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Investigation of the interaction between step voltage regulators and large-scale photovoltaic systems regarding voltage regulation and unbalance

机译:研究步进电压调节器和大型光伏系统之间关于电压调节和不平衡的相互作用

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摘要

The number of installed photovoltaic (PV) systems has been increasing in an unprecedented rate every year throughout the world. In some situations, the PV systems can provide more power than the demand in certain parts of a network and cause reverse power flow, which the traditional distribution networks are not designed for. Consequently, these instances may result in adverse interactions between PV systems and voltage regulation devices such as step voltage regulators (SVRs). This can potentially drive voltage magnitudes beyond acceptable limits and possibly damage consumers’ appliances. In the literature, such interaction cases with consideration of realistic three-phase four-wire unbalanced networks have not yet been reported. Therefore, this study analyses the interaction between SVR and PV systems in a real-world network by utilising the quasi-static time-series technique for a long-term statistical assessment. This evaluation focuses on examining voltage regulation issues in an unbalanced three-phase four-wire network along with an open-delta SVR configuration, and the corresponding solution is proposed to resolve the concerning issues. The results of this study will provide valuable information on interaction characteristics to academia and utilities for assessing large-scale PV system integration.
机译:全世界每年安装的光伏(PV)系统的数量都以前所未有的速度增长。在某些情况下,光伏系统可提供的功率超过网络某些部分的需求,并导致反向潮流,而传统配电网并非为之设计的。因此,这些情况可能导致PV系统与电压调节设备(例如步进电压调节器(SVR))之间发生不利的相互作用。这有可能使电压幅度超过可接受的极限,并可能损坏消费者的电器。在文献中,尚未报道考虑现实的三相四线不平衡网络的这种相互作用情况。因此,本研究通过利用准静态时间序列技术进行长期统计评估,分析了现实网络中SVR和PV系统之间的相互作用。该评估集中于检查不平衡三相四线网络中的电压调节问题以及开放式SVR配置,并提出了相应的解决方案来解决相关问题。这项研究的结果将为学术界和公共事业机构提供有关交互特性的有价值的信息,以评估大规模的光伏系统集成。

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