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Wide-Scale Adoption of Photovoltaic Energy:Grid Code Modifications Are Explored in the Distribution Grid

机译:大规模采用光伏能源:在配电网中探索电网规范修改

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摘要

Current grid standards largely require that low-power (e.g., several kilowatts) single-phase photovoltaic (PV) systems operate at unity power factor (PF) with maximum power point tracking (MPPT), and disconnect from the grid under grid faults by means of islanding detection. However, in the case of wide-scale penetration of single-phase PV systems in the distributed grid, disconnection under grid faults can contribute to 1) voltage flickers, 2) power outages, and 3) system instability. This article explores grid code modifications for a wide-scale adoption of PV systems in the distribution grid. In addition, based on the fact that Italy and Japan have recently undertaken a major review of standards for PV power conversion systems connected to low-voltage networks, the importance of low voltage ride-through (LVRT) for single-phase PV power systems under grid faults is considered, along with three reactive power injection strategies. Simulations are presented for a PV power system with a LVRT capability and ancillary services. An example of a full-bridge single-phase grid-connected system is tested experimentally to demonstrate the potential benefits. Additionally, grid codes for advanced PV systems with the discussed features are summarized.
机译:当前的电网标准主要要求低功率(例如几千瓦)的单相光伏(PV)系统以单位功率因数(PF)和最大功率点跟踪(MPPT)进行操作,并在发生电网故障时通过以下方式与电网断开连接:孤岛检测。但是,在分布式电网中单相光伏系统大规模渗透的情况下,电网故障下的断开会导致1)电压闪烁,2)断电和3)系统不稳定。本文探讨了网格代码修改,以在配电网格中大规模采用PV系统。此外,基于意大利和日本最近对连接至低压网络的光伏电源转换系统的标准进行了重大审查的事实,低压穿越(LVRT)对于单相光伏电源系统的重要性考虑电网故障以及三种无功注入策略。针对具有LVRT功能和辅助服务的光伏发电系统进行了仿真。对全桥单相并网系统的示例进行了实验测试,以证明其潜在的好处。此外,总结了具有所讨论功能的先进光伏系统的电网代码。

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