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Design of Robust H∞ Controller based on Nonlinear Observer for Sensorless PMSM using LMIs

机译:基于非线性观测器的无传感器PMSM使用LMIS的鲁棒H∞控制器设计

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Permanent magnet synchronous motors (PMSM) are extensively used in industry due to their high efficiency, high power density, reliable performance, and simple structure. One of the problems in controlling these motors is the requirement of accurate information of their speed and position. Recently, due to the problems related to the speed sensors, the estimated values are used instead of measurements. Also, considering the presence of uncertainties in model parameters and load torque, velocity tracking performance has deteriorated in the previous methods. In this paper, a nonlinear observer-based robust control system has been designed using H methods to control PMSM without speed sensors. The stability of the proposed method has been proven using the Lyapunov theorem and the stability conditions have been written as linear matrix inequalities (LMI) to obtain coefficients. The simulation results show the proper tracking of arbitrary speeds with variations of load torque, motor parameters, and reference speed.
机译:由于其高效率,高功率密度,可靠的性能和简单的结构,永磁同步电动机(PMSM)广泛用于工业中。控制这些电机的问题之一是要求其速度和位置的准确信息。最近,由于与速度传感器相关的问题,使用估计值代替测量。此外,考虑到在模型参数和负载扭矩中的不确定性的存在,速度跟踪性能在先前的方法中劣化。在本文中,使用H设计了非线性观察者的鲁棒控制系统 无速度传感器控制PMSM的方法。已经使用Lyapunov定理证明了所提出的方法的稳定性,并且稳定条件已被写为线性矩阵不等式(LMI)以获得系数。仿真结果显示了具有负载扭矩,电动机参数和参考速度的变形的任意速度的正确跟踪。

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