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Optimal PV Inverter Reactive Power Control and Real Power Curtailment to Improve Performance of Unbalanced Four-Wire LV Distribution Networks

机译:最佳的光伏逆变器无功功率控制和有功功率削减,以提高不平衡四线低压配电网的性能

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摘要

The rapid uptake of residential photovoltaic (PV) systems is causing serious power quality issues such as significant voltage fluctuation and unbalance that are restricting the ability of networks to accommodate further connections. Based on the latent reactive power capability and real power curtailment of single-phase inverters, this paper proposes a new comprehensive PV operational optimization strategy to improve the performance of significantly unbalanced three-phase four-wire low voltage (LV) distribution networks with high residential PV penetrations. A multiobjective optimal power flow (OPF) problem that can simultaneously improve voltage magnitude and balance profiles, while minimizing network losses and generation costs, is defined and then converted into an aggregated single-objective OPF problem using the weighted-sum method, which can be effectively solved by the global Sequential Quadratic Programming (SQP) approach with multiple starting points in MATLAB. Detailed simulations are performed and analyzed for various operating scenarios over 24 h on a real unbalanced four-wire LV distribution network in Perth Solar City trial, Australia. Finally, smart meter readings are used to justify the validity and accuracy of the proposed optimization model and considerations on the application of the proposed PV control strategy are also presented.
机译:住宅光伏(PV)系统的迅速普及正在引起严重的电能质量问题,例如严重的电压波动和不平衡,这些问题限制了网络适应其他连接的能力。基于单相逆变器的潜在无功功率能力和有功功率削减,本文提出了一种新的综合光伏运行优化策略,以改善居住在高住宅区的严重不平衡三相四线低压(LV)配电网络的性能。光伏渗透。定义了一个多目标最优潮流(OPF)问题,该问题可以同时改善电压幅值和平衡曲线,同时最大程度地减少网络损耗和发电成本,然后使用加权和方法将其转换为聚合的单目标OPF问题,该问题可以是在MATLAB中具有多个起点的全局顺序二次编程(SQP)方法有效地解决了问题。在澳大利亚珀斯太阳能城试验中,在真实的不平衡四线低压配电网络上,在24小时内针对各种操作场景进行了详细的仿真和分析。最后,使用智能电表读数来证明所提出的优化模型的有效性和准确性,并提出了对所提出的PV控制策略应用的考虑。

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