基于混合空间矢量脉宽调制的直接转矩控制感应电机驱动

U. Senthil, B. G. Fernandes
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引用次数: 34

摘要

传统直接转矩控制的主要缺点是转矩和磁链存在稳态波动。其影响是,噪声增加,谐波损失和不正确的速度估计。利用空间矢量调制(SVPWM)技术,可以将均方磁链纹波减小到基本速度以下。本文提出了一种新型的基于SVPWM的混合式变频调速DTC驱动器。这种混合调制器利用零电压矢量冗余,导致箝位序列。与在高速下使用SVPWM技术中使用的传统序列相比,这提高了驱动器的性能。仿真结果表明,在整个转速范围内,磁链、转矩和电流的波动都减小了。
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Hybrid space vector pulse width modulation based direct torque controlled induction motor drive
The major disadvantage of the conventional DTC drive is the steady state ripples in torque and flux. The implications are, increase in acoustical noise, harmonic losses and incorrect speed estimation. Using space vector modulation (SVPWM) technique it is possible to reduce the mean square flux ripple up to base speed. In this paper a new hybrid SVPWM based adjustable-speed DTC drive is proposed. This hybrid modulator utilizes the zero voltage vector redundancy that leads to clamping sequences. This improves the performance of the drive compared to that using conventional sequence used in SVPWM technique at higher speeds. Simulation results show that the ripples in flux, torque and current are reduced over the entire speed range.
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