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Investigations on Operational Characteristics of A PV Integrated Unbalance Distribution System for Energy Management Studies

机译:用于能源管理研究的光伏集成式不平衡配电系统的运行特性研究

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Background: Integration of solar PV presents various challenges in the power system, one such challenge is the variation in operational characteristics of the distribution system. Method: Solar PVs are installed at the distribution networks which are unbalanced in nature due to unequal distribution of load in each phase. The operational characteristics of distribution feeder alter with the increasing level of PV penetration, which includes variation in voltage level, power flow direction, change in reactive power and power factor. Such situation causes the distribution network operators (DNO) to face unprecedented challenge to maintain the quality of power. Therefore, there is a crucial need to recognize and quantify the technical impact that solar PV may have on the operation of unbalance distribution system to ensure the good quality and reliability of supply. In this paper, an 11/0.433 kV realistic rural distribution feeder of Indian utility is modeled to investigate the impacts of PV integration on the operational characteristics. A reformulated 3-phase Newton-Raphson (N-R) power flow algorithm is used for the solar PV integrated unbalance distribution system. Results: The results show that there are drastic changes in branch current loading, neutral current, power losses and power flow direction after solar PV integration. It is also observed that there is huge variation in bus voltage level, which is controlled by line voltage regulators. Conclusion: Such investigations are necessary before PV integration to the distribution network, which would help the utility engineers for monitoring, energy management, and planning studies.
机译:背景:太阳能光伏发电的集成给电力系统带来了各种挑战,其中之一就是配电系统运行特性的变化。方法:太阳能光伏组件安装在配电网中,由于每个阶段的负载分配不均,因此配电网本质上是不平衡的。配电馈线的运行特性随PV穿透水平的提高而变化,包括电压水平,功率流向,无功功率和功率因数的变化。这种情况使配电网络运营商(DNO)面临前所未有的挑战,以保持电力质量。因此,迫切需要认识并量化太阳能光伏发电对不平衡配电系统运行的技术影响,以确保良好的质量和供电可靠性。在本文中,对印度公用事业公司的11 / 0.433 kV现实农村配电馈线进行了建模,以研究光伏集成对运行特性的影响。重新设计的三相牛顿-拉夫逊(N-R)潮流算法用于太阳能光伏集成不平衡配电系统。结果:结果表明,太阳能光伏发电整合后,支路电流负载,中性电流,功率损耗和功率流向发生了巨大变化。还可以观察到,总线电压水平存在很大的变化,这由线路电压调节器控制。结论:在将光伏组件集成到配电网络之前,必须进行此类调查,这将有助于公用事业工程师进行监控,能源管理和规划研究。

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