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Local Adaptive Control of Solar Photovoltaics and Electric Water Heaters for Real-time Grid Support

机译:用于实时电网支持的局部自适应控制和电热水加热器

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Overvoltage (OV) in a low voltage distribution network is one of the foremost issues observed even under moderate penetration of rooftop solar photovoltaics (PVs). Similarly, grid under-voltage (UV) is foreseen as a potential issue resulting from increased integration of large flexible loads, such as electric vehicles, electric water heaters (EWHs) etc. An adaptive control using only local measurements for the EWHs and PVs is proposed in this study to alleviate OV as well as UV issues. The adaptive control is designed such that it monitors the voltage at the point of connection and adjusts active and reactive power injection/consumptions of the EWHs and PVs following the voltage violations. To effectively support the network in real-time, the controller allows EWHs to operate prior to PVs in OV and after the PVs in UV violations. The effectiveness of the proposed control strategy is demonstrated by time-sweep simulations performed in a typical 0.4 kV distribution network. The proposed method serves as a potential resource for real-time voltage support to distribution grids.
机译:低压配电网络中的过电压(OV)是即使在屋顶太阳能光伏(PVS)的中等渗透下也观察到的最重要问题之一。类似地,预计电压欠压(UV)是由于电动车辆,电动加热器(EWHS)等增加了大型柔性载荷的集成而导致的潜在问题。使用局部测量为EWHS和PVS的自适应控制在本研究中提出了缓解OV以及UV问题。自适应控制设计成使得它监控连接点处的电压,并在电压违规之后调整EWHS和PVS的主动和无功功率注入/消耗。为了实时有效地支持网络,控制器允许EWH在ov中的PVS和UV违规中的PV之后运行。通过在典型的0.4kV分配网络中执行的时间扫描模拟来证明所提出的控制策略的有效性。所提出的方法用作用于分配网格的实时电压支持的潜在资源。

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