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Aggregate Modeling of Distribution System with Multiple Smart Inverters

机译:多个智能逆变器分配系统的聚合建模

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High penetration of renewable energy based distributed generators is a common goal for many electricity companies. While providing clean and cheap energy on the one hand, these active components create unprecedented problems in the grid. Arguably the most prominent one is causing unacceptable voltage rises due to power injection. Traditional solution is to cap the renewable energy generation. This turns into a double loss as the available energy is not captured and the installed equipment is not fully utilized. Introduction of smart inverters is aimed at solving these intertwined concepts. Impact of smart inverters on the distribution network operation has been recently reported in the literature. However, multiple smart inverter operation where several devices try to influence the power flow has not been thoroughly investigated. This paper focuses on analyzing the operation of several smart inverters that are running in Volt-Var mode and are connected to the same distribution feeder. Furthermore, considering the number of roof-top PVs in neighborhoods and the difficulty in simulating the individually, a simplification method is developed. In this fashion, multiple smart inverters operating in the same feeder are modeled in an aggregated way for easier calculation. Finally, simulation results are presented for analysis and validation.
机译:可再生能源的分布式发电机的高渗透是许多电力公司的共同目标。在一方面提供干净和廉价的能量,这些活动组件在网格中创造了前所未有的问题。可以说是最突出的一个导致由于功率注射而导致不可接受的电压上升。传统的解决方案是将可再生能源发电。由于未捕获可用的能量,并且未充分利用,这变为双重损耗。智能逆变器的介绍旨在解决这些交织的概念。最近在文献中报道了智能逆变器对分布网络运作的影响。但是,多个设备尝试影响电力流的多个智能逆变器操作尚未彻底研究。本文侧重于分析在Vol-VAR模式下运行的几个智能逆变器的操作,并连接到相同的分配馈线。此外,考虑到邻域中的屋顶PVS的数量和难以单独模拟,简化方法是开发的。以这种方式,在同一进纸器中操作的多个智能逆变器以聚合方式建模,以便于计算。最后,提出了仿真结果进行了分析和验证。

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