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Sensorless Speed Control of Nonsalient Permanent-Magnet Synchronous Motor Using Rotor-Position-Tracking PI Controller

机译:基于转子位置跟踪PI控制器的非突出永磁同步电动机的无传感器速度控制

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摘要

This paper presents a new velocity estimation strategy of a nonsalient permanent-magnet synchronous motor (PMSM) drive without a high-frequency signal injection or special pulsewidth-modulation (PWM) pattern. This approach is based on the d-axis current regulator output voltage of the drive system that has the information of rotor position error. Rotor velocity can be estimated through a rotor-position-tracking proportional-integral (PI) controller that controls the position error to zero. For zero and low-speed operation, the PI controller gains of rotor position tracking controller have a variable structure according to the estimated rotor velocity. In order to boost the bandwidth of the PI controller around zero speed, a loop recovery technique is applied to the control system. The proposed method only requires the flux linkage of the permanent magnet and is insensitive to parameter estimation error and variation. The designers can easily determine the possible operating range with a desired bandwidth and perform vector control even at low speeds. The experimental results show the satisfactory operation of the proposed sensorless algorithm under rated load conditions.
机译:本文提出了一种新的非凸极永磁同步电动机(PMSM)驱动器的速度估计策略,该驱动器无需高频信号注入或特殊的脉宽调制(PWM)模式。该方法基于具有转子位置误差信息的驱动系统的d轴电流调节器输出电压。可以通过将位置误差控制为零的转子位置跟踪比例积分(PI)控制器来估算转子速度。对于零速和低速运行,转子位置跟踪控制器的PI控制器增益根据估算的转子速度具有可变的结构。为了将PI控制器的带宽提高到零速附近,将环路恢复技术应用于控制系统。所提出的方法仅需要永磁体的磁链,并且对参数估计误差和变化不敏感。设计人员可以轻松确定所需带宽的可能工作范围,甚至在低速时也可以执行矢量控制。实验结果表明,所提出的无传感器算法在额定负载条件下运行良好。

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