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SRM sensorless speed control based on the improved simplified flux method

机译:基于改进简化磁通量方法的SRM无传感器速度控制

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The traditional simplified flux linkage method needs the single phase conduction by turns and current chopping control method as its preconditions. However, the single phase conduction by turns results magnetic coupling between the turn-on and turn-off angle of the system, adversely, realized optimal efficiency or minimize torque ripple in the sensorless speed control system. So the improved simplified flux linkage method was proposed, in which the turn-on angles can be given arbitrary and have no relations with the turn-off angle. The proposed method only needs to fixed turn-off angle and utilize the current chopping control method. So with the proposed method, the position of the turn-off angle can be determined and the speed and rotor position can be estimated. Finally, the experiment platform of SRM sensorless speed control system was built. The simulation and experiment results driving by DSP confirmed the validity of the proposed method.
机译:传统的简化磁链控制方法需要以匝数单相导通和电流斩波控制法为前提。但是,单匝传导会导致系统的开启和关闭角度之间发生磁耦合,不利地,在无传感器速度控制系统中实现了最佳效率或最小化了转矩脉动。因此,提出了一种改进的简化磁链控制方法,该方法可以任意设定导通角,并且与导通角无关。所提出的方法只需要固定断开角并利用电流斩波控制方法即可。因此,利用所提出的方法,可以确定断开角的位置,并且可以估计速度和转子位置。最后,搭建了SRM无传感器调速系统的实验平台。 DSP的仿真和实验结果证实了该方法的有效性。

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