Head positioning control system design based on dynamic characteristic of rolling friction in HDDs

M. Kawafuku, M. Mizoguchi, M. Iwasaki
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引用次数: 2

Abstract

This paper describe a head positioning controller in HDDs based on a dynamic characteristic of rolling friction. In the control system in HDDs, the head assembly was influenced the effect of several disturbances, e.g, RRO, flutter vibration, force disturbance, and so on. At the force disturbance, it caused by wind force, external shock, tension force of Flexible Printed Circuit, and rolling friction around pivot bearing. In these force disturbance, the influence of the rolling friction is large at positioning in minute area. Therefore, controlling the rolling friction is important at short span seeking motion for the high performance trajectory. In this paper, we present a measuring method for the dynamic rolling friction that considering the inertia force of magnetic head. And we propose a 2 DOF controller design to suppress the effect of the dynamic rolling friction. The effects of the proposal method and controller performance are verified by experimental results.
基于hdd滚动摩擦动态特性的头部定位控制系统设计
介绍了一种基于滚动摩擦动态特性的硬盘磁头定位控制器。在hdd控制系统中,机头总成受到RRO、颤振、力扰动等多种干扰的影响。在力扰动时,它是由风力、外部冲击、柔性印刷电路的张力和围绕枢轴轴承的滚动摩擦引起的。在这些力扰动中,滚动摩擦对定位小区域的影响较大。因此,控制滚动摩擦对于实现高性能轨迹的短间距寻径运动具有重要意义。本文提出了一种考虑磁头惯性力的动态滚动摩擦测量方法。提出了一种抑制动态滚动摩擦影响的2自由度控制器设计。实验结果验证了所提方法的效果和控制器的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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