首页> 外文会议>11th International Conference on Electrical Machines and Systems(第11届国际电机与系统会议)论文集 >Research and Simulation on ANN Speed-Sensorless Three-level Inverter Vector Control System for Induction Motor
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Research and Simulation on ANN Speed-Sensorless Three-level Inverter Vector Control System for Induction Motor

机译:异步电动机神经网络无速度传感器三电平逆变器矢量控制系统的研究与仿真

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This paper presents a new speed-sensorless vector control drive system for induction motor. In order to produce low harmonics in output voltage and current, reduce the torque fluctuation, and avoid the high voltage jump in switching time, the system utilizes three-level inverter to supply power for the induction motor and a SVPWM scheme with neutral point voltage balance strategy is applied for the three-level inverter. The speed estimator in this system is constructed based on artificial neural network (ANN) theory. Compared with the conventional model reference adaptive system (MRAS) method realized dependent on the PI controller, ANN speed estimator uses the intelligent learning algorithm to complete the speed estimation so that a real-time identification of the motor speed is acquired precisely with excellent dynamic response in various conditions. This paper describes both the theoretical analysis as well as the simulation results to verify the effectiveness of this drive system.
机译:本文提出了一种新型的感应电动机无速度传感器矢量控制驱动系统。为了在输出电压和电流中产生低谐波,减少转矩波动并避免切换时间出现高电压跳变,该系统利用三级逆变器为感应电动机供电,并采用具有中性点电压平衡的SVPWM方案策略适用于三电平逆变器。该系统中的速度估计器是基于人工神经网络(ANN)理论构建的。与依靠PI控制器实现的常规模型参考自适应系统(MRAS)方法相比,ANN速度估计器使用智能学习算法来完成速度估计,从而以出色的动态响应精确获取电动机速度的实时识别在各种情况下。本文介绍了理论分析和仿真结果,以验证该驱动系统的有效性。

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