On the error statistics of turbo decoding for hybrid concatenated codes design

F. Babich, F. Vatta
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引用次数: 2

Abstract

In this paper we propose a model for the generation of error patterns at the output of a turbo decoder. One of the advantages of this model is that it can be used to generate the error sequence with little effort. Thus, it provides a basis for designing hybrid concatenated codes (HCCs) employing the turbo code as inner code. These coding schemes combine the features of parallel and serially concatenated codes and thus offer more freedom in code design. It has been demonstrated, in fact, that HCCs can perform closer to capacity than serially concatenated codes while still maintaining a minimum distance that grows linearly with block length. In particular, small memory-one component encoders are sufficient to yield asymptotically good code ensembles for such schemes. The resulting codes provide low complexity encoding and decoding and, in many cases, can be decoded using relatively few iterations.
混合级联码设计中turbo译码的误差统计
在本文中,我们提出了一种在涡轮解码器输出端产生错误模式的模型。该模型的优点之一是可以很容易地生成误差序列。从而为设计以turbo码为内码的混合级联码提供了依据。这些编码方案结合了并行和串行连接代码的特点,从而在代码设计上提供了更多的自由。事实上,已经证明,hcc可以比串行连接代码更接近容量,同时仍然保持与块长度线性增长的最小距离。特别地,对于这种方案,小型的单内存编码器足以产生渐近良好的代码集成。生成的代码提供低复杂度的编码和解码,并且在许多情况下,可以使用相对较少的迭代进行解码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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