首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Bidirectional Decision Feedback Modified Viterbi Detection (BD-DFMV) for Shingled Bit-Patterned Magnetic Recording (BPMR) With 2D Sectors and Alternating Track Widths
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Bidirectional Decision Feedback Modified Viterbi Detection (BD-DFMV) for Shingled Bit-Patterned Magnetic Recording (BPMR) With 2D Sectors and Alternating Track Widths

机译:具有二维扇区和交替磁道宽度的带盖位模式磁记录(BPMR)的双向决策反馈修改型维特比检测(BD-DFMV)

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摘要

Shingled bit-patterned media (BPM) recording is a promising candidate to improve the magnetic recording density above 1 Tb/in2 while keeping the conventional writer design. However, shingled magnetic recording (SMR) leads to a narrower track pitch, and thus increased inter-track interference motivating the investigation of array readers and 2-D sectors. In this paper, we investigate SMR on BPM with 2-D sectors at the channel density of 3.71 Tb/in2. Use of 2-D sectors allows the possibility of using either hard or soft information from already detected tracks in that 2-D sector to improve the detection performance on the current track. An important question in this context is whether all tracks in a 2-D sector should be of the same nominal width or if there is a potential benefit to using different widths for adjacent tracks. Based on our investigation, we show that alternating track widths [i.e., one less-trimmed (fat) track followed by one more-trimmed (narrow) track] are beneficial to a bit error rate (BER) perspective. In particular, we propose and investigate the use of a bidirectional decision feedback modified Viterbi (BD-DFMV) detector to improve the BER performance. Our simulations indicate that for a hypothetical 2-D sector with 13 tracks and 5% media noise and at the target BER of 10−2, using alternating track widths and readback with a single reader, the BD-DFMV algorithm can provide about 1.6 dB signal-to-noise ratio (SNR) gain, compared with using the same detection algorithm but on a 2-D sector with uniform track widths. When using a reader array instead of a single reader, this SNR gain improves to about 2.0 dB. The alternating track width structure also appears to provide more robustness to track mis-registration compared with the 2-D uniform track width case.
机译:混合位模式的媒体(BPM)记录是一个有希望的候选方案,可以在保持传统记录器设计的同时将磁记录密度提高到1 Tb / in2以上。但是,带状磁记录(SMR)会导致磁道间距变窄,从而增加磁道间干扰,从而激发了对阵列读取器和二维扇区的研究。在本文中,我们研究了在通道密度为3.71 Tb / in2的二维扇区的BPM上的SMR。使用2D扇区可以使用来自该2D扇区中已检测到的磁道的硬信息或软信息来改善当前磁道的检测性能。在此情况下,一个重要的问题是,二维扇区中的所有轨道是否应具有相同的标称宽度,或者对相邻轨道使用不同的宽度是否有潜在的好处。根据我们的调查,我们发现交替的轨道宽度(即,一条较少修剪的(胖)轨道,然后是一条较多修剪的(窄)轨道)有利于误码率(BER)的观点。特别是,我们提出并研究了双向决策反馈改进型维特比(BD-DFMV)检测器的使用,以提高BER性能。我们的仿真表明,对于假设的二维扇区,具有13条磁道和5%的媒体噪声,并且目标BER为10-2,使用交替的磁道宽度和单个读取器进行回读,BD-DFMV算法可以提供约1.6 dB与使用相同的检测算法相比,但在具有均匀磁道宽度的二维扇区中,信噪比(SNR)增益更高。当使用读取器阵列而不是单个读取器时,此SNR增益提高到约2.0 dB。与2D均匀磁道宽度情况相比,交替磁道宽度结构似乎还提供了更强的磁道对准误差。

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