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Sliding Mode Control Based DTC of Sensorless Parallel-Connected Two Five-Phase PMSM Drive System

机译:基于滑模控制的无传感器平行连接的两种五相PMSM驱动系统DTC

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摘要

This paper presents a sensorless direct torque control (DTC) combined with sliding mode approach (SM) and space vector modulation (SVM) to achieve mainly a high performance and reduce torque and flux ripples of a parallel-connected two five-phase permanent magnet synchronous machine (PMSM) drive system. In order to increase the proposed drive robustness and decrease its complexity and cost, the rotor speeds, rotor positions, fluxes as well as torques are estimated by using a sliding mode observer (SMO) scheme. The effectiveness of the proposed sliding mode observer in conjunction with the sliding mode control based DTC is confirmed through the application of different load torques for wide speed range operation. Comparison between sliding mode control and proportional integral (PI) control based DTC of the proposed two-motor drive is provided. The obtained speeds, torques and fluxes responses follow their references; even in low and reverse speed operations, load torques changes, and machines parameters variations. Simulation results confirm also that, the ripples of the torques and fluxes are reduced more than 3.33% and 16.66 %, respectively, and the speed overshoots and speed drops are reduced about 99.85% and 92.24%, respectively.
机译:本文介绍了无传感器直接扭矩控制(DTC)与滑动模式接近(SM)和空间矢量调制(SVM)相结合,以实现高性能,并减小平行连接的两个五相永磁体同步的扭矩和磁通波纹机器(PMSM)驱动系统。为了提高所提出的驱动鲁棒性并降低其复杂性和成本,通过使用滑动模式观察者(SMO)方案估计转子速度,转子位置,磁通量以及扭矩。通过应用不同的负载扭矩来确认所提出的滑动模式观察者与滑动模式控制的DTC的有效性通过应用于宽速度范围操作来确认。提供了所提出的双电动机驱动器的滑模控制和比例积分(PI)基于DTC的滑模控制和比例集成(PI)的比较。获得的速度,扭矩和助熔响应遵循其参考;即使在低速度和反向速度操作中,负载扭矩也会发生变化,以及机器参数变化。仿真结果还证实,扭矩和助熔剂的涟漪分别降低了3.33%和16.66%,分别减少了约99.85%和92.24%的速度过冲和速度下降。

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