基于svm的两相永磁管状同步执行器直接推力控制的实现

Ioana-Cornelia Gros, M. Radulescu, P. Teodosescu, C. Marginean
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引用次数: 0

摘要

直线电机的直接推力控制(DTC)方法已经达到了经典的旋转电机直接转矩控制的普及程度,两者在永磁同步配置中都有很好的应用,并且指向了动态性能的改善。本文对两相永磁管状执行器(PMTSA)的DTC方案的实现进行了全面的理论和实践分析,并采用了适用于h桥逆变器拓扑的空间矢量调制(SVM)技术。其目的是维护经典控制方法的优点,即动态行为和实现简单,并克服有关响应干扰的限制;仿真结果验证了所提出的pmta两相拓扑控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of SVM-based Direct Thrust Control of two-phase permanent magnet tubular synchronous actuators
Direct Thrust Control (DTC) methodology for linear motors has already reached the popularity of the classical Direct Torque Control for rotating machines, both, with good application in permanent-magnet synchronous configurations, and pointing to the improvement of the dynamic performances. This research paper presents a comprehensive theoretical and practical analysis of the implementation of a DTC scheme for a two-phase permanent-magnet tubular actuator (PMTSA) in addition with a Space Vector Modulation (SVM) technique suited for H-bridge inverter topology. The aim is to uphold the advantages of the classical control methodology, i.e. the dynamic behaviour and implementation simplicity, and to overcome the limitation regarding the disturbances of the responses; the simulation results of the implemented scheme validate the effectiveness of the proposed control scheme for two-phase topologies of PMTAs.
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