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首页> 外文期刊>International Journal of Control, Automation, and Systems >Discrete time adaptive controller for suppression of resonance in hard disk drive servo system
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Discrete time adaptive controller for suppression of resonance in hard disk drive servo system

机译:离散时间自适应控制器,用于抑制硬盘伺服系统中的共振

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摘要

Mechanical resonant modes of the actuator severely impede the efforts in achieving high precision in head positioning servo system of hard disk drives (HDD). Hence it is important that these modes be properly compensated. The conventional approach is to use a notch filter in cascade with the nominal controller, which works well if the resonant frequencies are known and do not vary during operation. However, in reality, frequency and damping ratio of the resonant modes vary in mass-produced systems. They also get changed over time due to wear and tear. As a result, auto-tuning or adaptation of the notch filters is required to maintain the performance at the same level. In this paper, a discrete time adaptive controller is presented in a simple and yet efficient way to suppress the effects of resonant modes. Effectiveness of the proposed compensator is demonstrated through simulation and experiments by implementing the compensator for a Voice Coil Motor (VCM) actuator used in HDD.
机译:致动器的机械共振模式严重阻碍了在硬盘驱动器(HDD)的磁头定位伺服系统中实现高精度的努力。因此,重要的是要适当地补偿这些模式。常规方法是使用陷波滤波器与标称控制器级联,如果已知谐振频率并且在运行期间不发生变化,则陷波滤波器会很好地工作。然而,实际上,在批量生产的系统中,谐振模的频率和阻尼比是变化的。随着时间的流逝,它们也会由于磨损而发生变化。因此,需要对陷波滤波器进行自动调整或调整,以将性能保持在同一水平。在本文中,以简单而有效的方式提出了一种离散时间自适应控制器,以抑制谐振模式的影响。通过为HDD中使用的音圈电机(VCM)执行器实施补偿器,通过仿真和实验证明了所提出的补偿器的有效性。

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