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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Stability Analysis of Grid-Interfacing Inverter Control in Distribution Systems With Multiple Photovoltaic-Based Distributed Generators
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Stability Analysis of Grid-Interfacing Inverter Control in Distribution Systems With Multiple Photovoltaic-Based Distributed Generators

机译:具有多台光伏分布式发电机的配电系统中电网接口逆变器控制的稳定性分析

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摘要

A stability-enhancement inverter controller is proposed and its impact on the small-signal stability of distribution systems with multiple photovoltaic-based distributed generators (PV-DGs) is investigated. In specific, the random variation of the power output from multiple PV-DGs is considered. Being different from a single grid-connected PV system, the spatial correlation between PV-DGs and the system stability sensitivity with respect to different PV-DGs among the feeder are also taken into account. The small-signal stability analysis of the distribution system is performed using a probabilistic approach. As the PV-DG power output is randomly variable, the distribution system is not operating in a fixed mode. Consequently, the critical eigenvalues of the system move randomly. Through the Gram-Charlier expansion method, the probability density function of the critical eigenvalues of the distribution system is approximated and the probabilities of the system stability and instability are calculated. Taking the probability of the system instability as the performance metric, the effects of different system parameter settings of the grid-interfacing inverter controller on the distribution system are analyzed. The verification of the analytical results is carried out through Monte-Carlo time-domain simulations of the distribution system. The results suggest several methods to reduce the probability of system instability, including installation of the proposed inverter controller, choosing a large substation capacitor and/or choosing large capacity load and substation transformers.
机译:提出了一种提高稳定性的逆变器控制器,研究了其对具有多个基于光伏的分布式发电机(PV-DG)的配电系统的小信号稳定性的影响。具体而言,考虑了从多个PV-DG输出的功率的随机变化。与单个并网光伏系统不同,还考虑了馈线之间PV-DG之间的空间相关性以及系统对不同PV-DG的稳定性敏感性。配电系统的小信号稳定性分析是使用概率方法进行的。由于PV-DG的功率输出是随机可变的,因此配电系统未在固定模式下运行。因此,系统的关键特征值会随机移动。通过Gram-Charlier展开法,对配电系统关键特征值的概率密度函数进行了近似,并计算了系统稳定性和不稳定性的概率。以系统不稳定的概率为性能指标,分析了电网接口逆变器控制器不同系统参数设置对配电系统的影响。分析结果的验证是通过配电系统的蒙特卡洛时域仿真进行的。结果表明,有几种方法可以降低系统不稳定的可能性,包括安装建议的逆变器控制器,选择大的变电站电容器和/或选择大容量的负载和变电站变压器。

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