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首页> 外文期刊>International journal of communication systems >On scalability of physical layer network coding with modulo-sum mapping over N-way relay channels
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On scalability of physical layer network coding with modulo-sum mapping over N-way relay channels

机译:N中继信道上模和映射的物理层网络编码的可扩展性

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In this manuscript, fundamental limits of physical layer network coding with modulo-sum mapping (to avoid of large cardinality), in terms of the number of superimposed signals that still render an acceptable probability of error, are studied. It is expected that (1) for a given bit error rate or throughput, an upper bound on the number of superimposed signals may exist and (2) if a large network is considered as a set of small subnetworks, and the proposed network code is used in each subnetwork, a significant increase in network throughput can be achieved. Answering these questions sheds light on the scalability of multiuser physical layer network coding with bit error rate or throughput constraints. Theoretical calculations, as well as simulation results, indicate the extraction of network coded signal from more than 2 (which is special case known as 2-way relay channel) superimposed signals can be practical and lucrative.
机译:在本手稿中,研究了仍采用可接受的错误概率的叠加信号的数量(采用模和和映射(以避免大基数))对物理层网络进行编码的基本限制。预期(1)对于给定的误码率或吞吐量,可能存在叠加信号数量的上限;(2)如果将大型网络视为一组小型子网,并且所建议的网络代码为通过在每个子网中使用,可以显着提高网络吞吐量。回答这些问题可以揭示具有误码率或吞吐量限制的多用户物理层网络编码的可伸缩性。理论计算和仿真结果表明,从2个以上(特殊情况称为2路中继信道)叠加网络信号中提取网络编码信号既实用又有利可图。

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