实现低碳社会的高效同步磁阻电机低速转子位置无传感器估计

Kato Kosuke, Kato Shinji, Tomita Mutuwo
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引用次数: 0

摘要

全球变暖是一个严重的问题,减少二氧化碳的排放,即实现低碳社会是人们所希望的。因此,在工业领域广泛使用的传统伺服电机被同步磁阻电机(SynRMs)所取代,这种同步磁阻电机在没有磁体的情况下效率也很高。转子位置信息是作为伺服电机使用的必要条件,目前已经提出了几种无传感器转子位置估计方法。然而,这些方法在低速时有困难,因为估计转子位置所需的电压信号非常小。提出了一种利用扰动观测器计算高频电压和高频电流的高频扩展电动势(EEMF)位置估计方法。仿真结果表明,该方法是非常有用的。本文提出了高频电流的反馈控制方法,在高频电流很小的情况下也能估计出转子的位置。实验结果表明,利用新方法估计的位置()进行坐标变换,可以实现低速驱动电机。
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Rotor Position Sensorless Estimation of High Efficiency Synchronous Reluctance Motor at Low Speed for Realization of Low-Carbon Society
The global warming is serious problem, and the reduction of CO2 emissions, namely, the realization of low-carbon society is desired. Therefore, it is desired that the conventional servomotors widely used in the industrial community are replaced with the synchronous reluctance motors (SynRMs) whose efficiency is high even though they have no magnets. The rotor position information is necessary to use SynRMs as servomotors, and several rotor position sensorless estimation methods have been proposed. These methods, however, have difficulties at low speed when the voltage signal necessary to estimate rotor position is very small. The authors have proposed a new position estimation method using high-frequency extended e.m.f. (EEMF) in which high-frequency voltage and current are calculated using a disturbance observer. Simulations have shown the new method to be very useful. In this paper, the feedback control of the high-frequency currents is proposed for becoming able to estimate the rotor position even though the high-frequency currents are very small when the checking of the new proposed method by experiments. And the experimental results show that it is possible to drive the motor at low speeds with the coordinate transformation used the position   estimated by the new proposed method.
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