Location Design of Multiple Cyclic Redundancy Checks for Polar Codes in Successive Cancellation List Decoding

Hongxu Jin, Rongke Liu
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引用次数: 0

Abstract

Cyclic redundancy check (CRC)-aided successive cancellation list (CA-SCL) decoding algorithm has brought good error performance. Recently, some researchers utilized multiple CRC codes to reduce decoding complexity of CA-SCL decoding algorithm. However, based on CA-SCL decoding frame, we not only reduce decoding complexity but also improve error performance. We divide polar codeword into independent sub-blocks during the process of encoding. Meanwhile, locations of multiple CRC are optimized according to a value of each average Bhattacharyya parameter. Finally, for CA-SCL decoding, results indicate that our constructed polar codes show an admirable error performance and low decoding complexity than that of equal sub-block codewords.
逐次消列译码中极性码的多重循环冗余校验位置设计
循环冗余校验(CRC)辅助连续取消列表(CA-SCL)译码算法带来了良好的误码性能。近年来,一些研究者利用多个CRC码来降低CA-SCL译码算法的译码复杂度。而基于CA-SCL解码帧,不仅降低了解码复杂度,而且提高了误码性能。在编码过程中,我们将极性码字划分为独立的子块。同时,根据每个平均Bhattacharyya参数的值来优化多个CRC的位置。最后,对于CA-SCL译码,结果表明,我们构建的极性码与等子块码字相比,具有良好的误码性能和较低的译码复杂度。
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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