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Characterization of lateral tape motion and disturbances in the servo position error signal of a linear tape drive

机译:磁带横向运动特性和线性磁带驱动器伺服位置误差信号中的干扰

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摘要

Lateral tape displacement in a tape drive is believed to be one of the critical limiting factors in achieving high track density in tape storage media. For improving track density, servo control systems can be designed on the basis of information from a position error signal to improve the track following capabilities in a tape drive. In this paper, we consider the characterization of lateral tape motion and additional disturbances that contribute to the position error signal. From a commercially available tape drive, the position' error signal is measured electronically and lateral tape motion of the magnetic tape is measured using an optical edge sensor. This information is used to characterize the filtering effects of the disturbance rejection transfer function that determines the lateral tape potion and disturbances present in the position error signal. The disturbance rejection transfer function is characterized by two different methods. In the first method, we model the disturbance rejection transfer function as a simple high pass filter. Using lateral motion measurements as an input to this system, the position error signal is simulated and compared with the measured position error signal. In the second method, system identification methods are used to estimate a detailed high order filter that models the essential comp9nents of the disturbance rejection transfer function. Using these models, the position error signal is simulated and predicted and the effects of additional disturbances such as the servo track variability can be separated from the effects of the lateral tape motion. It is shown that the position error signal exhibits contributions from lateral tape motion and additional disturbances that differ significantly at higher frequencies.
机译:磁带驱动器中的横向磁带移位被认为是在磁带存储介质中实现高磁道密度的关键限制因素之一。为了提高磁道密度,可以基于来自位置误差信号的信息来设计伺服控制系统,以提高磁带机中的磁道跟踪能力。在本文中,我们考虑了横向磁带运动的特征以及对位置误差信号有贡献的其他干扰。从市售的磁带机中,以电子方式测量位置的误差信号,并使用光学边缘传感器测量磁带的横向磁带运动。该信息用于表征干扰抑制传递函数的滤波效果,该函数确定横向磁带部分和位置误差信号中存在的干扰。干扰抑制传递函数的特征在于两种不同的方法。在第一种方法中,我们将干扰抑制传递函数建模为简单的高通滤波器。使用横向运动测量作为该系统的输入,可以模拟位置误差信号并将其与测得的位置误差信号进行比较。在第二种方法中,系统识别方法用于估计详细的高阶滤波器,该滤波器对干扰抑制传递函数的基本成分建模。使用这些模型,可以模拟和预测位置误差信号,并且可以将其他干扰(例如伺服磁道可变性)的影响与磁带横向运动的影响分开。结果表明,位置误差信号表现出磁带横向运动和在较高频率下明显不同的附加干扰的影响。

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