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Design of Generalized Concatenated Codes Based on Polar Codes With Very Short Outer Codes

机译:基于极短外码极性码的广义级联码设计

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摘要

We present a new design approach to construct generalized concatenated codes (GCCs) based on polar codes (PCs). It is already known that PCs can be considered as a special class of the GCCs with polar outer and inner codes. We show how density evolution (DE) can be used to develop a channel-specific method to design outer codes of length L under maximum-likelihood (ML) decoding. Once a bank of outer codes of length L and different rates have been designed, we develop a rate-allocation algorithm to allocate rates to the outer codes of the GCC with the goal of minimizing the overall block error rate for a given overall rate of K/N. To maintain the low complexity of the SC decoder, we only design very short outer codes (L≤8). We show that, at this outer code length, it is possible to design GCC-PCs that can result in up to 0.5-dB coding gain while reducing decoding complexity.
机译:我们提出了一种新的设计方法来构造基于极性代码(PC)的广义级联代码(GCC)。众所周知,可以将PC视为带有极性外部和内部代码的GCC的特殊类别。我们展示了如何使用密度演化(DE)来开发特定于信道的方法,以在最大似然(ML)解码下设计长度为L的外部代码。一旦设计了一组长度为L且具有不同速率的外部代码,我们将开发一种速率分配算法,以将速率分配给GCC的外部代码,目的是在给定的总体速率K下将总体块错误率降至最低/ N。为了保持SC解码器的低复杂度,我们仅设计了非常短的外部代码(L≤8)。我们表明,在此外部代码长度下,可以设计出GCC-PC,从而在降低解码复杂性的同时,获得高达0.5dB的编码增益。

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