An AC/DC Dedicated Collection Network-Based Grid Integration Method of Autonomous PV Inverters to County Distribution Networks

Chunyan Ma, Qing Duan, W. Sheng, Jiangchao Qin, Guanglin Sha, Youhui Qiu
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Abstract

The construction of future power system with new energy as the mainstay is the core issue of the modernization of the national energy strategy of "carbon peaking and carbon neutral". The connection of high percentage of clean energy, represented by photovoltaic, to the county distribution network will bring disruptive changes to the traditional distribution network, and bring a series of serious challenges to the carrying capacity, grid-connected capacity and operation control capacity of the distribution network. In this paper, an AC/DC dedicated collection network-based grid integration method of autonomous PV inverters to county distribution networks is proposed for better grid adaptability. The proposed method is based on AC/DC collection technology and its performance is evaluated by a comparative study with the traditional PV grid-connected method. In the simulation experiments, under the same control conditions and topology, the THD of the proposed method is less than 2% which is greatly lower than the THD of the existing method, and the response speed and stability are faster. The study results show that the proposed method has better power quality, improved dynamic performance, and enhanced dc-bus voltage stability.
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基于交直流专用集电网络的自主光伏逆变器与县域配电网并网方法
构建以新能源为主体的未来电力系统,是“碳调峰、碳中和”国家能源现代化战略的核心问题。以光伏为代表的高比例清洁能源接入县域配电网,将给传统配电网带来颠覆性变革,对配电网的承载能力、并网能力和运行控制能力带来一系列严峻挑战。本文提出了一种基于交/直流专用采集网络的自主光伏逆变器与县域配电网的并网方法,以提高电网的适应性。该方法基于交/直流采集技术,并与传统的光伏并网方式进行了性能对比研究。在仿真实验中,在相同的控制条件和拓扑结构下,所提方法的THD小于2%,大大低于现有方法的THD,且响应速度和稳定性更快。研究结果表明,该方法具有更好的电能质量,改善了动态性能,增强了直流母线电压稳定性。
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