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首页> 外文期刊>Journal of power electronics >Input-Output Feedback Linearization of Sensorless IM Drives with Stator and Rotor Resistances Estimation
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Input-Output Feedback Linearization of Sensorless IM Drives with Stator and Rotor Resistances Estimation

机译:估计定子和转子电阻的无传感器IM驱动器的输入输出反馈线性化

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摘要

Direct torque control (DTC) of induction machines (IM) is a well-known strategy of these drives control which has a fast dynamic and a good tracking response. In this paper a nonlinear DTC of speed sensorless IM drives is presented which is based on input-output feedback linearization control theory. The IM model includes iron losses using a speed dependent shunt resistance which is determined through some effective experiments. A stator flux vector is estimated through a simple integrator based on stator voltage equations in the stationary frame. A novel method is introduced for DC offset compensation which is a major problem of AC machines, especially at low speeds. Rotor speed is also determined using a rotor flux sliding-mode (SM) observer which is capable of rotor flux space vector and rotor speed simultaneous estimation. In addition, stator and rotor resistances are estimated using a simple but effective recursive least squares (RLS) method combined with the so-called SM observer. The proposed control idea is experimentally implemented in real time using a FPGA board synchronized with a personal computer (PC). Simulation and experimental results are presented to show the capability and validity of the proposed control method.
机译:感应电机(IM)的直接转矩控制(DTC)是这些驱动器控制的众所周知的策略,它具有快速的动态特性和良好的跟踪响应。本文提出了一种基于输入-输出反馈线性化控制理论的无速度传感器IM驱动器的非线性DTC。 IM模型包括通过速度相关的分流电阻产生的铁损,这是通过一些有效的实验确定的。定子磁通矢量通过一个简单的积分器根据固定框架中的定子电压方程估算。引入了一种用于直流偏移补偿的新颖方法,这是交流电机的一个主要问题,尤其是在低速情况下。转子速度还使用转子磁通滑模(SM)观测器确定,该观测器能够同时估算转子磁通空间矢量和转子速度。另外,使用简单但有效的递归最小二乘(RLS)方法结合所谓的SM观察器来估算定子和转子的电阻。所提出的控制思想是通过使用与个人计算机(PC)同步的FPGA板实时实验性实现的。仿真和实验结果表明了该控制方法的有效性。

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