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Resolution Limits of Timing-Based Servo Schemes in Magnetic Tape Drives

机译:磁带驱动器中基于时序的伺服方案的分辨率极限

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摘要

The resolution limits of tape head lateral position estimates derived from timing-based servo (TBS) patterns preformatted on perpendicularly oriented barium ferrite tape media are investigated. A set of four new TBS patterns with azimuth angles ranging from 15° to 24° but having, otherwise, identical parameters are compared. Measurements of the standard deviation of the closed-loop position-error signal are compared with resolution estimates based on: 1) the noise floor of the power spectral density of the lateral tape motion measured from the servo pattern during open or closed-loop track-following and 2) an analytical lower bound on the mean-squared estimation error, which depends on the servo readback signal shape and the signal-to-noise ratio. All four servo patterns are shown to achieve nanoscale resolution under realistic operating conditions. The 24° pattern was found to provide the highest performance with a position estimation resolution better than 3.8 nm for a single channel, and better than 2.6 nm when the estimates of two channels are combined.
机译:研究了从垂直取向的钡铁氧体磁带介质上预格式化的基于定时的伺服(TBS)模式得出的磁带头横向位置估计的分辨率极限。比较了四个新的TBS模式的集合,这些模式的方位角在15°到24°之间,但是参数相同。将闭环位置误差信号的标准偏差的测量结果与基于以下条件的分辨率估计值进行比较:1)在开环或闭环轨道期间从伺服模式测得的横向磁带运动功率谱密度的本底噪声-其次和2)均方根估计误差的解析下限,该下限取决于伺服回读信号的形状和信噪比。显示了所有四个伺服模式在实际操作条件下均达到纳米级分辨率。发现24°图案可提供最高的性能,单个通道的位置估计分辨率优于3.8 nm,而将两个通道的估计相结合,则分辨率优于2.6 nm。

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