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Analysis of the optimal reactive power of distributed generators for improving energy efficiency in distribution networks

机译:分析用于提高配电网能源效率的分布式发电机的最佳无功功率

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This paper presents an analysis of the optimal reactive power of distributed generators (DGs) in distribution networks for improving the energy efficiency. In recent years, the increasing awareness of the pollution problem, social issues, and economic factors have rapidly increased the penetration of DGs in the distribution networks. Because of the smart inverter technology, the reactive power of DGs is controllable and can be utilized to improve the energy efficiency of networks. For this purpose, three factors are considered: (1) line loss, (2) load reduction by conservative voltage reduction, and (3) inverter internal loss. These factors should be simultaneously minimized, while satisfying the security constraints, and the optimization problem can be solved based on quadratic programming. The IEEE 37 node test system is selected to show the results of optimal reactive power of DGs. Simulations indicate that the optimal reactive power significantly depends on the load model, the inverter loss model, and the line parameters.
机译:本文对配电网络中分布式发电机(DG)的最佳无功功率进行了分析,以提高能源效率。近年来,人们对污染问题,社会问题和经济因素的意识日益增强,迅速增加了危险品在配电网络中的渗透率。由于采用了智能逆变器技术,DG的无功功率是可控的,可以用来提高网络的能效。为此,考虑三个因素:(1)线路损耗,(2)通过保守的电压降低来降低负载以及(3)逆变器内部损耗。在满足安全性约束的同时,应同时将这些因素最小化,并且可以基于二次规划来解决优化问题。选择IEEE 37节点测试系统以显示DG的最佳无功功率的结果。仿真表明,最佳无功功率很大程度上取决于负载模型,逆变器损耗模型和线路参数。

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