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Adaptive Real Power Capping Method for Fair Overvoltage Regulation of Distribution Networks With High Penetration of PV Systems

机译:光伏系统高穿透率配电网过电压调节的自适应有功功率封顶方法

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摘要

For distribution networks with a high penetration of photovoltaic (PV) systems, overvoltage is a common and major issue that needs be addressed to not only assure reliable and secure system operation, but also to fully utilize PV generation capacity. A new real power capping method is proposed in this paper to prevent overvoltages by adaptively setting the power caps for PV inverters in real time. The proposed method can maintain voltage profiles below a preset upper limit while maximizing the PV generation and fairly distributing the real power curtailments among all the PV systems in the network. As a result, each of the PV systems in the network has equal opportunity to generate electricity and shares the responsibility of voltage regulation. The method does not require global information and can be implemented either under a centralized supervisory control scheme or in a distributed way via consensus control. Both steady state and dynamic simulation studies under various scenarios have been carried out on a 33-bus distribution system and the IEEE 13-bus test feeder to verify the effectiveness of the method.
机译:对于具有高渗透率的光伏(PV)系统的配电网络,过电压是一个普遍且主要的问题,不仅要确保可靠和安全的系统运行,还要充分利用PV的发电能力,这是需要解决的问题。提出了一种新的有功功率上限方法,通过实时自适应设置光伏逆变器的功率上限来防止过电压。所提出的方法可以将电压曲线保持在预设上限以下,同时使光伏发电最大化,并在网络中所有光伏系统之间合理分配实际功率削减量。结果,网络中的每个光伏系统都有平等的机会发电,并承担调压的责任。该方法不需要全局信息,并且可以在集中监督控制方案下或通过共识控制以分布式方式实现。已在33总线配电系统和IEEE 13总线测试馈线上进行了各种场景下的稳态和动态仿真研究,以验证该方法的有效性。

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