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Nonlinear Model and Dynamic Behavior of Photovoltaic Grid-Connected Inverter

机译:光伏电网连接逆变器的非线性模型和动态行为

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摘要

A photovoltaic grid-connected inverter is a strongly nonlinear system. A model predictive control method can improve control accuracy and dynamic performance. Methods to accurately model and optimize control parameters are key to ensuring the stable operation of a photovoltaic grid-connected inverter. Based on the nonlinear characteristics of photovoltaic arrays and switching devices, we established a nonlinear model of photovoltaic grid-connected inverters using the state space method and solved its model predictive controller. Then, using the phase diagram, folded diagram, and bifurcation diagram methods, we studied the nonlinear dynamic behavior under the influence of control parameters on both fast and slow scales. Finally, we investigated the methods of parameter selection based on the characteristics of nonlinear dynamic behavior. Our research shows that the predictive controller parameters are closely related to the bifurcation and chaos behaviors of the grid-connected photovoltaic inverter. The three-dimensional bifurcation diagram can be used to observe the periodic motion region of the control parameters. After selecting the optimization target, the bifurcation diagram can be used to guide the selection of control parameters for inverter design. The research results can be used to guide the modeling, stability analysis, and optimization design of photovoltaic grid-connected inverters.
机译:光伏电网连接的逆变器是强烈的非线性系统。模型预测控制方法可以提高控制精度和动态性能。准确模型和优化控制参数的方法是确保光伏电网连接逆变器稳定运行的关键。基于光伏阵列和开关装置的非线性特性,我们建立了使用状态空间方法的光伏电网连接逆变器的非线性模型,并解决了其模型预测控制器。然后,使用相位图,折叠图和分叉图方法,我们研究了在快速和慢速尺度上对照参数的影响下的非线性动态行为。最后,我们根据非线性动力学行为的特征调查了参数选择的方法。我们的研究表明,预测控制器参数与网格连接光伏逆变器的分叉和混沌行为密切相关。三维分叉图可用于观察控制参数的周期性运动区域。在选择优化目标之后,分叉图可用于指导逆变器设计的控制参数选择。研究结果可用于引导光伏电网连接逆变器的建模,稳定性分析和优化设计。

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