2. How'/> Non-Binary Constrained Codes for Two-Dimensional Magnetic Recording
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Non-Binary Constrained Codes for Two-Dimensional Magnetic Recording

机译:二维磁记录的非二元约束代码

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The two-dimensional magnetic recording (TDMR) technology promises storage densities of 10 Tbits/in2. However, when tracks are squeezed together, a bit stored in the two-dimensional (TD) grid suffers inter-symbol interference (ISI) from adjacent bits in the same track and inter-track interference (ITI) from nearby bits in the adjacent tracks. A bit is highly likely to be read incorrectly if it is isolated in the middle of a $3 imes 3$ square, surrounded by its complements, horizontally and vertically. We improve the reliability of TDMR systems by designing TD constrained codes that prevent these square isolation patterns. We exploit the way TD read heads operate to design our codes, and we focus on TD read heads that collect signals from three adjacent tracks. We represent the two-dimensional square isolation constraint as a one-dimensional constraint on an alphabet of eight non-binary symbols. We use this new representation to construct a non-binary lexicographically-ordered constrained code where one third of the input information bits are unconstrained. Our TD constraint codes are capacity-achieving, and the data protection is achieved with redundancy less than 3% and at modest complexity.
机译:二维磁记录(TDMR)技术应承诺10 Tbits / In的储存密度 2 。然而,当曲目被挤压在一起时,存储在二维(TD)网格中的比特遭受来自相同轨道中的相同轨道和轨道间干扰(ITI)的符号间干扰(ISI),来自附近的轨道中的附近比特。如果它在中间孤立时,有可能被错误地读取。<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 3 times 3 $ 方形,被其补充,水平和垂直包围。我们通过设计防止这些方形隔离模式的TD约束码来提高TDMR系统的可靠性。我们利用TD读取头部运营的方式设计编码,我们专注于收集来自三个相邻轨道的信号的TD读取头。我们将二维方隔离约束表示为八个非二进制符号的字母表上的一维约束。我们使用这个新的表示来构造非二进制词典上有序的约束代码,其中三分之一的输入信息位是不受约束的。我们的TD约束代码是实现能力,并且通过冗余且较大的复杂性冗余实现数据保护。

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