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A low complexity physical-layer network coding scheme for cellular two-way relaying systems

机译:用于蜂窝双向中继系统的低复杂度物理层网络编码方案

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In this paper, we consider transceiver design for multiuser cellular two-way relay network (cTWRC), where a multi-antenna base station (BS) exchanges information with multiple single-antenna mobile stations (MSs) with the help of a multi-antenna relay station (RS). We propose a low complexity two-way relaying scheme for cTWRC via signal space alignment. In our scheme, the precoders at the BS and MSs are jointly designed that the two data streams delivered to and from the same MS fall in the same spatial direction at the RS. With such signal space alignment, interference-free physical-layer network coding can be performed at the relay. We analyze the end-to-end sum bit error rate (BER) performance of the proposed scheme and investigate the optimal power allocation at the BS and RS to improve the BER performance. Numerical results demonstrate that our scheme is superior to the existing amplify-and-forward based signal alignment schemes.
机译:在本文中,我们考虑了多用户蜂窝双向中继网络(cTWRC)的收发器设计,其中多天线基站(BS)借助多天线与多个单天线移动站(MS)交换信息中继站(RS)。我们通过信号空间对齐为cTWRC提出了一种低复杂度的双向中继方案。在我们的方案中,BS和MS的预编码器是联合设计的,以使发送到同一MS的数据流和来自同一MS的两个数据流在RS处处于同一空间方向。通过这种信号空间对准,可以在中继器处执行无干扰的物理层网络编码。我们分析了提出的方案的端到端总和误码率(BER)性能,并研究了在BS和RS处的最佳功率分配,以提高BER性能。数值结果表明,我们的方案优于现有的基于放大和转发的信号对准方案。

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