有效的Kötter-Kschischang解码器结构在随机线性网络编码中的非相干误差控制

Jun Lin, Hongmei Xie, Zhiyuan Yan
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引用次数: 2

摘要

Kotter-Kschischang (KK)码是随机线性网络编码中提供误差控制的一类重要的常维码。对于KK码,提出了两种解码算法:秩度量解码器和基于插值的列表解码器。由于前者的硬件实现存在吞吐量有限、延迟长和区域复杂度高的问题,本文提出了基于插值的列表解码器的高效硬件实现。本文的解码器结构是基于广义插值算法的,该算法比秩度量解码器结构使用的高斯消去算法具有更低的复杂度。我们还提出了一种适合硬件实现的改进型右除法算法。此外,针对中等吞吐量和高吞吐量的应用,分别提出了串行架构和展开架构。综合结果表明,所提出的结构比秩度量解码器结构效率高得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Kötter-Kschischang Decoder Architectures for Noncoherent Error Control in Random Linear Network Coding
Kotter-Kschischang (KK) codes are an important family of constant-dimension codes that provide error control in random linear network coding. Two decoding algorithms have been proposed for KK codes: a rank metric decoder and an interpolation based list decoder. Since hardware implementation of the former suffers from limited throughput, long latency and high area complexity, in this paper we propose efficient hardware implementations of the interpolation based list decoder. The decoder architectures in this paper are based on a generalized interpolation algorithm, which has a lower complexity than Gaussian elimination used by rank metric decoder architectures. We also propose a reformulated right division algorithm that is suitable for hardware implementation. Moreover, a serial architecture and an unfolded architecture are proposed for applications with moderate and high throughputs, respectively. The synthesis results show that the proposed architectures are much more efficient than rank metric decoder architectures.
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