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Stroke Oriented Controller Design for Dual-stage Actuator of Head Positioning Control System in Hard Disk Drives

机译:硬盘驱动器中头定位控制系统双级执行器的行程导向控制器设计

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In this research, we have proposed a stroke-oriented controller design for head positioning control system of hard disk drives (HDDs). A dual-stage actuator composed of a voice coil motor and a piezo actuator is widely used in the head positioning system. The decoupling filter design which decouples the interaction of each the actuator is a representative controller design for the dual-stage actuator. However, it is necessary for the feedback loop related to the piezo actuator to increase the gain in the low frequency range due to design constraints. It can lead to increase a required stroke of the piezo actuator. The proposed controller design can decrease the required stroke of the piezo actuator by utilizing the interaction of each the actuator. To confirm the effectiveness the proposed controller design method, a simulation was performed to compensate for external vibrations. As the results, it was confirmed that the required stroke of the piezo actuator can be reduced by about 65%, while the stability and positioning accuracy of the head positioning control system is almost same as the that of decoupling filter design.
机译:在本研究中,我们提出了一种用于硬盘驱动器(HDD)的头部定位控制系统的行程导向的控制器设计。由音圈电机和压电致动器组成的双级致动器广泛用于头部定位系统。去耦滤波器设计,其致动器与双级致动器的代表性控制器设计。然而,由于设计约束,与压电致动器相关的反馈环路有必要增加低频范围内的增益。它可以导致压电执行器的所需行程。所提出的控制器设计可以通过利用每个致动器的相互作用来减小压电致动器所需的行程。为了确认所提出的控制器设计方法的有效性,执行模拟以补偿外部振动。结果,确认压电致动器的所需行程可以减少约65%,而头部定位控制系统的稳定性和定位精度几乎与解耦滤波器设计的稳定性和定位精度。

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