Design and simulation of punctured woven convolutional codes

Yingxin Yu, Lin Wang, Qinfang Wei
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Abstract

Woven convolutional codes is a novel class error-correcting codes with high compatibility. But the coding efficiency of WCCs is lower and decoding delay is higher. The hardware realization is difficult for its encoding structure characteristic. These flaws restrict the applications of WCCs. In this paper, the puncturing technology is employed to enhance the coding efficiency and promote the application of WCCs. The puncturing technology is used to punctured outer warp and inner warp at first respectively. Over AWGN channel simulations show that the performance of punctured WCCs with outer warp is better than the non-punctured WCCs with outer warp with same rate and same number of outer encoders, and the complexity of encoding and decoding for WCCs based on puncturing is reduced greatly and the coding efficiency is improved greatly.
穿孔编织卷积码的设计与仿真
编织卷积码是一种新型的纠错码,具有很高的兼容性。但是wcc的编码效率较低,解码延迟较大。由于其编码结构特点,硬件实现困难。这些缺陷限制了wcc的应用。为了提高编码效率,促进wcc的应用,本文采用了穿刺技术。首先采用刺破技术分别刺破外经和内经。在AWGN信道上的仿真表明,在相同速率和相同编码器数量的情况下,带外经线的被刺破wcc的性能优于带外经线的非被刺破wcc,并且大大降低了基于被刺破的wcc的编解码复杂度,大大提高了编码效率。
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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