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IDENTIFICATION OF RESONANCE FREQUENCIES IN DUAL-STAGE HARD DISK DRIVES: A PRACTICAL STRATEGY

机译:双级硬盘驱动器中谐振频率的识别:实用策略

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In hard disk drives (HDDs), there exist multiple mechanical resonances whose central frequencies may shift due to the change of environmental conditions such as the temperature. Such slowly varying resonance frequencies, if not handled properly, may degrade the positioning accuracy and even result in the instability of the closed-loop HDD system. Therefore, it is important to identify these resonance frequencies efficiently without interrupting the reading/writing process in HDDs. One main challenge of the frequency identification in a dual-stage HDD lies in the fact that it is a double-input-single-output (DISO) system. The outputs of the voice coil motor (VCM) and the piezoelectric microactuator (PZT) are coupled together. This paper proposes a practical strategy to identify the resonance frequencies in both the VCM and the PZT without disabling the PZT control process. Bandpass filters are utilized to separate the overall position error signal (PES) into several frequency segments based on priorly-known frequency range for each resonance. Two standard parameter adaptation algorithms are studied and discussed. Simulation results validate the effectiveness of proposed identification strategy.
机译:在硬盘驱动器(HDD)中,存在多种机械谐振,其中心频率可能由于环境条件的变化而导致的温度。这种缓慢变化的谐振频率(如果没有正确处理)可能会降低定位精度,甚至导致闭环HDD系统的不稳定性。因此,重要的是要有效地识别这些共振频率而不中断HDD中的读取/写入过程。双级HDD中频率识别的一个主要挑战在于它是双输入单输出(DISO)系统。音圈电机(VCM)和压电微致动器(PZT)的输出在一起。本文提出了一种实际策略,以识别VCM和PZT中的共振频率而不禁用PZT控制过程。带通滤波器用于基于每个谐振的最先前已知的频率范围将整个位置误差信号(PE)分离成若干频率段。研究并讨论了两个标准参数适应算法。仿真结果验证了所提出的识别策略的有效性。

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