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A discrete-time integral sliding-mode controller with nonlinearity compensation for three-phase grid-connected photovoltaic inverter

机译:一种离散时间整体滑动模式控制器,具有三相网格连接光伏逆变器的非线性补偿

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This paper presents a novel control strategy that combines a discrete-time integral sliding-mode controller (DISMC) with nonlinearity compensation under d-q rotating frame for three-phase grid-connected photovoltaic inverter to suppress the current harmonics as well as improve the dynamic response and robustness. Because of the nonlinearity introduced by dead time and turn on/off delay of three-phase grid-connected inverter, the output voltage of inverter is distorted seriously. This distortion increases the THD of the grid current. In this paper, the nonlinearity of inverter output voltage is analyzed and the model of inverter with the nonlinearity effect is established accordingly. In addition, a discrete-time integral sliding-mode controller is designed according to the new model to regulate the grid current. The novel control strategy achieves both exact nonlinearity compensation and strong robustness control of the whole system. Finally the control scheme is verified in a 100 kW three-phase grid-connected photovoltaic inverter prototype. The simulation and experimental results show that the proposed control strategy has fast dynamic response, strong robustness and good current harmonics rejection.
机译:本文提出了一种新的控制策略,将离散时间整体滑动模式控制器(Dismc)与非线性补偿相结合,在DQ旋转框架下为三相电网连接的光伏逆变器抑制电流谐波以及提高动态响应和提高动态响应鲁棒性。由于由死区时间引入的非线性并打开/关闭三相网格连接逆变器,因此逆变器的输出电压严重扭曲。该失真增加了网格电流的THD。本文分析了逆变器输出电压的非线性,并相应地建立了具有非线性效应的逆变器模型。另外,根据新模型设计的离散时间积分滑模控制器以调节电流。新型控制策略实现了整个系统的精确非线性补偿和强大的鲁棒性控制。最后,在100kW三相网格连接的光伏逆变器原型中验证了控制方案。仿真和实验结果表明,该控制策略具有快速的动态响应,强大的鲁棒性和良好的谐波抑制。

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