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Robust Predictive Current Controller Based on a Disturbance Estimator in a Three-Phase Grid-Connected Inverter

机译:三相并网逆变器中基于扰动估计的鲁棒预测电流控制器

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This paper proposes a robust predictive current controller based on a disturbance estimator for a three-phase grid-connected inverter. The various components that deteriorate the performance of a conventional predictive current controller are regarded as disturbances, and a disturbance estimator is constructed using an inverter output voltage and current values. Furthermore, a grid angle is extracted using a phase-locked loop (PLL) with the estimated reactive component of the disturbance; therefore, sensorless grid voltage control is possible. In order to determine the relevant gains in the disturbance estimator, the frequency components corresponding to the unbalanced grid condition and low-order harmonics, as well as the PLL bandwidth, are considered. Moreover, the stability of the disturbance estimator due to parameter errors in the inductor filter is analyzed. The proposed method has an inherent rapid dynamic response due to the conventional predictive current controller, as well as low-cost implementation and robust control performance with regard to the disturbance and noise interference due to use of the combined estimation algorithm. The feasibility of the proposed predictive current control strategy is verified through the examination of experimental results.
机译:本文针对三相并网逆变器,提出了一种基于干扰估计的鲁棒预测电流控制器。破坏传统预测电流控制器性能的各种组件都被视为干扰,并且使用逆变器输出电压和电流值来构建干扰估计器。此外,使用锁相环(PLL)提取网格角,并估计干扰的无功分量。因此,无传感器电网电压控制成为可能。为了确定干扰估计器中的相关增益,考虑了与不平衡电网状况和低阶谐波相对应的频率分量以及PLL带宽。此外,分析了由于电感滤波器中的参数误差引起的干扰估计器的稳定性。所提出的方法由于传统的预测电流控制器而具有固有的快速动态响应,并且由于使用了组合估计算法而在干扰和噪声干扰方面具有低成本实现和鲁棒的控制性能。通过对实验结果的检验,验证了所提出的预测电流控制策略的可行性。

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