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Single Current Feedback Control for LCL Grid-connected Inverter Based on Tracking Differentiator

机译:基于跟踪微分器的LCL并网逆变器单电流反馈控制

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摘要

LCL filter is widely used in grid-connected inverter system. Compared with L filter, it has good attenuation effect on high harmonics. However, LCL filter is a third-order system with low damping, and is very easy to resonate. Active damping is an effective measure to solve the resonance problem of LCL filter. The traditional grid-connected current feedback active damping is difficult to extract differential signals, poor dynamic performance and poor noise suppression. Therefore, single current feedback control strategy for LCL grid-connected inverter based on tracking differentiator is proposed in this paper. The third-order tracking differentiator (TD) is designed to extract the second-order differential signal of the grid-connected current as the feedback control of active damping in order to suppress the resonance and the noise. As a result, performance of the dynamic response when the grid-connected current is suddenly changed and the noise suppression are improved. Simulation results demonstrate the effectiveness of the proposed method.
机译:LCL滤波器广泛用于并网逆变器系统中。与L滤波器相比,它对高次谐波具有良好的衰减效果。但是,LCL滤波器是低阻尼的三阶系统,非常容易产生谐振。主动阻尼是解决LCL滤波器共振问题的有效措施。传统的并网电流反馈有源阻尼难以提取差分信号,动态性能差,噪声抑制能力差。因此,本文提出了一种基于跟踪微分器的LCL并网逆变器单电流反馈控制策略。三阶跟踪微分器(TD)用于提取并网电流的二阶差分信号,作为有源阻尼的反馈控制,以抑制谐振和噪声。结果,当并网电流突然改变并且噪声抑制时,动态响应的性能得到改善。仿真结果证明了该方法的有效性。

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