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Multifactorial Prediction Errors Analysis and a Feedback Self-Correction on Model Predictive Control for the Three-Phase Inverter

机译:三相逆变器模型预测控制的多因素预测误差分析与反馈自校正

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摘要

To solve the problem of poor robustness due to the high dependence of model predictive control (MPC) on the three-phase inverter model, the influence mechanism of the mismatch of circuit parameters R and L, the model discretization error, and sampling errors on MPC prediction error are analyzed in this paper. A feedback self-correction is proposed, which the next current errors are predicted and used to modify the model, based on the previous prediction errors. This proposed method involves simple structure and a small amount of calculation. Steady-state effects of the proposed method are quantized to prove a good inhibitory ability on multifactorial prediction errors. Finally, experimental results in a three-phase inverter are presented to support the theoretical analysis and demonstrate the feasibility of the proposed method.
机译:为解决模型预测控制(MPC)对三相逆变器模型的高度依赖导致的鲁棒性差的问题,电路参数R和L不匹配的影响机理,模型离散误差和采样误差对MPC的影响分析了预测误差。提出了一种反馈自校正,可以基于先前的预测误差对下一个当前误差进行预测并用于修改模型。该方法结构简单,计算量小。所提出的方法的稳态效应被量化以证明对多因素预测误差具有良好的抑制能力。最后,给出了三相逆变器的实验结果,以支持理论分析并证明了该方法的可行性。

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