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Analytical Expressions for the Readback Signal of Timing-Based Servo Schemes

机译:基于时序的伺服方案回读信号的解析表达式

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摘要

Timing-based servo (TBS) is a powerful technology widely used in state-of-the-art tape systems for track following. To optimize TBS systems for future operating points with aggressive track-density scaling, an accurate model is needed to characterize how the servo read head geometry, servo format parameters, and magnetic media properties affect the readback signal. In this paper, we derive new analytical closed-form expressions for the readback signal of shielded magneto-resistive (MR) heads scanning over the magnetic transitions of TBS patterns. The expressions, derived via the reciprocity principle, are applicable to arctan-shaped transitions between arbitrarily magnetized areas of a thin-film magnetic medium and are given in the displacement and wavevector domain. We apply these new expressions to analyze isolated transitions as well as multi-transition TBS patterns on longitudinal, non-oriented or perpendicular media. Comparison between experimentally captured servo readback signals and the analytical expressions show an excellent match. By adding electronics and transition jitter noise, the readback signal expressions can be extended to a servo channel model suitable for TBS performance prediction by means of Monte Carlo simulations and/or bounds on the variance of the position-error signal.
机译:基于定时的伺服(TBS)是一项功能强大的技术,广泛用于跟踪轨道的最新磁带系统中。为了通过激进的磁道密度缩放优化TBS系统以适应未来的工作点,需要一个精确的模型来表征伺服读取头的几何形状,伺服格式参数和磁介质属性如何影响回读信号。在本文中,我们针对在TBS图案的磁跃迁上扫描的屏蔽磁阻(MR)磁头的回读信号,得出了新的解析闭合形式表达式。通过互易原理导出的表达式适用于薄膜磁介质任意磁化区域之间的反正弦形过渡,并在位移和波矢域中给出。我们应用这些新表达式来分析纵向,无方向或垂直媒体上的孤立过渡以及多过渡TBS模式。实验捕获的伺服回读信号与解析表达式之间的比较显示出极好的匹配。通过添加电子器件和跃迁抖动噪声,可以通过蒙特卡罗模拟和/或位置误差信号方差的界限,将回读信号表达式扩展到适用于TBS性能预测的伺服通道模型。

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