Sensorless direct torque and flux control for matrix converter-fed interior permanent magnet synchronous motor using adaptive sliding mode observer

D. Xiao, M. F. Rahman
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引用次数: 5

Abstract

This paper presents a speed and position estimation method for the sensorless direct torque and flux control scheme for matrix converter driven interior permanent-magnet synchronous motor. The adaptive sliding mode observer simultaneously estimates the stator flux, speed and rotor position. A permanent magnet flux estimator is integrated with the observer to compensate the effect of inaccurate PM flux on the estimation error. The direct closed-loop control of both torque and stator flux are achieved using two proportional-integral controllers and indirect space vector modulation with a new overmodulation strategy. The system is characterized by low torque and flux ripples, unity input power factor, sinusoidal input/output currents, inherent bidirectional power-flow capability and good speed sensorless control performance over wide speed range, while maintaining constant switching frequency and fast dynamics. Experimental results are shown to illustrate the effectiveness of the proposed sensorless DTFC-ISVM matrix converter IPM motor drives.
基于自适应滑模观测器的矩阵变换器内部永磁同步电动机无传感器直接转矩和磁链控制
本文提出了一种矩阵变换器驱动的内部永磁同步电动机无传感器直接转矩和磁链控制方案的速度和位置估计方法。自适应滑模观测器同时估计定子磁链、速度和转子位置。将永磁磁通估计器与观测器相结合,补偿磁通不准确对估计误差的影响。采用比例积分控制器和间接空间矢量调制实现了转矩和定子磁链的直接闭环控制。该系统具有低转矩和磁链脉动、统一的输入功率因数、正弦输入/输出电流、固有的双向功率流能力以及在宽速度范围内良好的无速度传感器控制性能,同时保持恒定的开关频率和快速的动态特性。实验结果表明了所提出的无传感器DTFC-ISVM矩阵变换器IPM电机驱动的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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