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Investigation Into Harmful Patterns Over Multitrack Shingled Magnetic Detection Using the Voronoi Model

机译:使用Voronoi模型研究多轨带状磁检测中的有害模式

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Two-dimensional magnetic recording 2-D (TDMR) is a promising technology for next generation magnetic storage systems based on a systems-level framework involving sophisticated signal processing at the core. The TDMR channel suffers from severe jitter noise along with electronic noise that needs to be mitigated during signal detection and recovery. Recently, we developed noise prediction-based techniques coupled with advanced signal detectors to work with these systems. However, it is important to understand the role of harmful patterns that can be avoided during the encoding process. In this paper, we investigate the Voronoi-based media model to study the harmful patterns over multitrack shingled recording systems. Through realistic quasi-micromagnetic simulation studies, we identify 2-D data patterns that contribute to high media noise. We look into the generic Voronoi model and present our analysis on multitrack detection with constrained coded data. We show that the 2-D constraints imposed on input patterns result in an order of magnitude improvement in the bit-error rate for the TDMR systems. The use of constrained codes can reduce the complexity of 2-D intersymbol interference (ISI) signal detection, since the lesser 2-D ISI span can be accommodated at the cost of a nominal code rate loss. However, a system must be designed carefully so that the rate loss incurred by a 2-D constraint does not offset the detector performance gain due to more distinguishable readback signals.
机译:二维磁记录二维(TDMR)是基于系统级框架的下一代磁存储系统的一项有前途的技术,该系统级框架涉及核心的复杂信号处理。 TDMR通道遭受严重的抖动噪声,并且在信号检测和恢复期间需要减轻电子噪声。最近,我们开发了基于噪声预测的技术,并结合了先进的信号检测器来与这些系统一起使用。但是,重要的是要了解在编码过程中可以避免的有害模式的作用。在本文中,我们研究了基于Voronoi的媒体模型,以研究多轨带状记录系统上的有害模式。通过现实的准微磁模拟研究,我们确定了导致高媒体噪声的二维数据模式。我们研究了通用的Voronoi模型,并提出了对带有受限编码数据的多轨检测的分析。我们表明,施加在输入模式上的二维约束导致TDMR系统的误码率提高了一个数量级。约束代码的使用可以降低2D符号间干扰(ISI)信号检测的复杂度,因为可以以标称编码速率损失为代价来适应较小的2D ISI跨度。但是,必须精心设计系统,以使2-D约束所引起的速率损失不会因更可区分的回读信号而抵消检测器的性能增益。

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