Sensorless control of surface permanent-magnet motor based on model reference adaptive system

M. Ohara, T. Noguchi
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引用次数: 5

Abstract

This paper describes a new method of rotor position and speed estimation of a surface permanent-magnet synchronous motor based on a model reference adaptive system (MRAS). The proposed method features the MRAS in a current control loop to estimate a rotor position and speed only with current sensors. A transient response of the estimated rotor position and speed in the MRAS determines transient behavior of the sensorless control. For this reason, the important point is to investigate a relationship between an actual and the estimated rotor speed. First, this paper proposes a structure of the sensorless control applied in the current control loop. Next, it proves the stability of the proposed method using hyperstability theory, and presents an optimal method of adjusting the transient behavior of the estimated rotor speed to that of the actual rotor speed with nonlinear compensation. Finally, several experimental results show the performance of the proposed method.
基于模型参考自适应系统的表面永磁电机无传感器控制
提出了一种基于模型参考自适应系统(MRAS)的表面永磁同步电机转子位置和转速估计新方法。该方法将MRAS置于电流控制环中,仅通过电流传感器来估计转子的位置和速度。MRAS中估计转子位置和速度的瞬态响应决定了无传感器控制的瞬态行为。因此,重要的一点是研究实际和估计转子转速之间的关系。首先,本文提出了一种应用于电流控制回路的无传感器控制结构。其次,利用超稳定理论证明了所提方法的稳定性,并提出了一种利用非线性补偿将估计转子转速的暂态行为调整为实际转子转速的最优方法。最后,通过实验验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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