Length-Compatible Polar Codes: A Survey : (Invited Paper)

Thibaud Tonnellier, Adam Cavatassi, W. Gross
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引用次数: 5

Abstract

Polar codes natively lack the flexibility that is desired for practical application. Namely, Arikan’s polar code definition can only achieve code lengths that are powers of two. Rate-matching techniques, known as puncturing and shortening, have been applied to polar codes to grant a flexible block length. By considering polarizing kernels of alternate dimensions, Multi-kernel polar codes improve natural block length flexibility. With the recent advent of the 3GPP 5th generation New Radio specification, there now exists an industry standard for length-flexible polar codes. This paper outlines various state-of-the-art flexible polar coding schemes, such as puncturing, shortening, and multi-kernel construction, and evaluates their efficacy with respect to the newly designed 3GPP standard. Simulations and an in-depth analysis are presented.
长度相容极性码:概览:(特邀论文)
极性码本身缺乏实际应用所需的灵活性。也就是说,Arikan的极坐标码定义只能实现2的幂的码长。速率匹配技术,称为穿刺和缩短,已应用于极性码授予灵活的块长度。通过考虑交替维数的极化核,多核极化码提高了自然块长度的灵活性。随着最近3GPP第5代新无线电规范的出现,现在存在一个长度灵活的极性代码的行业标准。本文概述了各种最先进的柔性极性编码方案,如穿刺、缩短和多核结构,并评估了它们相对于新设计的3GPP标准的有效性。给出了仿真和深入分析。
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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