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Investigation on iterative multiuser detection physical layer network coding in two-way relay free-space optical links with turbulences and pointing errors

机译:具有湍流和指向错误的双向中继自由空间光链路中迭代多用户检测物理层网络编码的研究

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摘要

Physical layer network coding (PNC) improves the throughput in wireless networks by enabling two nodes to exchange information using a minimum number of time slots. The PNC technique is proposed for two-way relay channel free space optical (TWR-FSO) communications with the aim of maximizing the utilization of network resources. The multipair TWR-FSO is considered in this paper, where a single antenna on each pair seeks to communicate via a common receiver aperture at the relay. Therefore, chip interleaving is adopted as a technique to separate the different transmitted signals at the relay node to perform PNC mapping. Accordingly, this scheme relies on the iterative multiuser technique for detection of users at the receiver. The bit error rate (BER) performance of the proposed system is examined under the combined influences of atmospheric loss, turbulence-induced channel fading, and pointing errors (PEs). By adopting the joint PNC mapping with interleaving and multiuser detection techniques, the BER results show that the proposed scheme can achieve a significant performance improvement against the degrading effects of turbulences and PEs. It is also demonstrated that a larger number of simultaneous users can be supported with this new scheme in establishing a communication link between multiple pairs of nodes in two time slots, thereby improving the channel capacity.
机译:物理层网络编码(PNC)通过使两个节点能够使用最少的时隙交换信息来提高无线网络的吞吐量。为了最大程度地利用网络资源,提出了PNC技术用于双向中继信道自由空间光(TWR-FSO)通信。本文考虑了多对TWR-FSO,其中每对上的单个天线都试图通过中继器上的公共接收器孔径进行通信。因此,采用码片交织作为在中继节点分离不同的发送信号以执行PNC映射的技术。因此,该方案依赖于用于在接收机处检测用户的迭代多用户技术。在大气损耗,湍流引起的信道衰落和指向错误(PE)的综合影响下,对所提出系统的误码率(BER)性能进行了检查。通过采用带交叉和多用户检测技术的联合PNC映射,BER结果表明,所提出的方案可以在抵抗湍流和PE的退化影响方面实现显着的性能改进。还证明了,通过该新方案,可以在两个时隙的多对节点之间建立通信链路时,支持更多的同时用户,从而提高了信道容量。

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