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Guidelines for weighting factors design in model predictive control of power converters and drives

机译:电力转换器和驱动器模型预测控制中的加权因子设计指南

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摘要

Finite State Model Predictive Control (FS-MPC) has emerged as a promising control tool for power converters and drives. One of the major advantages is the possibility to control several system variables with a single control law, by including them with appropriate weighting factors. However, at the present state of the art, these coefficients are determined empirically. There is no analytical or numerical method proposed yet to obtain an optimal solution. In addition, the empirical method is not always straightforward, and no procedures have been reported. This paper presents a first approach to a set of guidelines that reduce the uncertainty of this process. First a classification of different types of cost functions and weighting factors is presented. Then the different steps of the empirical process are explained. Finally, results for several power converters and drives applications are presented, which show the effectiveness of the proposed guidelines to reach appropriate weighting factors.
机译:有限状态模型预测控制(FS-MPC)已成为一种有前途的功率转换器和驱动器控制工具。主要优点之一是可以通过用适当的加权因子对多个系统变量进行控制来用一个控制律对其进行控制。然而,在当前的现有技术中,这些系数是凭经验确定的。还没有提出分析或数值方法来获得最佳解决方案。此外,经验方法并不总是很简单,也没有任何程序被报道。本文提出了一套减少该过程不确定性的指导方针的第一种方法。首先,介绍了不同类型的成本函数和加权因子的分类。然后说明了经验过程的不同步骤。最后,给出了几种功率转换器和驱动器应用的结果,这些结果表明了所提出的指南达到适当加权因子的有效性。

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