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A Novel Sensorless Predictive Voltage Control for an Induction Motor Drive Based on a Back-Stepping Observer-Experimental Validation

机译:基于后台踏步观测器 - 实验验证的进一步电动机驱动的新型无传感器预测电压控制

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The current paper presents a novel predictive voltage control (PVC) for an induction motor (IM) without using a speed sensor. The proposed PVC is formulated using the model predictive control principle in which the stator voltages are directly controlled rather than regulating the flux and torque as in traditional MP DTC. The advantages of the proposed PVC over the commonly used MP DTC scheme are the reduced calculation time, the reduced ripples and the fast dynamic. To realize the sensorless operation of the IM, a robust observer is used to estimate the speed, rotor flux, stator current and stator and rotor resistances. The observer is constructed based on the back-stepping theory. Testing the validness of the proposed sensorless PVC technique is performed in a form of comparison between the PVC and MP DTC procedures. The tests are firstly accomplished using the Matlab/Simulink software; then, a dSPACE 1104 test board is utilized for the experimental validation. The simulation and experimental results show that the IM dynamics are effectively enhanced when applying the proposed PVC in comparison with the MP DTC performance. The back-stepping observer (BSO) also proved its ability to estimate the specified variables for different operating speeds and under parameters variation as well.
机译:目前纸张提供了一种用于感应电动机(IM)的新型预测电压控制(PVC),而不使用速度传感器。所提出的PVC使用模型预测控制原理配制,其中定子电压直接控制而不是调节传统MP DTC中的磁通量和扭矩。所提出的PVC在常用MP DTC方案上的优点是降低的计算时间,降低的涟漪和快速动态。为了实现IM的无传感器操作,使用鲁棒观察者来估计速度,转子通量,定子电流和定子和转子电阻。观察者基于后踏步理论构建。测试所提出的无传感器PVC技术的有效性以PVC和MP DTC程序之间的比较形式进行。首先使用MATLAB / SIMULINK软件完成测试;然后,使用DSPACE 1104测试板进行实验验证。模拟和实验结果表明,与MP DTC性能相比,应用所提出的PVC时,可以有效地提高IM动态。后台观察者(BSO)还证明了其能够估计不同的操作速度和参数变化的指定变量。

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