并网逆变器的非线性稳定性分析方法

Yanbo Wang, Dong Liu, Zhan Shen, Qi Zhang, F. Deng, Zhe Chen
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摘要

为了识别并网逆变器的稳定性问题,经常提出频域和时域小信号分析方法。但无法处理不同工作点变化所带来的非线性特性。本文提出了一种非线性稳定性分析方法,研究了非线性元件对并网逆变器稳定性的影响,并以电感的非线性为例研究了其非线性稳定机理。首先用描述函数法建立了非线性电感器的模型。然后,采用环变换法建立了非线性对象和线性对象的传递函数。通过辨识非线性对象的描述函数与线性对象的Nyquist图之间的关系,建立了非线性稳定性判据。仿真和实验结果验证了所提出的非线性稳定性分析方法的有效性,可以为在设计阶段优化逆变器参数提供指导,从而避免非线性元件带来的潜在不稳定性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Nonlinear Stability Analysis Method of Grid-Connected Inverter
Small signal analysis methods in frequency domain and time domain have been frequently proposed to identify stability issue of grid-connected inverter. However, it fails to deal with nonlinear characteristics caused by variation of different operating points. This paper presents a nonlinear stability analysis method to investigate the effects of nonlinear components on stability of grid-connected inverter, where the nonlinearity of inductor is addressed as an example to investigate the nonlinear stability mechanism. The model of nonlinear inductor is first established by describing function method. Then, the transfer function with nonlinear plant and linear plant is established by loop transformation method. Moreover, the nonlinear stability criterion is developed by identifying the relationship of describing function of nonlinear plant and Nyquist diagram of linear plant. Simulation and experimental results validate the effectiveness of the proposed nonlinear stability analysis method, which can provide the guideline to optimize inverter parameters at design stage so as to avoid the potential instability issues caused by nonlinear components.
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