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A CLF-based nonlinear control technique for a grid-connected voltage source inverter with LCL filter used in renewable energy power conditioning systems

机译:具有可再生能源动力调节系统的LCL滤波器电流连接电压源逆变器的基于CLF的非线性控制技术

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A novel control scheme based on the Control Lyapunov Function (CLF) is proposed in this paper for a grid-connected voltage source inverter with an LCL filter. The proposed control approach is able to significantly increase the bandwidth of the closed-loop control system and offer a very fast transient response compared to the conventional Proportional Resonant (PR) controllers. The proposed CLF-based controller guarantees the closed-loop stability and perfect disturbance rejection for the voltage source inverter with LCL-filter. The specific Lyapunov function proposed in this paper includes the integral of the errors in order to account for parameter uncertainties in the system model. The CLF-based controller is implemented on a 1kW voltage source inverter prototype to verify the performance of the proposed control scheme. The experimental results show a significant improvement in the performance of the converter with the proposed control scheme compared to the conventional PR controller.
机译:本文提出了一种基于控制Lyapunov函数(CLF)的新型控制方案,用于具有LCL滤波器的电网连接电压源逆变器。所提出的控制方法能够显着增加闭环控制系统的带宽,并与传统的比例谐振(PR)控制器相比提供非常快速的瞬态响应。所提出的基于CLF的控制器可确保带有LCL滤波器的电压源逆变器的闭环稳定性和完美的扰动抑制。本文提出的特定Lyapunov功能包括错误的积分,以便在系统模型中解释参数不确定性。基于CLF的控制器在1KW电压源逆变器原型上实现,以验证所提出的控制方案的性能。与传统的PR控制器相比,实验结果显示了与所提出的控制方案的转换器的性能的显着改善。

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