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Hybrid full and half duplex networking

机译:混合全双工和半双工网络

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摘要

Full-duplex (FD) technique is expected to double the spectral efficiency. Yet the performance gain of the FD network over half-duplex network is limited by severe inter-cell interference and depends on the uplink and downlink traffic load. In this paper, we propose to employ hybrid full and half duplex (HFHD) network to mitigate the strong interference and adapt to the traffic variation. We first introduce the notion of FD reuse factor, borrowing the idea of frequency reuse factor from traditional cellular networks to alleviate inter-cell interference. Then, we provide a joint uplink and downlink power control policy to balance the uplink and downlink throughput by further controlling the interference among base stations. Considering the time-varying and location-dependent traffic load in practical networks, we present a dynamic round-robin strategy to allocate FD subframes efficiently to further improve throughput. Simulation results show that the HFHD network can provide remarkable gain in the overall uplink and downlink throughput over the half duplex network, and can improve the fairness among uplink and downlink transmission with respect to the FD network.
机译:全双工(FD)技术有望使频谱效率提高一倍。然而,FD网络在半双工网络上的性能增益受到严重的小区间干扰的限制,并且取决于上行链路和下行链路流量负载。在本文中,我们建议使用混合全双工和半双工(HFHD)网络来减轻强烈的干扰并适应流量变化。我们首先介绍FD重用因子的概念,借鉴传统蜂窝网络中频率重用因子的思想来减轻小区间干扰。然后,我们提供了一种联合的上行链路和下行链路功率控制策略,以通过进一步控制基站之间的干扰来平衡上行链路和下行链路吞吐量。考虑到实际网络中时变和位置相关的流量负载,我们提出了一种动态轮循策略来有效分配FD子帧,以进一步提高吞吐量。仿真结果表明,HFHD网络可以在半双工网络上的整体上行链路和下行链路吞吐量中提供显着的收益,并且可以提高相对于FD网络的上行链路和下行链路传输之间的公平性。

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