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Implementation of high-performance sensorless interior permanent-magnet synchronous motor control systems using a high-frequency injection technique

机译:使用高频注入技术实现高性能的无传感器内部永磁同步电动机控制系统

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摘要

This study proposes a high-performance sensorless interior permanent-magnet synchronous motor control system using a high-frequency injection technique. A new estimation method that uses both the high-frequency d-axis current and q-axis current to estimate the rotor position is investigated. By using the proposed method, the hypothesis-synchronisation signal used in the conventional high-frequency injection method can be eliminated. A 1.25 kHz, 15 V, sinusoidal waveform voltage is injected into the d-axis synchronous frame of the motor and then the high-frequency d-axis and q-axis currents can be measured to determine the rotor position of the motor. In addition, a new compensation method is developed to reduce the estimation position error because of the mutual inductance and saturation effect of the motor. By using this new method, the estimated rotor-position error is within u000b1;2 electrical degrees. A digital signal processor, TMS-320-F2812, is used as the estimating and control centre. The experimental results show that the proposed method can be applied in both a sensorless speed control system and a sensorless position control system. The sensorless speed control system has fast response, good load disturbance response and good tracking response.
机译:本研究提出了一种使用高频注入技术的高性能无传感器内部永磁同步电动机控制系统。研究了一种使用高频d轴电流和q轴电流来估算转子位置的新估算方法。通过使用所提出的方法,可以消除常规高频注入方法中使用的假设同步信号。将1.25 kHz,15 V正弦波形电压注入到电动机的d轴同步框架中,然后可以测量高频d轴和q轴电流以确定电动机的转子位置。另外,由于电动机的互感和饱和效应,开发了一种新的补偿方法来减少估计位置误差。通过使用这种新方法,估计的转子位置误差在u000b1; 2电度以内。数字信号处理器TMS-320-F2812用作估算和控制中心。实验结果表明,该方法可同时应用于无传感器速度控制系统和无传感器位置控制系统中。无传感器速度控制系统具有快速响应,良好的负载干扰响应和良好的跟踪响应。

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