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Identification of the secondary actuator dynamics at frequencies beyond the Nyquist Rate in Dual-Stage Actuator Hard Disk Drive systems

机译:在双级执行器硬盘驱动器系统中,以超过奈奎斯特速率的频率识别次级执行器动力学

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摘要

In Hard Disk Drive (HDD) head positioning control systems, the system output can be observed only at fixed finite time intervals. Identification of the plant dynamics embedded in such an inherently sampled-data system requires special considerations to avoid the aliasing effect caused by the sampling operation. In this paper, non-parametric algorithms to identify the secondary actuator dynamics in a Dual-Stage Actuator HDD system are investigated. Identification methods with continuous-time and discrete-time excitation input are proposed. In the discrete-time method, a multirate digital-analogue converter and multirate filters are employed to reduce the aliasing effect. Numerical simulation and experimental results are presented to show the effectiveness of the proposed methods.
机译:在硬盘驱动器(HDD)磁头定位控制系统中,只能以固定的有限时间间隔观察系统输出。识别嵌入在这种固有采样数据系统中的工厂动态需要特殊考虑,以避免采样操作引起的混叠效应。在本文中,研究了用于确定双级执行器HDD系统中次级执行器动力学的非参数算法。提出了具有连续时间和离散时间激励输入的辨识方法。在离散时间方法中,采用了多速率数字模拟转换器和多速率滤波器来减少混叠效应。数值仿真和实验结果表明了该方法的有效性。

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