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An Approach to State Signal Shaping by Limit Cycle Model Predictive Control ?

机译:限制周期模型预测控制的状态信号整形的方法

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A novel nonlinear model predictive control approach for state signal shaping is proposed. The control strategy introduces a residual shape cost kernel based on the dynamics of circular limit cycles from a supercritical Neimark-Sacker bifurcation normal form. This allows the controller to impose a fundamental harmonic state signal shape with a specific frequency and amplitude. An application example for harmonic compensation in distribution grids integrated with renewable energies is presented. The controller is tasked with the calculation of the reference current for an active power filter used for load compensation. The results achieved are successful, reducing the harmonic distortion to satisfactory levels while ensuring the correct frequency and amplitude.
机译:提出了一种用于状态信号整形的新型非线性模型预测控制方法。控制策略基于来自超临界内马袋分叉正常形式的圆形极限循环的动态引入残余形状核。这允许控制器用特定频率和幅度施加基本的谐波状态信号形状。提出了一种用于可再生能量集成的分布网格中的谐波补偿的应用示例。该控制器的任务是计算用于负载补偿的有源电源滤波器的参考电流。实现的结果是成功的,在确保正确的频率和幅度的同时将谐波变形降低到令人满意的水平。

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