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Voltage regulation challenges with unbalanced PV integration in low voltage distribution systems and the corresponding solution

机译:低压配电系统中不平衡的光伏集成带来的电压调节挑战以及相应的解决方案

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摘要

Due to random connection of small-size single-phase rooftop photovoltaic (PV) generators in residential areas, low voltage distribution systems tend to have unbalanced PV integration across phases. In such situations, traditional reactive power compensation methods may cause unintended Voltage-Reactive Power responses across phases due to line coupling, which consequently affects their effectiveness on overvoltage mitigation. Such overvoltage problems significantly hinder the future integration of clean and renewable solar energy resources in power networks. In this paper, the limitations of traditional methods in PV imbalance scenarios are revealed and comprehensively analyzed by a voltage sensitivity method for the first time. On this basis, an innovative joint centralized-decentralized method is developed to overcome the PV imbalance-induced voltage regulation challenge. Specifically, the inverter's reactive power response to PV power variations in different phases is adaptively scheduled in order to avoid adverse effect of inter-phase Voltage-Reactive Power interaction on voltage regulation. The effectiveness of the proposed method is validated by time-series simulations with recorded data and a real-life low voltage distribution system in Australia. With the traditional method (i.e. power factor droop control strategy), 93 minutes' overvoltage can be observed in the case study, which will trigger overvoltage protection and disconnect PV inverters from the grid. While, the proposed method can always control the system voltage within the allowable range, and it consequently avoids PV disconnection. By solving this bottleneck issue, more PV systems can be integrated into distribution networks, which consequently contributes to CO2 emission reduction in future.
机译:由于居住区中小型单相屋顶光伏(PV)发电机的随机连接,低压配电系统往往会在各相之间具有不平衡的PV集成。在这种情况下,传统的无功功率补偿方法可能会由于线路耦合而在各相之间引起意想不到的电压-无功功率响应,从而影响其在缓解过电压方面的有效性。这种过电压问题严重阻碍了清洁和可再生太阳能资源在电力网络中的未来集成。本文首次揭示了传统方法在光伏不平衡情况下的局限性,并首次通过电压敏感度方法进行了综合分析。在此基础上,开发了一种创新的联合集中式分散方法,以克服PV不平衡引起的电压调节难题。具体而言,逆变器对不同相中PV功率变化的无功功率响应会进行自适应调度,以避免相间电压-无功功率相互作用对电压调节的不利影响。所提出的方法的有效性通过时间序列模拟,记录的数据和澳大利亚的实际低压配电系统得到了验证。使用传统方法(即功率因数下降控制策略),在案例研究中可以观察到93分钟的过电压,这将触发过电压保护并使PV逆变器与电网断开连接。同时,所提出的方法始终可以将系统电压控制在允许范围内,因此避免了PV断开。通过解决这一瓶颈问题,可以将更多的光伏系统集成到配电网络中,从而有助于将来减少二氧化碳排放。

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