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MRAS state estimator for speed sensorless ISFOC induction motor drives with Luenberger load torque estimation

机译:采用Luenberger负载扭矩估算的无速度传感器ISFOC感应电动机驱动器的MRAS状态估算器

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This paper presents a novel method for estimating the load torque of a sensorless indirect stator flux oriented controlled (ISFOC) induction motor drive based on the model reference adaptive system (MRAS) scheme. As a matter of fact, this method is meant to inter-connect a speed estimator with the load torque observer. For this purpose, a MRAS has been applied to estimate the rotor speed with tuned load torque in order to obtain a high performance ISFOC induction motor drive. The reference and adjustable models, developed in the stationary stator reference frame, are used in the MRAS scheme in an attempt to estimate the speed of the measured terminal voltages and currents. The load torque is estimated by means of a Luenberger observer defined throughout the mechanical equation. Every observer state matrix depends on the mechanical characteristics of the machine taking into account the vicious friction coefficient and inertia moment. Accordingly, some simulation results are presented to validate the proposed method and to highlight the influence of the variation of the inertia moment and the friction coefficient on the speed and the estimated load torque. The experimental results, concerning to the sensorless speed with a load torque estimation, are elaborated in order to validate the effectiveness of the proposed method. The complete sensorless ISFOC with load torque estimation is successfully implemented in real time using a digital signal processor board DSpace DS1104 for a laboratory 3 kW induction motor. (C) 2016 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于模型参考自适应系统(MRAS)方案的无传感器间接定子磁链定向控制(ISFOC)感应电动机驱动器的负载转矩估算方法。实际上,该方法旨在将速度估算器与负载扭矩观测器互连。为此,为了获得高性能的ISFOC感应电动机驱动器,已应用MRAS来估计带有已调整负载转矩的转子速度。在固定定子参考系中开发的参考模型和可调模型在MRAS方案中使用,以尝试估算所测端子电压和电流的速度。借助整个机械方程式中定义的Luenberger观测器估算负载转矩。每个观察者状态矩阵都取决于机器的机械特性,并考虑了恶性摩擦系数和惯性矩。因此,提出了一些仿真结果,以验证所提出的方法并突出惯性矩和摩擦系数的变化对速度和估计负载转矩的影响。为了验证所提方法的有效性,对与无传感器速度有关的实验结果进行了详尽的阐述。使用用于实验室3 kW感应电动机的数字信号处理器板DSpace DS1104,可以成功地实时实施带有负载扭矩估算功能的完整无传感器ISFOC。 (C)2016 ISA。由Elsevier Ltd.出版。保留所有权利。

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