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Improved joint network-channel coding for the multiple-access relay channel

机译:改进了多接入中继信道的联合网络信道编码

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This paper proposes a novel joint network- channel coding (JNCC) system based on improved distributed turbo coded (DTC) scheme for multiple-access relay channel, using decode-and-forward protocol. The diversity of improved DTC scheme is that the two parity streams of the two RSC encoders of UE are converted into one stream by puncturing. In addition, we adopt the punctured parity streams of Convolutional Turbo Code (CTC) at the relay and BS, which takes advantage of the feature of two inputs for the decoded information bits from two mobile stations. Here, CTC acts as a network coding as well as channel coding between relay and BS. The performance of this communication system depends on the twice decoding at the BS according to the side information and CTC punctured parity information. The simulation results show that performance of proposed scheme overperforms the reference network-coding scheme which separates channel decoding from network coding, and has 0.8dB improvement at a bit error rate (BER) of 10−3 in AWGN channel than the reference scheme.
机译:本文提出了一种基于改进的分布式Turbo编码(DTC)方案的新型联合网络通道编码(JNCC)系统,用于多种接入继电器信道,使用解码和前进协议。改进的DTC方案的多样性是通过穿孔来将UE的两个RSC编码器的两个奇偶校验流转换为一个流。此外,我们在继电器和BS采用了卷积涡轮码(CTC)的穿刺奇偶校验流,其利用来自两个移动站的解码信息位的两个输入的特征。这里,CTC充当网络编码以及中继和BS之间的信道编码。该通信系统的性能取决于根据侧面信息和CTC打孔奇偶校验信息在BS处的两次解码。仿真结果表明,所提出的方案的性能优于与网络编码分离信道解码的参考网络编码方案,并且在10 &#x2212的误码率(ber)上具有0.8dB的改进。3 在AWGN通道比参考方案。

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