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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >DSP-Based Sensorless Speed Control of a Permanent Magnet Synchronous Motor using Sliding Mode Current Observer
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DSP-Based Sensorless Speed Control of a Permanent Magnet Synchronous Motor using Sliding Mode Current Observer

机译:基于DSP的滑模电流观测器对永磁同步电动机的无传感器速度控制

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In this paper, experimental results of 3-phase permanent magnet synchronous motor (PMSM) sensorless speed control are presented. To estimate the rotor position, a sliding mode current observer (SMCO) was implemented. This observer estimates the back emfs of the motor in the stationary reference frame using only the measured voltages and currents of the motor. These emfs were utilized to obtain the rotor position. The speed of the motor was calculated by differentiating the rotor position angle. The stability of the proposed SMCO was verified using Lyapunov method to determine the observer gain. The saturation function was adopted in order to reduce the chattering phenomenon caused by the SMCO. A vector control method was employed to achieve the sensorless drive system. The control application was developed in C/C++ language and implemented using the Texas Instruments TMS320LF2812 digital signal processor (DSP). This new processor enables intelligent control for motors. We used to test the drive the MCK2812 which is a professional development kit available from Technosoft Company. The theoretical finding is validated with experimental results that show the effectiveness of the real-time implementation.
机译:本文给出了三相永磁同步电动机(PMSM)无传感器速度控制的实验结果。为了估算转子位置,实施了滑模电流观测器(SMCO)。该观察者仅使用测得的电动机电压和电流来估计静止参考系中电动机的反电动势。这些电动势被用来获得转子位置。通过微分转子位置角来计算电动机的速度。使用Lyapunov方法验证了拟议的SMCO的稳定性,以确定观察者增益。采用饱和功能是为了减少由SMCO引起的颤动现象。采用矢量控制方法来实现无传感器驱动系统。该控制应用程序是用C / C ++语言开发的,并使用德州仪器(TI)TMS320LF2812数字信号处理器(DSP)来实现。这种新型处理器可实现对电动机的智能控制。我们曾经测试过驱动器MCK2812,它是Technosoft公司提供的专业开发套件。通过实验结果验证了理论发现,实验结果表明了实时实施的有效性。

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