用于减小转矩脉动的永磁同步电机模型预测直接转矩控制

Lon-Jay Cheng, Zih-Jia Zeng, Le-Ren Chang-Chien, M. Tsai, K. Ling, I-Hsuan Wu
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引用次数: 1

摘要

针对传统永磁同步电机直接转矩控制中的转矩波动,提出了一种改进的模型预测控制策略。目前,直接转矩控制以其结构简单、动态性能好等优点在工业上得到了广泛的应用。但是,迟滞控制器会造成较大的转矩脉动,降低控制性能。本文采用模型预测控制器取代迟滞控制器和传统的DTC开关表,实现对所需驱动电压空间矢量的在线优化。此外,设计了一种预选择过程,过滤掉不合适的电压矢量,减少了8个基本电压空间矢量带来的计算负担。最后,提出了一种最优占空比调制方法,在每个控制周期内确定合适的零电压矢量和所选电压矢量的占空比,以减小转矩纹波。通过实现所提出的直接转矩控制,可以减小转矩脉动,并可以最小化近似开关频率,以保持传统直接转矩控制的优点;同时,转矩响应仍然很快。仿真和实验结果均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。
Model Predictive Direct Torque Control of Permanent Magnet Synchronous Motor for Torque Ripple Reduction
This paper presents an improved model predictive control strategy to reduce torque ripples in conventional direct torque control (DTC) of a permanent magnet synchronous motor. Nowadays, DTC has been widely used in industrial applications thanks to its simple structure and high dynamic performance. However, hysteresis controllers cause high torque ripple and deteriorate control performance. In this paper, hysteresis controllers and traditional DTC switching table are replaced by a model predictive controller to achieve an online optimization for the required driving voltage space vector. Furthermore, a pre-selective process is designed to filter out the inappropriate voltage vectors and reduce computational burden caused by the eight basic voltage space vectors. Finally, an optimal duty ratio modulation method is proposed to determine appropriate zero voltage vector and the duty ratio of the selected voltage vector in each control period for torque ripple reduction. By implementing the proposed DTC, torque ripple is reduced and the approximated switching frequency can be minimized to retain the advantages of a traditional DTC; meanwhile, the torque response is still quick. Both simulation and experimental results exhibit the effectiveness of this proposed approach.
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