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Optimal Allocation of Reactive Power Compensation in a Distribution Network with Photovoltaic System Integration

机译:具有光伏系统集成的配电网无功补偿优化分配

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This article aims to introduce a complete design for a solar photovoltaic (PV) system integrated with a distribution network. According to the nature of solar power generation, the designed PV system would be able to supply the load only through day hours and the additional power needed for the rest of the day can be obtained from the grid. The growing level of penetration of solar power generation requires reactive power compensation to ensure the security and reliability, voltage profile and high efficiency of the system. This can be achieved through two stages. At first, backward forward sweep method (BFS) is used to calculate active and reactive power losses and the voltage profile. Secondly, particle swarm optimization technique (PSO) is applied to find the optimal ratings and locations of reactive capacitors by considering single and multi-objective functions. The proposed algorithm is applied on the 33-bus IEEE test system. The results show the capability and efficiency of this algorithm.
机译:本文旨在为集成与配送网络集成的太阳能光伏(PV)系统引进完整的设计。根据太阳能发电的性质,所设计的PV系统将能够通过仅一天小时,需要一天的其他部分可以从电网中获得额外的功率提供给负载。太阳能发电的普遍普及水平需要无功补偿,以确保系统的安全性和可靠性,电压曲线和高效率。这可以通过两个阶段实现。首先,向后前进扫描方法(BFS)用于计算主动和无功功率损耗和电压分布。其次,应用粒子群优化技术(PSO)通过考虑单个和多目标函数来找到反应电容器的最佳额定值和位置。所提出的算法应用于33总线IEEE测试系统。结果显示了该算法的能力和效率。

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