多逆变器分布式发电驻地桑迪亚移频防孤岛方法研究

Wen-bin Han, T. Zheng, Xiaoyu Wang
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引用次数: 8

摘要

随着分布式发电的普及,并网逆变器越来越多地用于可再生能源的利用。逆变器是电力系统与微网之间的接口,配备多种逆变器控制策略和孤岛检测方案。孤岛检测函数是并网逆变器的一个积分函数。目前的研究主要集中在单逆变器系统,而本文主要研究多逆变器运行时的孤岛检测策略。本文从多逆变器系统的角度出发,研究了正反馈抗孤岛对系统稳定性的影响。首先,在Matlab/Simulink仿真环境下,建立了采用正反馈防孤岛方案的多逆变器系统的解析模型。其次,分析了该方案对多逆变器系统的影响,得到了其性质和特点,并分析了该方案引起的多变频器之间的相互作用。第三,基于电磁瞬变仿真,进一步验证了上述影响和相互作用。最后,根据分析结果给出了结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of multi-inverter distributed generation resident Sandia frequency shift anti-islanding method
With the popularity of the distributed generation (DG), grid-connected inverters are increasingly employed for the renewable energy sources utilization. The inverter is an interface between the power system and the micro-grid, and it is equipped with a variety of inverter control strategies and islanding detection scheme. Islanding detection function is an integrant function for grid-connected inverters. The current studies focus on single-inverter system, while the islanding detection strategies in multi-inverters operation are investigated in this paper. From the perspective of multi-inverter systems, this paper investigates the influence of the positive feedback anti-islanding on the stability. First, the analytical model of multi-inverter systems equipped with the positive feedback anti-islanding scheme is set up in the simulation environment of Matlab/Simulink. Second, the scheme's impact on the multi-inverter systems is conducted to obtain the nature and characteristics, and the interactions among multi DGs caused by the scheme are presented in the paper. Third, based on the electromagnetic transient simulations, the above impacts and interactions are verified further. Finally, the conclusions are given out based on the analysis results.
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