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A Smooth and Stable Open-Loop I-F Control for a Surface Mount PMSM Drive by Ensuring Controlled Starting Torque

机译:通过确保受控的启动扭矩,对表面安装PMSM驱动器进行平滑稳定的开环I-F控制

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The back-emf based sensorless vector control method for a surface mount permanent magnet synchronous motor (SMPMSM)provides sufficiently good performance in medium and high speed range with simple control structure. Since back-emf based sensorless control is ineffective in low speed range, I-f open loop method is used for starting and a change over to sensorless control is performed. However, loss of synchronism may occur if the frequency ramp rate of I-f control is chosen arbitrarily. In this paper, a controller is proposed to dynamically adjust the slope of frequency ramp in the ramp-up interval, which works in conjunction with the conventional I-f control. The controller controls the total torque demand below the torque capability of the motor by adjusting the frequency slope. To overcome the inherent mid-frequency instability of I-f control, a reference speed modulator is included in the control. Stable starting of a 25kW PMSM drive with I-f control using the proposed method is validated with experimental results.
机译:表面安装永磁体同步电机(SMPMSM)的基于反态的无传感器矢量控制方法在中高速范围内提供了足够良好的性能,具有简单的控制结构。由于基于后电动势的无传感器控制在低速范围内无效,因此I-F开环方法用于开始,并且执行变换到无传感器控制。然而,如果任意选择I-F控制的频率斜率速率,则可能发生同步丢失。在本文中,提出了一种控制器,用于动态调节斜坡间隔中的频率斜坡的斜率,其与传统的I-F控制结合起作用。通过调节频率斜率,控制器通过调整频率斜率来控制低于电动机的扭矩能力的总扭矩需求。为了克服I-F控制的固有中频不稳定性,控制中包括参考速度调制器。使用所提出的方法使用所提出的方法进行I-F控制的25kW PMSM驱动器的稳定启动进行了实验结果。

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