Sensorless vector control of induction motor using an EKF and SVPWM algorithm

Yassine Zahraoui, Chaymae Fahassa, M. Akherraz, A. Bennassar
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引用次数: 9

Abstract

This paper purposes to present a sensorless indirect field oriented control (IFOC) commanded by a space vector algorithm (SV) in goal to guarantee fast response in one hand, and to improve the dynamic performance of a three-phase squirrel cage induction motor drive (SCIM) in the other hand. This numerical algorithm is used by the pulse width modulation (PWM) in order to obtain a control sequence of the inverter switches to generate an output voltage vector that approaches as much as possible to the reference voltage vector. The global control is reinforced by an extended Kalman filter observer (EKF) for the rotor speed estimation. Simulation results show that the proposed vector control with the proposed observer and the numerical algorithm provide good performance dynamic characteristics for different operating modes. The robustness of the overall system is tested under load torque disturbance in order to show the system stability. All simulations have been realized in MatLab/Simulink.
基于EKF和SVPWM算法的感应电机无传感器矢量控制
本文提出了一种由空间矢量算法(SV)指挥的无传感器间接场定向控制(IFOC),目的是一方面保证快速响应,另一方面提高三相鼠笼式异步电动机驱动器(SCIM)的动态性能。该数值算法用于脉宽调制(PWM),以获得逆变器开关的控制序列,从而产生尽可能接近参考电压矢量的输出电压矢量。采用扩展卡尔曼滤波观测器(EKF)对转子转速估计进行全局控制。仿真结果表明,基于观测器和数值算法的矢量控制在不同工作模式下都具有良好的动态特性。为了证明系统的稳定性,对整个系统在负载转矩扰动下的鲁棒性进行了测试。所有仿真均在MatLab/Simulink中实现。
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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