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A tracking motion approach for a piezotube actuator in a disk drive subject to disk deformation and disturbance

机译:磁盘驱动器中易受磁盘变形和干扰的压电执行器的跟踪运动方法

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This study investigates the disk drive dynamics when a disk surface deforms and a disturbance force is exerted on a pickup head in near-field optical disk drives. Serving as an actuator, a piezotube is connected to the suspension of the pickup head. A model is constructed to investigate the pickup head dynamics. Equations of motion for focusing and track-following are derived in the presence of disk surface deformation and the disturbance force on the pickup head. A proportional and derivative control method is carried out in numerical examples. There exists a critical proportional gain that influences the number of resonances in the frequency spectra. Numerical results show that there is only one resonance or none in the frequency spectra when the proportional gain is larger than the critical proportional gain. Hence, the tracking error ratio becomes smaller than one within a wide frequency range, if few resonances appear in the frequency spectra.
机译:这项研究研究了当磁盘表面变形并且在近场光盘驱动器中的拾取头上施加了干扰力时的磁盘驱动器动力学。用作执行器的压电管连接到拾音头的悬架。构建一个模型来研究皮卡头的动力学特性。在存在磁盘表面变形和拾取头上的干扰力的情况下,得出聚焦和跟踪跟随的运动方程。在数值示例中执行比例和微分控制方法。存在一个关键的比例增益,该比例增益会影响频谱中的谐振次数。数值结果表明,当比例增益大于临界比例增益时,频谱中只有一种共振,或者没有共振。因此,如果在频谱中出现很少的谐振,则跟踪误差率在宽的频率范围内变得小于1。

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