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首页> 外文期刊>Magnetics, IEEE Transactions on >Active Control of Flow-Induced Vibrations on Slider in Hard Disk Drives by Suppressing Pressure Fluctuations With Virtual Sensing
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Active Control of Flow-Induced Vibrations on Slider in Hard Disk Drives by Suppressing Pressure Fluctuations With Virtual Sensing

机译:通过虚拟感应抑制压力波动,主动控制硬盘驱动器中的滑块上的流致振动

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摘要

This paper presents numerical simulations on a feedback active control strategy for flow-induced off-track vibration of a head gimbals assembly (HGA) bearing a slider in hard disk drives (HDDs). In the proposed active control strategy, a physical pressure sensor is assumed on the HDD cover to detect the pressure fluctuations and a pressure actuator is on the inner surface of the HDD cover to actuate feedback acoustic pressures to suppress pressure fluctuations in airflow turbulence around the HGA. A virtual sensing method is employed to enable the system feedback signal changeable from the physical pressure sensor to specific “virtual pressure sensors” closely around the HGA. The performance of the proposed active control strategy has been numerically examined based on a turbulence model of a 2-D channel flow with large eddy simulation. The results show that successful active control on the HGA off-track vibration can be achieved if the feedback signal is configured by virtual sensing to minimize the pressure fluctuations at specific positions closely around the HGA. It is also shown that the wake zone of the HGA is a typical virtual sensing position for pressure fluctuations in the feedback control system in order to achieve suppression on the HGA off-track vibration.
机译:本文提出了一种反馈主动控制策略的数值模拟,该策略用于在硬盘驱动器(HDD)中带有滑块的磁头万向架组件(HGA)的流动引起的磁道偏离振动。在提出的主动控制策略中,在硬盘驱动器盖上假设有一个物理压力传感器以检测压力波动,而在硬盘驱动器盖的内表面上设有压力致动器以驱动反馈声压以抑制HGA周围气流湍流的压力波动。 。虚拟感测方法用于使系统反馈信号可以从物理压力传感器更改为紧靠HGA的特定“虚拟压力传感器”。基于具有大涡流仿真的二维通道流的湍流模型,对所提出的主动控制策略的性能进行了数值检验。结果表明,如果通过虚拟感测配置反馈信号以最小化HGA周围特定位置的压力波动,则可以成功地成功控制HGA磁道偏离。还表明,HGA的尾流区是反馈控制系统中压力波动的典型虚拟感应位置,以实现对HGA离轨振动的抑制。

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