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High-Efficient Adaptive Modulation for PWM-Based Multi-Level Perpendicular Magnetic Recording on Insufficient Resolution Channel

机译:分辨率不足的通道上基于PWM的多级垂直磁记录的高效自适应调制

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摘要

In this paper, we propose a high-efficient constrained adaptive 5-binary to 4-ternary (5B4T)-modulation in pulsewidth modulation (PWM)-based ternary perpendicular magnetic recording (PMR). The high-efficient modulation is required to obtain higher user-bit density (UBD) gain in low-resolution channel, in which transition interval and magnetic-grain size are equivalent on media. In our proposed constrained adaptive 5B4T-modulation, one mapping-set is adaptively selected from the prepared two different mapping-sets to satisfy a specific constraint of ternary signal in modulation block-by-block. For the signal detection in the proposed modulation, we provide a practical solution which is a blind-detection method on likelihood vector. The likelihood vector is re-calculated as joint-metric using the likelihood values of adjacent modulation blocks. By using the vector of joint-metric, a likelihood vector is further generated to decode non-binary low-density parity-check (NB-LDPC) codes. Our simulation results demonstrate that the proposed adaptive 5B4T-modulated PWM-based ternary-PMR, combined with NB-LDPC codes over GF(32), shows a significant robustness in ultra-low-resolution channel, which occurs magnetization-missing frequently.
机译:在本文中,我们提出了一种基于脉冲宽度调制(PWM)的三元垂直磁记录(PMR)的高效约束自适应5二元至4三元(5B4T)调制。在低分辨率通道中需要更高的调制以获得更高的用户比特密度(UBD)增益,其中转换间隔和磁粒大小在媒体上是等效的。在我们提出的约束自适应5B4T调制中,从准备的两个不同映射集中自适应地选择一个映射集,以满足逐块调制中三进制信号的特定约束。对于所提出的调制中的信号检测,我们提供了一种实用的解决方案,即对似然向量的盲检测方法。使用相邻调制块的似然值将似然矢量重新计算为联合度量。通过使用联合度量的矢量,进一步生成似然矢量以解码非二进制低密度奇偶校验(NB-LDPC)码。我们的仿真结果表明,提出的自适应5B4T调制基于PWM的三元PMR,结合GF(32)上的NB-LDPC码,在超低分辨率通道中显示出显着的鲁棒性,该通道经常发生磁化缺失。

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