有限控制集-模型预测控制在永磁同步电机伺服制动中的应用

IF 2.1 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Hiroaki Kawai;Julien Cordier;Ralph Kennel;Shinji Doki
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引用次数: 1

摘要

有限控制集模型预测控制(FCS–MPC)具有简单直观的优化过程。因此,FCS–MPC越来越多地应用于电气驱动系统的控制策略。本文提出了一种基于FCS–MPC的永磁同步电机伺服制动控制方法。因此,我们提出了在制动运动的成本函数中引入的参考轨迹和具有速度控制的交替过程。此外,本文阐明了使用FCS–MPC的伺服制动控制所特有的问题,即由于输出电压的低分辨率,在制动位置附近的跟踪性能降低。除了传统方法外,还应用有限数量的平滑电压作为FCS–MPC的候选电压,以提高制动位置附近的跟踪性能。平滑电压可以有效地提高输出电压的分辨率,从而减少伺服制动器运动过程中角位置跟踪的稳态误差。使用PMSM驱动系统获得的仿真和实验结果表明,所提出的策略在伺服制动器运行过程中具有跟踪参考目标的高性能,并且能够在伺服制动器和电机操作之间无缝切换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Finite Control Set–Model Predictive Control for Servo Brake Motion in PMSM Drives
Finite control set-model predictive control (FCS–MPC) has a simple and intuitive optimization procedure. Therefore, FCS–MPC is increasingly being applied to control strategies for electrical drive systems. This article presents a method for servo brake control of a permanent magnet synchronous motor (PMSM) based on FCS–MPC. Accordingly, we propose a reference trajectory introduced in a cost function for brake motions and an alternating procedure with speed control. Moreover, this article clarifies the problem peculiar to servo-brake control using FCS–MPC, i.e., the reduction in tracking performance near the brake position because of the low resolution of the output voltage. In addition to the conventional method, a finite number of smoothed voltages were applied as candidate voltages for FCS–MPC to improve the tracking performance near the brake position. The smoothed voltages can effectively increase the resolution of the output voltage, which results in fewer steady-state errors in angular position tracking during servo brake motion. The simulation and experimental results obtained using a PMSM drive system reveal that the proposed strategy exhibited high performance in tracking the reference target during the operation of servobrakes and the ability to seamlessly alternate between servo brake and motor operations.
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CiteScore
3.70
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