拟议的 ATSC 标准迭代解码器

Pham Hai Dang, Tran Minh Hai, N. Dung
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引用次数: 0

摘要

简并码被广泛应用于多媒体系统,如欧洲、日本和美国的地面数字电视广播标准 DVB-T、ISDB-T 和 ATSC。连接码通常由作为外码的里德-所罗门码和作为内码的卷积码组成。字节级交错也用于避免严重无线信道中的突发错误。事实证明,这类并集码对多径衰落信道具有鲁棒性。在本文中,我们回顾了协程码的传统解码算法,该算法在硬件上的实现具有几十年的通用性。然后,我们提出了一种可行的并集码迭代解码方法。该方法的主要贡献在于:(1)一种新颖的并集码迭代译码方法;(2)对外部码和内部码的译码算法进行了适当的修改,以便于硬件实现。仿真结果表明,与传统的解码方法相比,所提出的方法可实现 0.7 分贝至 1.4 分贝的编码增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A proposed iterative decoder for ATSC standard
Concatenated code is widely used in multimedia systems, such as DVB-T, ISDB-T and ATSC as terrestrial digital Television broadcasting standard of Europe, Japan and America, respectively. The concatenated code usually consists of Reed-Solomon code as outer code, Convolutional code as inner coder. The byte-level interleave also used to avoid burst errors in severe wireless channel. This class of concatenated code is proved to be robust against multipath fading channel. In this paper, we review the conventional decoding algorithm for concatenated code, which is versatile to implement in hardware in decades. Then, a feasible iteration decoding method for concatenated code is proposed. The main contributions of the proposed method are (1) a novel iteration decoding method of concatenated codes, (2) a suitable modification of decoding algorithm of outer and inner codes for hardware implementation. The simulation shows that the proposed method achieves coding gain of 0.7dB upto 1.4dB in comparison with the conventional decoding method.
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