:分布式发电技术已成为研究人员和工程师关注的中心,因为它被认为是一个合适的解决方案,以克服电力供应和电力质量问题的不足。在用正确的类型和大小适当的位置放置分布式发电是一个具有挑战性的问题。本研究讨论了同时放置并在减少功率损耗和电压偏差改善不平衡径向分布系统中的多类型的分布式电源的上浆,同时保持谐波在标准的限制。该优化是三个参数同时进行;的位置,类型和分布式电源的大小。采用遗传算法(GA),以确保达到最佳点。该方法适用于Kaliasin东爪哇径向分布系统。结果表明,四个分布式发电的放置类型III是最有效减少功率损耗和电压偏差比优化的其他方案。每个DG的大小为175千瓦+ 166.25 KVAR。有源功率损耗降低是51.16%。的所有单个谐波(IHD)和总谐波失真(THD)的低于标准的限制。

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