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Relationship between flying-height and tracking-position control with thermal actuators for magnetic heads in HDDs

机译:HDD磁头的飞行高度与热致动器的跟踪位置控制之间的关系

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Abstract: To increase a servo bandwidth of a head-positioning control system in hard disk drives, a triple-stage actuator system was developed with thermal actuators. This positioning control system consists of a voice coil motor (VCM), piezoelectric (PZT) actuators, and a thermal-positioning actuator. The thermal-positioning actuator is good for control in high frequency range because it has little negative impact caused by mechanical resonances. However, the thermal-positioning actuator causes flying-height fluctuations that may lead to worsening of the magnetic recording performances. To overcome this issue, this paper presents a control system that employs the feedforward control scheme on a thermal flying-height control system. Simulation results showed that the proposed method was able to compensate for the flying-height fluctuations during the track-following control by about 87 %.
机译:摘要:为了增加硬盘驱动器中磁头定位控制系统的伺服带宽,开发了具有热执行器的三级执行器系统。该定位控制系统由音圈电机(VCM),压电(PZT)执行器和热定位执行器组成。热定位致动器对高频范围内的控制非常有用,因为它几乎没有由机械共振引起的负面影响。但是,热定位致动器会引起飞行高度波动,这可能导致磁记录性能变差。为了克服这个问题,本文提出了一种在热飞行高度控制系统上采用前馈控制方案的控制系统。仿真结果表明,所提出的方法能够补偿跟踪控制过程中的飞行高度波动约87%。

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