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Grid Impacts and Mitigation Measures for Increased PV Penetration Levels using Advanced PV Inverter Regulation

机译:采用先进的PV逆变器调节,电网影响和缓解措施增加了PV渗透水平

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As part of the Renewable Systems Interconnection (RSI), exploring the impact of high levels of PV penetration on standard utility system planning methodologies is critical. In this paper, in order to evaluate the potential impacts on representative distribution feeders for a south-eastern utility that is facing the interconnection of increasing levels of Photovoltaic (PV) generation; detailed steady-state and dynamic modeling and simulation of the integrated systems are performed. The study was conducted on two representative feeders: an almost exclusively residential feeder, and a predominantly rural feeder. Multiple PV penetration levels based on Spring loading were considered: 33.3% and 75% of total feeder loading, and 75% of total connected capacity as extreme case. Steady-state and dynamic analyses were performed. Procedures used to evaluate these impacts and results and observations are discussed. Moreover, possible impact mitigation strategies and evaluation of PV inverter controllers for mitigating the negative impacts are assessed.
机译:作为可再生系统互连(RSI)的一部分,探索高水平PV渗透对标准公用事业系统规划方法的影响至关重要。在本文中,为了评估对互联器的互连级别的光伏(PV)产生的互连的潜在影响;执行详细的稳态和集成系统的动态建模和模拟。该研究是在两个代表饲养者的情况下进行:几乎专门的住宅饲养者,以及主要的农村饲养者。考虑了基于弹簧载荷的多个PV渗透水平:总供料器负荷的33.3%和75%,总连接能力的75%是极端情况。进行稳态和动态分析。讨论了用于评估这些影响和结果和观察的程序。此外,评估了用于减轻负面影响的PV逆变器控制器的可能影响策略和评估。

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