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Performance analysis of speed estimator insensitive to stator resistance at low speed in sensorless induction motor drives

机译:无传感器感应电动机驱动器中低速下对定子电阻不敏感的速度估算器的性能分析

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This paper presents the performance analysis of two model reference adaptive system (MRAS) based speed estimator for sensorless field oriented control of induction motor drive at low speeds including zero speed without affecting the stability of the system. Flux based MRAS speed estimator being dependent upon the stator resistance variations, needs to be tracked during the operation of the drive especially at low speeds, which increases the system complexity while proposed steady state reactive power MRAS rotor speed estimator gives the better performance at low speeds including zero speed. Thus scheme is robust to the effect of stator resistance variations in flux MRAS speed estimator. A brief analysis of significance of the speed tuning signal used in MRAS speed estimator is obtained in this paper. The performance of both the method is rigorously verified through tracking capability of the speed estimator especially at low speed in MATLAB/SIMULINK software package.
机译:本文介绍了两种基于模型参考自适应系统(MRAS)的速度估计器的性能分析,该速度估计器可在不影响系统稳定性的情况下实现低速(包括零速)感应电动机驱动的无传感器磁场定向控制。基于磁通的MRAS速度估算器取决于定子电阻变化,需要在驱动器运行期间特别是在低速运行时进行跟踪,这会增加系统的复杂性,同时建议的稳态无功功率MRAS转子速度估算器在低速时表现出更好的性能包括零速因此,该方案对于磁通MRAS速度估计器中定子电阻变化的影响是鲁棒的。本文简要分析了MRAS速度估计器中使用的速度调节信号的重要性。通过速度估算器的跟踪功能(尤其是在MATLAB / SIMULINK软件包中以低速运行时),可以严格验证这两种方法的性能。

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