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Adaptive feedforward cancellation with damping control system in head positioning systems of HDDs

机译:HDDS头部定位系统中具有阻尼控制系统的自适应馈电取消

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摘要

Adaptive feedforward cancellation (AFC) with a damping control system has been developed to improve the head-positioning accuracy in hard disk drives (HDDs). There are various disturbances that reduce the head-positioning accuracy in a head-positioning system. The control system must compensate for these disturbances to improve the head-positioning accuracy. In addition, the robustness of the control system should be considered to realize stable operation for a mass-produced product such as HDDs. The proposed AFC updates a forgetting factor that corresponds to a damping factor in the adaptive algorithm to minimize the position error signal in real-time, and it can optimize the characteristics of the control system according to individual variations. We verified effectiveness of the proposed AFC in the HDD benchmark model. It was confirmed that the proposed AFC can adequately compensate for the vibration caused by flow-induced vibration defined in the benchmark model.
机译:已经开发了具有阻尼控制系统的自适应前馈取消(AFC)以提高硬盘驱动器(HDD)中的头部定位精度。 存在各种干扰,从而降低了头定位系统中的头部定位精度。 控制系统必须补偿这些干扰以提高头部定位精度。 此外,应考虑控制系统的稳健性以实现诸如HDD的大规模生产的产品的稳定运行。 所提出的AFC更新了对应于自适应算法中的阻尼因子的遗忘因子,以实时地最小化位置误差信号,并且它可以根据各个变型优化控制系统的特性。 我们在HDD基准模型中验证了提出的AFC的有效性。 已经证实,所提出的AFC可以充分补偿由基准模型中定义的流动诱导的振动引起的振动。

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