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Effect of Parametric Variations and Voltage Unbalance on Adaptive Speed Estimation Schemes for Speed Sensorless Induction Motor Drives

机译:参数变化和电压不平衡对无速度传感器感应电动机驱动器自适应速度估计方案的影响

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摘要

Speed Estimation without speed sensors is a complex phenomenon and is overly dependent on the machine parameters. It is all the more significant during low speed or near zero speed operation. There are several approaches to speed estimation of an induction motor. Eventually, they can be classified into two types, namely, estimation based on the machine model and estimation based on magnetic saliency and air gap space harmonics. This paper analyses the effect of incorrect setting of parameters like the stator resistance, rotor time constant, load torque variations and also Voltage unbalance on various adaptive control based speed estimation techniques fed from the machine model. It also shows how the convergence mechanisms of the adaptation schemes are affected during these conditions. The equivalent models are built and simulated offline using MATLAB/SIMULINK blocksets and the results are analysed.
机译:没有速度传感器的速度估算是一个复杂的现象,并且过度依赖于机器参数。在低速或接近零速运行时,这一点尤为重要。有几种方法来估计感应电动机的速度。最终,它们可以分为两种类型,即基于机器模型的估计和基于磁显着性和气隙空间谐波的估计。本文分析了参数设置不正确的影响,这些参数包括定子电阻,转子时间常数,负载转矩变化以及电压不平衡,这些误差对基于电机模型的各种基于自适应控制的速度估算技术的影响。它还显示了在这些条件下适应方案的收敛机制如何受到影响。使用MATLAB / SIMULINK块集构建等效模型并进行离线仿真,并对结果进行分析。

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