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首页> 外文期刊>IEEE Transactions on Information Theory >Tradeoff functions for constrained systems with unconstrained positions
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Tradeoff functions for constrained systems with unconstrained positions

机译:位置不受约束的约束系统的权衡函数

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We introduce a new method for analyzing and constructing combined modulation and error-correcting codes (ECCs), in particular codes that utilize some form of reverse concatenation and whose ECC decoding scheme requires easy access to soft information. We expand the work of Immink and Wijngaarden and also of Campello, Marcus, New, and Wilson, in which certain bit positions in the modulation code are deliberately left unconstrained for the ECC parity bits, in the sense that such positions can take on either bit value without violating the constraint. Our method of analysis involves creating a single graph that incorporates information on these unconstrained positions directly into the constraint graph without any assumptions of periodicity or sets of unconstrained positions, and is thus completely general. We establish several properties of the tradeoff function that relates the density of unconstrained positions to the maximum code rate. In particular, the tradeoff function is shown to be concave and continuous. Algorithms for computing lower and upper bounds for this function are presented. We also show how to compute the maximum possible density of unconstrained positions and give explicit values for the runlength-limited (RLL(d,k)) and maximum-transition-run (MTR(j,k)) constraints.
机译:我们介绍了一种用于分析和构造组合的调制和纠错码(ECC)的新方法,特别是利用某种形式的反向级联且其ECC解码方案需要轻松访问软信息的代码。我们扩展了Immink和Wijngaarden的工作,还扩展了Campello,Marcus,New和Wilson的工作,在这些工作中,调制码中的某些比特位置被故意保留为ECC奇偶校验位不受限制,从某种意义上说,此类位置可以占据任一比特值,而不会违反约束。我们的分析方法涉及创建单个图,该图将这些无约束位置的信息直接合并到约束图中,而无需任何周期性或无约束位置集的假设,因此是完全通用的。我们建立了权衡函数的几个属性,这些属性将不受约束的位置的密度与最大编码率相关联。特别地,折衷函数显示为凹且连续的。提出了用于计算此功能下限和上限的算法。我们还展示了如何计算无约束位置的最大可能密度,并给出游程限制(RLL(d,k))和最大过渡行程(MTR(j,k))约束的显式值。

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