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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Two-degree-of-freedom control scheme for flying-height and tracking-position controls with thermal actuators in HDDs
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Two-degree-of-freedom control scheme for flying-height and tracking-position controls with thermal actuators in HDDs

机译:HDD中带有热执行器的飞行高度和跟踪位置控制的两自由度控制方案

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摘要

To improve positioning accuracy of a magnetic head in hard disk drives (HDDs), a triple-stage-actuator system was proposed with a thermal positioning actuator for a magnetic head positioning system. This positioning system has three types of actuators: a voice coil motor (VCM), piezoelectric (PZT) actuators, and the thermal positioning actuator. In this system, a magnetic head has a heater located in a horizontal direction of read/write elements as the thermal positioning actuator. By using this structure, the control system can move the position of read/write elements of the magnetic head in a horizontal direction with thermal expansion induced by the heater with an electric current. The thermal actuator systems have simple characteristics without mechanical resonant modes even in a high frequency range. This means that the thermal actuator is good for positioning control in high frequency range. As a result, the triple-stage-actuator system enable us to improve the positioning accuracy during a track-following control from conventional dual-stage-actuator systems. However, the thermal positioning actuator causes flying height fluctuations of the magnetic head that could lead to fall of magnetic recording performances. In HDDs, the magnetic head has another heater located in a vertical direction of read/write elements in order to control flying height of the read/write elements. This control system is called thermal flying height control system. In the previous study, we can compensate for the flying-height fluctuations by using a feedforward control scheme of the TFC system. However, the feedforward control has little robustness against the plant perturbations. To address this issue, this paper employs a two-degree-of-freedom(TDOF) control scheme for the coordinated control with the TPC and the TFC systems. By using proposed TDOF method, we can compensate for the flying-height fluctuations against the plant perturbations. Simulation results showed that the proposed method is able to improve robust performance against the plant perturbations.
机译:为了提高硬盘驱动器(HDD)中磁头的定位精度,提出了一种三级致动器系统,该系统具有用于磁头定位系统的热定位致动器。该定位系统具有三种类型的致动器:音圈电动机(VCM),压电(PZT)致动器和热定位致动器。在该系统中,磁头具有位于读/写元件的水平方向上的加热器作为热定位致动器。通过使用这种结构,控制系统可以利用电流通过加热器引起的热膨胀在水平方向上移动磁头的读取/写入元件的位置。热执行器系统具有简单的特性,即使在高频范围内也没有机械共振模式。这意味着热执行器非常适合在高频范围内进行定位控制。结果,三级致动器系统使我们能够在传统双级致动器系统的跟踪控制过程中提高定位精度。然而,热定位致动器引起磁头的飞行高度波动,这可能导致磁记录性能下降。在HDD中,磁头在读/写元件的垂直方向上具有另一个加热器,以控制读/写元件的飞行高度。该控制系统称为热飞行高度控制系统。在先前的研究中,我们可以通过使用TFC系统的前馈控制方案来补偿飞行高度波动。但是,前馈控制对植物干扰几乎没有鲁棒性。为了解决这个问题,本文采用了两自由度(TDOF)控制方案与TPC和TFC系统进行协调控制。通过使用提出的TDOF方法,我们可以补偿飞行高度波动对植物扰动的影响。仿真结果表明,所提出的方法能够提高抗植物扰动的鲁棒性能。

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