A New Sensorless MRAS Based on Active Power Calculations for Rotor Position Estimation of a DFIG

G. Marques, D. Sousa
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引用次数: 19

Abstract

A sensorless method for the estimation of the rotor position of the wound-rotor induction machine is described in this paper. The method is based on the MRAS methodology and consists in the comparison of two models for the evaluation of the active power transferred across the air gap: the reference model and the adaptive model. The reference model obtains the power transferred across the air gap using directly available and measured stator variables. The adaptive model obtains the same quantity in function of electromotive forces and rotor currents that are measurable on the rotor position, which is under estimation. The method does not need any information about the stator or rotor flux and can be implemented in the rotor or in the stator reference frames with a hysteresis or with a PI controller. The stability analysis gives an unstable region on the rotor current dq plane. Simulation and experimental results show that the method is appropriate for the vector control of the doubly fed induction machine under the stability region.
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基于有功功率计算的新型无传感器MRAS用于DFIG转子位置估计
本文提出了一种无传感器的绕线转子感应电机转子位置估计方法。该方法以MRAS方法为基础,比较了参考模型和自适应模型两种评估气隙传输有功功率的模型。参考模型通过直接可用的定子变量和测量的定子变量来获得通过气隙传递的功率。自适应模型得到的电动势和转子电流的函数值与转子位置的可测值相同,但对转子位置的估计不足。该方法不需要任何关于定子或转子磁链的信息,并且可以在带有磁滞或PI控制器的转子或定子参考系中实现。稳定性分析给出了转子电流dq平面上的一个不稳定区域。仿真和实验结果表明,该方法适用于双馈感应电机在稳定域下的矢量控制。
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