Fast-SSC-flip decoding of polar codes

P. Giard, A. Burg
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引用次数: 34

Abstract

Polar codes are widely considered as one of the most exciting recent discoveries in channel coding. For short to moderate block lengths, their error-correction performance under list decoding can outperform that of other modern error-correcting codes. However, high-speed list-based decoders with moderate complexity are challenging to implement. Successive-cancellation (SC)-flip decoding was shown to be capable of a competitive error-correction performance compared to that of list decoding with a small list size, at a fraction of the complexity, but suffers from a variable execution time and a higher worst-case latency. In this work, we show how to modify the state-of-the-art high-speed SC decoding algorithm to incorporate the SC-flip ideas. The algorithmic improvements are presented as well as average execution-time results tailored to a hardware implementation. The results show that the proposed fast-SSC-flip algorithm has a decoding speed close to an order of magnitude better than the previous works while retaining a comparable error-correction performance.
极性码的快速ssc翻转译码
极性码被广泛认为是信道编码中最令人兴奋的新发现之一。对于短到中等长度的块,它们在列表解码下的纠错性能可以优于其他现代纠错码。然而,具有中等复杂性的高速基于列表的解码器很难实现。与小列表大小的列表解码相比,连续取消(SC)翻转解码具有竞争性的纠错性能,其复杂性仅为列表解码的一小部分,但其执行时间可变,最坏情况延迟更高。在这项工作中,我们展示了如何修改最先进的高速SC解码算法,以纳入SC翻转思想。介绍了算法改进以及针对硬件实现定制的平均执行时间结果。结果表明,所提出的快速ssc翻转算法在保持相当的纠错性能的同时,译码速度比以往的算法提高了近一个数量级。
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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