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Small Signal Modeling and Discontinuous Stable Regions of Grid-connected Inverter Based on Pade Approximation

机译:基于PADE逼近的基于网格连接逆变器的小信号建模和不连续稳定区域

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The small signal stability of grid-connected inverter is of great importance, and the state space model is one of the most efficient modeling methods to analyze the small disturbance stability of grid-connected inverters. The proposed small signal modeling of the grid-connected inverter system takes the time delays caused by digital control into consideration, and converts the time delay factor into a rational polynomial with the pade approximation method, so as to establish the state space model of the entire system. Eigenvalue analysis method is used to compare the small disturbance stability of the grid-connected inverter system with or without considering time delays under different environments. Numerical simulation results show that in the grid-connected inverter system with time delays considered, when the strength of the power grid changes, the system has discontinuous stable regions and the small signal model of the system with time delay considered is more accurate and more sensitive to changes in the controller parameters. Finally, Matlab/Simulink simulation results verify the correctness of the proposed theoretical analysis.
机译:网格连接逆变器的小信号稳定性非常重要,状态空间模型是分析网格连接逆变器的小扰动稳定性的最有效的建模方法之一。所提出的电网连接逆变器系统的小信号建模需要考虑数字控制引起的时间延迟,并将时间延迟因子与Pade近似方法转换为合理多项式,以便建立整个状态空间模型系统。特征值分析方法用于比较网格连接逆变器系统的小扰动稳定性,或者不考虑不同环境下的时间延迟。数值模拟结果表明,在电网连接的逆变器系统中考虑的时间延迟,当电网的强度发生变化时,系统具有不连续的稳定区域和系统的小信号模型,被考虑的时间延迟更准确,更敏感要更改控制器参数。最后,Matlab / Simulink仿真结果验证了所提出的理论分析的正确性。

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