Sequential Predictive Duty Cycle Control for Induction Motor

Xuliang Yao, Tongzhen Liu, Jingfang Wang, Shengqi Huang, He Ma
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引用次数: 1

Abstract

In the field of model predictive torque control, the problem of weighting factor processing has always attracted attention. Sequential model predictive control which uses two sequential cost functions to select voltage vector shows many advantages in eliminating weighting factor and improving development efficiency. However, its artificially prescribed order of cost functions and the number of selected voltage vectors greatly affect control performance. While keeping the advantages of no weighting factor tuning, this paper proposes a sequential predictive duty cycle control (SPDCC) solution for induction motor drive. The sequential cost function with additional variable parameter is designed to balance better the weighting relationship between electromagnetic torque and stator flux. To improve the effect of the single voltage vector, the duty cycle control based on torque deadbeat is applied in a symmetric manner. The simulation results show the effectiveness of the proposed method.
感应电机时序预测占空比控制
在模型预测转矩控制领域中,权重因子处理问题一直备受关注。时序模型预测控制采用两个时序代价函数选择电压矢量,在消除权重因素和提高开发效率方面具有许多优点。然而,它人为地规定了代价函数的顺序和所选电压向量的数量,极大地影响了控制性能。在保留无权重因子调谐优点的基础上,提出了一种异步电机驱动的顺序预测占空比控制方案。为了更好地平衡电磁转矩与定子磁链的权重关系,设计了附加变参数的序贯代价函数。为了改善单电压矢量的控制效果,采用对称方式采用基于转矩无差拍的占空比控制。仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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