Improved iterative decoder for distributed turbo trellis coded modulation decode-and-forward relay channels

K. Huynh, T. Aulin
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Abstract

An improved iterative decoder (IID) for 3-node decode-and-forward (DF) relay channels employing distributed turbo trellis coded modulation (DTTCM) schemes which takes into account the decoding errors at the relay is proposed. The principle idea is to modify the extrinsic information between the component decoders to eliminate the effect of error propagation between the decoders, depending on the channel conditions between the source, the relay and the destination nodes in terms of signal-to-noise ratio (SNR) per bit. The performance of this decoder is compared with the performance of an iterative decoder proposed in the literature which is called normal iterative decoder (NID) in this paper and does not take into account the decoding errors at the relay, by simulation. The comparison shows that the IID outperforms the NID when the source-relay channel is bad with low SNR, thus yielding lots of decoding errors at the relay.
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分布式turbo栅格编码调制译码转发中继信道的改进迭代解码器
提出了一种基于分布式turbo栅格编码调制(DTTCM)的三节点译码转发(DF)中继信道的改进迭代解码器(IID),该方案考虑了中继信道的译码误差。其主要思想是修改组件解码器之间的外在信息,以消除解码器之间的错误传播的影响,这取决于源、中继和目标节点之间的信道条件,即每比特的信噪比(SNR)。通过仿真,将该译码器的性能与文献中提出的不考虑中继译码误差的迭代译码器(NID)的性能进行了比较。对比表明,当源中继信道较差且信噪比较低时,IID优于NID,从而在中继端产生大量的译码错误。
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