Efficient interference mitigating strategies for two-way relay channels

Agisilaos Papadogiannis, A. Burr, M. Tao
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引用次数: 2

Abstract

Hierarchical wireless networks have the potential to provide the needed capacity to a large number of mobile stations (MSs). According to this system architecture, the MSs are served by a dense network of fixed relay nodes (RNs) fed by a small number of large hub base stations (HBSs). In such deployment, high spectral efficiencies can be achieved if the RNs act as two-way relays; however this gives rise to co-channel interference (CCI) which needs to be mitigated. In order to gain insights on the impact of CCI to this scenario we consider an HBS with two highly directional antennas communicating with two MSs via two interfering two-way RNs. We investigate the average maximum sum-rate of two cooperative strategies. The first is based on Decode-and-Forward (DF) and network coding and acts as a baseline. The second strategy is based on Amplify-and-Forward (AF) and Network MIMO processing over both the backhaul and access channels. Furthermore we devise some cooperative protocols that utilize two, three or four time slots. It is shown that the 2-slot schemes perform generally better and that the DF strategy achieves superior performance when CCI is low while AF with Network MIMO is superior when CCI is high.
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双向中继信道的有效干扰抑制策略
分层无线网络具有向大量移动站(MSs)提供所需容量的潜力。根据这种系统架构,MSs由固定中继节点(RNs)组成的密集网络提供服务,该网络由少量大型集线器基站(hbs)馈送。在这种部署中,如果RNs充当双向中继,则可以实现高频谱效率;然而,这会产生需要减轻的同信道干扰(CCI)。为了深入了解CCI对这种情况的影响,我们考虑了一个具有两个高定向天线的HBS,通过两个干扰双向RNs与两个ms通信。我们研究了两种合作策略的平均最大和率。第一种是基于解码和转发(DF)和网络编码,并作为基线。第二种策略是基于在回程和接入信道上的放大和转发(AF)和网络MIMO处理。此外,我们还设计了一些利用两个、三个或四个时隙的合作协议。结果表明,两时隙方案的性能总体上较好,当CCI较低时,DF策略具有较好的性能,而当CCI较高时,网络MIMO的AF策略具有较好的性能。
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