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The Davey-MacKay Coding Scheme for Channels With Dependent Insertion, Deletion, and Substitution Errors

机译:具有相关插入,删除和替换错误的通道的Davey-MacKay编码方案

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摘要

In this paper, we propose a new channel model which introduces dependent insertion, deletion, and substitution (DIDS) errors. This channel model mimics the write channel found in bit-patterned media recording (BPMR) systems. It consists of a ternary Markov state channel and a two-state binary symmetric channel (BSC). The ternary Markov state channel produces data-dependent and paired insertion-deletion errors while the two-state BSC produces random substitution errors, as well as burst-like substitution errors in the vicinity of insertions and deletions. In addition, we modify the inner decoder of the Davey-MacKay (DM) coding scheme for the proposed channel model. For the case where there are no burst-like substitution errors, computer simulations show that our modified inner decoder (which takes into account the dependencies between synchronization errors) yields superior frame error rate (FER) performance compared to that when the symbol-level inner decoder by Briffa (which ignores the dependencies between synchronization errors) is used. As the (computational) complexity of our inner decoder increases with the length of the burst-like substitution errors, we further propose a reduced-complexity variant of our inner decoder to handle these errors. Computer simulations show that under iterative decoding, FERs below $10^{-5}$ can be achieved with the reduced-complexity variant and a code of rate 0.71, when the insertion/deletion rates are low $(leq 10^{-3})$ and the burst-like error lengths before and after a synchronization error are short $(leq 5)$.
机译:在本文中,我们提出了一个新的信道模型,该模型引入了相关的插入,删除和替换(DIDS)错误。此通道模型模仿在位模式的媒体记录(BPMR)系统中找到的写通道。它由三态马尔可夫状态通道和二态二进制对称通道(BSC)组成。三态马尔可夫状态通道产生数据相关和成对的插入-删除错误,而二态BSC产生随机的替换错误,以及在插入和删除附近的突发性替换错误。此外,我们针对拟议的信道模型修改了Davey-MacKay(DM)编码方案的内部解码器。对于没有类突发替换错误的情况,计算机仿真表明,与使用符号级内部替换相比,我们改进的内部解码器(考虑了同步错误之间的依赖性)产生了更高的帧错误率(FER)性能。使用Briffa 的解码器(忽略同步错误之间的依赖性)。随着内部解码器的(计算)复杂度随着类突发替换错误的长度增加而增加,我们进一步提出了内部解码器的降低复杂度的变体来处理这些错误。计算机仿真表明,在迭代解码下,使用降低复杂度的变量可以实现 $ 10 ^ {-5} $ 以下的FER。和插入率0.71的代码,当插入/删除率较低时 $(leq 10 ^ {-3})$ 同步错误前后的突发错误长度都很短 $(leq 5)$

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