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An Iterative TMR Mitigation Method Based on Readback Signal for Bit-Patterned Media Recording

机译:基于回读信号的迭代TMR缓解方法,用于位模式媒体记录

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摘要

Off-track condition or track misregistration (TMR) is one of the most significant problems in the extremely high-density bit-patterned media recording (BPMR) system, since a track pitch becomes narrower. Typically, the TMR can be detected and handled by a servo system; however, it requires some special data to be inserted in the tracks so as to estimate the amount of head offset. Nonetheless, this paper proposes an iterative TMR mitigation method for BPMR systems based on the readback signals. First, we design several pairs of the 2-D asymmetric target and its corresponding 2-D equalizer that match the BPMR channel for each TMR level. Then, we exploit the three adjacent data tracks obtained from the low-density parity-check decoders to estimate the TMR level. Last, a pair of the 2-D asymmetric target and its corresponding 2-D equalizer that is best fit to the estimated TMR level will be used to alleviate the TMR effect in the readback signal for the next global iteration. Simulation results indicate that the proposed system can effectively estimate the TMR level and performs better than the conventional system without a TMR mitigation method, especially when the TMR level is high and/or the position jitter is large.
机译:由于磁道间距变窄,所以在极高密度的位模式的媒体记录(BPMR)系统中,磁道偏离状态或磁道未对准(TMR)是最重要的问题之一。通常,TMR可以由伺服系统检测和处理。但是,它需要在轨道中插入一些特殊数据,以估计磁头偏移量。尽管如此,本文还是基于回读信号提出了一种针对BPMR系统的迭代TMR缓解方法。首先,我们设计几对2-D非对称目标及其对应的2-D均衡器,它们与每个TMR级别的BPMR通道匹配。然后,我们利用从低密度奇偶校验解码器获得的三个相邻数据磁道来估计TMR电平。最后,一对最适合估计的TMR水平的2-D非对称目标及其对应的2-D均衡器将用于减轻回读信号中TMR的影响,以进行下一个全局迭代。仿真结果表明,所提出的系统可以有效地估计TMR电平,并且比没有TMR缓解方法的常规系统性能更好,特别是在TMR电平高和/或位置抖动大的情况下。

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