A non-linear optimal predictive control of a shunt active power filter

N. Mendalek, F. Fnaiech, K. Al-haddad, L. Dessaint
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引用次数: 21

Abstract

In this paper a nonlinear multiple-input multiple-output (MIMO) predictive control using optimal control approach is applied to control the currents of a three-phase three-wire voltage source inverter used as a shunt active power filter (AF). The nonlinear active filter state-space representation model is elaborated in the synchronous d-q frame rotating at the mains fundamental frequency. This state-space model is seen as two separate subsystems, namely an inner multiple-input multiple-output model with fast dynamics and an outer single-input single-output model with slow dynamics. The proposed nonlinear MIMO predictive control law is applied to the inner loop forcing the currents to track their references that are extracted from the sensed nonlinear load currents by applying the synchronous reference frame method. The outer DC voltage loop uses a proportional-integral compensator and the compensated error is added to the inner loop d-axis current reference. In addition to good tracking behavior, the predictive control guarantees stability and improves robustness. Simulation results demonstrate the expected performance of the shunt active filter.
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并联有源电力滤波器的非线性最优预测控制
本文采用最优控制方法,将非线性多输入多输出(MIMO)预测控制应用于并联型有源电力滤波器三相三线电压源逆变器的电流控制。阐述了以主基频旋转的同步d-q框架中的非线性有源滤波器状态空间表示模型。该状态空间模型被视为两个独立的子系统,即具有快速动态的内部多输入多输出模型和具有缓慢动态的外部单输入单输出模型。将所提出的非线性多输入多输出预测控制律应用于内环,利用同步参照系方法从检测到的非线性负载电流中提取参照系,迫使电流跟踪参照系。外直流电压环采用比例积分补偿器,补偿后的误差加到内环d轴电流基准。除了良好的跟踪行为外,预测控制还保证了稳定性并提高了鲁棒性。仿真结果验证了并联有源滤波器的预期性能。
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