首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Compensation of mechanical resonances by adaptive feed-forward cancellation for head positioning control system in hard disk drives
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Compensation of mechanical resonances by adaptive feed-forward cancellation for head positioning control system in hard disk drives

机译:通过自适应前馈消除对硬盘驱动器中的磁头定位控制系统进行机械共振补偿

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To increase recording density, a head positioning control system of a hard disk drive (HDD) has to compensate for vibration due to mechanical resonances of the system. In this study, a novel scheme of an adaptive feedforward cancellation (AFC) is proposed to compensate for the vibration due to the mechanical resonances. Compared to a notch filter, which is commonly used to compensate for the vibration, the proposed AFC has the advantage of estimating the amplitude of the vibration from the output signal. In addition, although the proposed AFC can be implemented as a discrete system, the design parameters: frequency, damping ratio, and gain can be set directly in a digital signal processor. The proposed control system was applied to a dual-stage actuator system, which is the mainstream head positioning control system of the current HDDs. The results indicate that the proposed system could compensate for the vibration due to the mechanical resonance.
机译:为了增加记录密度,硬盘驱动器(HDD)的磁头定位控制系统必须补偿由于该系统的机械共振而引起的振动。在这项研究中,提出了一种新的自适应前馈消除(AFC)方案来补偿由于机械共振引起的振动。与通常用于补偿振动的陷波滤波器相比,所提出的AFC具有从输出信号估计振动幅度的优势。另外,尽管所提出的AFC可以实现为分立系统,但是可以直接在数字信号处理器中设置设计参数:频率,阻尼比和增益。所提出的控制系统被应用于双级致动器系统,这是当前硬盘驱动器的主流磁头定位控制系统。结果表明,提出的系统可以补偿由于机械共振引起的振动。

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