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Self-Sensing Actuation for Nanopositioning and Active-Mode Damping in Dual-Stage HDDs

机译:双级硬盘中纳米定位和有源模式阻尼的自感应驱动

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Position sensors other than the R/W heads are not embedded into current hard-disk drives (HDDs) due to cost, resolution, and signal-to-noise ratio (SNR) issues. Moreover, the "optimal" location for placing these sensors is still unknown. In this paper, the Pb-Zr-Ti (PZT) elements in the PZT suspension-based microactuator are used as a secondary actuator and a displacement sensor simultaneously with self-sensing actuation. The proposed displacement estimation circuit produces an estimated PZT microactuator's displacement with high SNR and nanometer resolution comparable to that measured from the laser doppler vibrometer (LDV). A robust active mode damping controller is then designed to damp the PZT microactuator suspension's torsion modes and sway mode, as well as decoupling the HDD dual-stage servo into two distinct loops for individual sensitivity optimization. Our results show attenuation of PZT microactuator's suspension modes by 5 dB and sway mode by 30 dB with low sensitivity. A reduction of up to 20% in 3σ position error signal is also observed.
机译:由于成本,分辨率和信噪比(SNR)问题,R / W磁头以外的位置传感器未嵌入到当前的硬盘驱动器(HDD)中。此外,用于放置这些传感器的“最佳”位置仍然未知。在本文中,基于PZT悬浮液的微致动器中的Pb-Zr-Ti(PZT)元素用作辅助致动器和位移传感器,同时具有自感应致动功能。拟议的位移估计电路产生的估计PZT微致动器的位移具有高SNR和纳米分辨率,可与激光多普勒振动计(LDV)测得的位移相媲美。然后,设计了功能强大的主动模式阻尼控制器,以阻尼PZT微致动器悬架的扭转模式和摇摆模式,以及将HDD双级伺服系统解耦为两个不同的环路,以实现个体灵敏度优化。我们的结果表明,PZT微致动器的悬挂模式衰减了5 dB,摇摆模式衰减了30 dB,灵敏度低。还观察到3σ位置误差信号降低了20%。

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