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Reduction of torque ripple and mechanical vibration of spindle motors in hard-disk drives using a sinusoidal driver

机译:使用正弦驱动器减少硬盘驱动器中主轴电机的转矩脉动和机械振动

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摘要

Mechanical vibration and acoustic noise are major obstacles in the development of high-density and high-spindle-speed hard disk drives. Torque ripple caused by the electrical driver is the main source of vibration and noise. This paper proposes a novel driver for spindle motors in hard disk drives based on the principle of position sensorless vector control. To reduce torque ripple, the proposed driver feeds the spindle motor in sinusoidal driving mode by which the sinusoidal current of the motor can be obtained. Experimental results of the proposed driver demonstrate the better driving performance in startup condition and fine sinusoidal current in steady state. Vibration testing shows significant improvement in the attenuation of vibration: the dominant vibration modes can be reduced to one tenth compared to that of a conventional driver. In addition, the mechanism of inducing torque ripple from time-harmonic currents is analyzed and the relationship between induced torque ripple and exhibited vibration modes is examined.
机译:机械振动和声音噪声是高密度和高主轴速度硬盘驱动器开发中的主要障碍。电驱动器引起的转矩波动是振动和噪声的主要来源。基于无位置传感器矢量控制原理,本文提出了一种新型的硬盘驱动器主轴电机驱动器。为了减少转矩波动,建议的驱动器以正弦驱动模式向主轴电机供电,通过该模式可以获取电机的正弦电流。提出的驱动器的实验结果表明,在启动条件下具有更好的驱动性能,并且在稳态下具有良好的正弦电流。振动测试显示出振动衰减方面的显着改善:与传统驱动器相比,主要的振动模式可以减少到十分之一。此外,分析了由时谐波电流引起的转矩脉动的机理,并研究了所产生的转矩脉动与振动模式之间的关系。

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