Sensorless sliding mode control of SVPWM fed induction motor drive using dss speed estimator

R. Kamaleshwar, A. Prahadeeshwaran, N. SrivatsAthindran
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引用次数: 2

Abstract

This paper proposes a highly improvised and a vibrant sensorless vector control of the three-phase induction motor drive, brought out by a combination of sliding mode control and Space vector pulse width modulated inverter, with “Direct synthesis from State Equations” (DSS) as the technique for estimating speed. Field oriented Vector control method of decoupling the flux and torque and controlling them separately analogous to a separately exited dc motor, is taken as the key control technique in this model. To overcome the drawbacks of physical sensors, ‘Direct synthesis from state equations’ (DSS), a Sensorless speed estimation technique is used, which estimates the rotor speed by determining the flux from the stator currents and voltages. The control side is taken over by the ‘Sliding mode Controller’ which provides a non-linear and robust control insensitive to the external disturbances, parameter uncertainties and the dynamic load variations. Lastly, SVPWM based Voltage source inverter is used where the inverter output comes with reduced harmonics. Thus a nearly smooth sinusoidal output ac voltage is obtained, which is fed to the induction motor. From the simulation of this proposed combination of techniques, a smooth speed control is achieved. Respective graphical outcomes to prove the characteristics of the proposed control system are included in this paper.
基于dss速度估计器的SVPWM异步电机无传感器滑模控制
本文提出了一种将滑模控制与空间矢量脉宽调制逆变器相结合,以“状态方程直接合成”(DSS)作为速度估计技术,对三相异步电动机驱动进行高度简易的无传感器矢量控制。将磁链和转矩解耦并分别控制的面向场矢量控制方法作为该模型的关键控制技术,该方法类似于单独励磁的直流电机。为了克服物理传感器的缺点,使用了“状态方程直接合成”(DSS),一种无传感器速度估计技术,通过确定定子电流和电压的磁通来估计转子速度。控制侧由“滑模控制器”接管,该控制器提供非线性和鲁棒控制,对外部干扰,参数不确定性和动态负载变化不敏感。最后,基于SVPWM的电压源逆变器用于逆变器输出具有降低的谐波。这样就得到了一个几乎平滑的正弦输出交流电压,并将其馈送到感应电动机。通过对上述技术组合的仿真,实现了平稳的速度控制。文中给出了相应的图形结果来证明所提出的控制系统的特性。
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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