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Robust Dichotomy Solution Based Model Predictive Control with Voltage Observer for Grid-Connected Inverters

机译:基于稳健二分法的电压观测器模型预测控制的并网逆变器

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A robust dichotomy solution-based model predictive control (DS-MPC) with a voltage observer for a three-phase grid-connected inverter (GCI) is proposed in this paper. The optimal voltage vector can be dynamically selected in the whole space vector circle plane in a very short time due to the voltage vector dichotomy solution algorithm. Therefore, the proposed DS-MPC control has not only fast dynamic performance but also good steady state performance. Meanwhile, the performance of model predictive control (MPC) usually depends on the accuracy of plant model. In weak grid case, the variation of equivalent grid impedance could impact on the performance. To improve the current control robustness, DS-MPC is combined with a grid voltage disturbance observer using the extended Kalman filter (EKF) so that the disturbance of weak grid voltages is effectively suppressed. Moreover, the grid currents are well regulated even with greatly distorted and unbalanced grid voltages. The test results verify the correctness and effectiveness of the proposed DS-MPC with EKF observer under the weak grid.
机译:针对三相并网逆变器(GCI),提出了一种基于带电压观测器的鲁棒二分法基于模型的预测控制(DS-MPC)。由于电压矢量二分法求解算法,可以在很短的时间内在整个空间矢量圆平面内动态选择最佳电压矢量。因此,所提出的DS-MPC控制不仅具有快速的动态性能,而且具有良好的稳态性能。同时,模型预测控制(MPC)的性能通常取决于工厂模型的准确性。在弱电网情况下,等效电网阻抗的变化可能会影响性能。为了提高电流控制的鲁棒性,DS-MPC与使用扩展卡尔曼滤波器(EKF)的电网电压干扰观测器结合使用,从而有效地抑制了弱电网电压的干扰。此外,即使在电网电压大大失真和不平衡的情况下,也可以很好地调节电网电流。测试结果在弱电网格下用EKF观测器验证了所提出的DS-MPC的正确性和有效性。

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