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Generalized Two-Vector-Based Model-Predictive Torque Control of Induction Motor Drives

机译:广义两矢量的感应电动机驱动器模型预测转矩控制

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Conventional single-vector-based model-predictive torque control (MPTC) has been widely studied owing to its intuitive concept and quick response. To improve the steady-state performance, recently, the concept of duty cycle control was introduced in MPTC by inserting a null vector along with an active vector during one control period. However, this still fails to reduce the torque error to a minimal value due to the imposed restriction on vector combination and the cascaded processing of vector selection and vector duration. This paper proposes a generalized two-vectors-based MPTC (GTV-MPTC) by relaxing the vector combination to two arbitrary voltage vectors. By evaluating the vector combination and their durations simultaneously in the predefined cost function, global minimization of torque error can be obtained in theory. However, the computational burden is also significantly increased. By choosing a proper method to determine the vector durations, the redundant vector combinations can be eliminated, which makes the proposed GTV-MPTC suitable for real-time implementation. Both simulation and experimental results were carried out to verify the effectiveness of the proposed method. The presented results show that, compared to prior MPTC with or without duty cycle control, the proposed GTV-MPTC achieves much better performance with lower sampling frequency over a wide speed range. Furthermore, the average switching frequency is even lower than that of conventional MPTC in the medium speed range.
机译:常规的基于单矢量的模型预测转矩控制(MPTC)由于其直观的概念和快速的响应而得到了广泛的研究。为了提高稳态性能,近来,在MPTC中引入了占空比控制的概念,方法是在一个控制周期内将空矢量和有效矢量一起插入。然而,由于对向量组合施加了限制以及向量选择和向量持续时间的级联处理,这仍然不能将转矩误差减小到最小值。通过将向量组合放宽为两个任意电压向量,本文提出了一种通用的基于两个向量的MPTC(GTV-MPTC)。通过在预定义的成本函数中同时评估矢量组合及其持续时间,理论上可以获得扭矩误差的整体最小化。但是,计算负担也大大增加。通过选择确定向量持续时间的适当方法,可以消除冗余向量组合,这使得所提出的GTV-MPTC适合实时实施。通过仿真和实验结果验证了该方法的有效性。呈现的结果表明,与具有或不具有占空比控制的现有MPTC相比,建议的GTV-MPTC在较宽的速度范围内以较低的采样频率实现了更好的性能。此外,在中速范围内,平均开关频率甚至低于传统的MPTC。

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