分布式Turbo产品码的软增量冗余

Esam A. Obiedat, W. Xiang, J. Leis, Lei Cao
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引用次数: 7

摘要

本文提出了一种采用块扩展Bose Chaudhuri Hochquenghem (EBCH)码作为组成码的协作网络软信息中继分布式Turbo产品码(DTPC)。源广播扩展EBCH编码帧到目的地和一个预先分配的中继。中继对接收到的序列进行软解码并获得对数似然比(LLR)值后,采用一种新颖的软分组编码技术,将解码后的位序列按行排列,沿列重新编码,形成产品码,获得不同可靠性的软奇偶校验位,作为转发到目的地的源数据的软增量冗余(IR)。在目的地使用改进的涡轮积解码器来处理通过不同信道接收的数据,从而具有不同的可靠性。我们将加性高斯白噪声(AWGN)信道使用网络场景的仿真结果与我们之前的解码和转发(DF) DTPC以及非合作情况的仿真结果进行了比较。结果表明,在误码率(BER)为10-4时,与非合作Turbo积码(TPC)相比,增益提高了0.5 db。此外,中继端译码错误对误码率的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft Incremental Redundancy for Distributed Turbo Product Codes
In this paper, we propose a Distributed Turbo Product Code (DTPC) with soft information relaying over cooperative network using block Extended Bose Chaudhuri Hochquenghem (EBCH) codes as component codes. The source broadcasts extended EBCH coded frames to the destination and to a preassigned relay. After soft-decoding the received sequences and obtaining the Log-Likelihood Ratio (LLR) values, the relay constructs a product code by arranging the decoded bit sequences in rows and re-encoding them along the columns using a novel soft block encoding technique to obtain soft parity bits with different reliabilities that can be used as soft Incremental Redundancy (IR) for source's data which is forwarded to the destination. A modified turbo product decoder to cope with the data received over different channels and thus having different reliabilities is used at the destination. We compared the simulation results in Additive White Gaussian Noise (AWGN) channel using network scenarios with our previous work for Decode and Forward (DF) DTPC and with non-cooperative case. Results show O.5dB gain improvement over the non-cooperative Turbo Product Codes (TPC) at Bit Error Rate (BER) 10-4. In addition, the BER performance is less affected by the decoding errors at the relay.
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