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Traffic-aware resource allocation for full duplex wireless networks

机译:全双工无线网络的流量感知资源分配

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With simultaneous transmission on both uplink and downlink within the same band, full duplex (FD) wireless communication is an emerging technique for next generation networks to significantly improve network throughput and spectrum efficiency. The symmetric capacity in the FD wireless network come from the same throughput obtained in both uplink and downlink with the same bandwidth. However, it will waste lots of radio resources for transmitting asymmetric traffic in the FD wireless network with the symmetric capacity. Moreover, residual self-interference (SI) from imperfect self interference cancelling in the FD wireless network can significantly decrease the uplink throughput. To tackle the above challenges, we propose a full duplex multi-subcarrier aggregation transmission (FD-MST) analytical model for residual SI enabled FD wireless systems. Based on the FD-MST model, we formulate a resource allocation problem in the FD wireless network with asymmetric traffic. To solve the original NP-hard problem, we propose a two-stage suboptimal scheme. Simulation results show that there is at least a 77.3% increase in the network throughput under the proposed scheme compared to those of the existing schemes.
机译:通过在同一频带内的上行链路和下行链路上同时进行传输,全双工(FD)无线通信是下一代网络的一项新兴技术,可以显着提高网络吞吐量和频谱效率。 FD无线网络中的对称容量来自具有相同带宽的上行链路和下行链路中获得的相同吞吐量。但是,这将浪费大量无线电资源来在具有对称容量的FD无线网络中传输非对称业务。此外,来自FD无线网络中不完善的自干扰消除的残余自干扰(SI)会显着降低上行链路吞吐量。为了解决上述挑战,我们提出了一种用于残差SI使能的FD无线系统的全双工多子载波聚合传输(FD-MST)分析模型。基于FD-MST模型,我们提出了流量不对称的FD无线网络中的资源分配问题。为了解决原始的NP难题,我们提出了一个两阶段的次优方案。仿真结果表明,与现有方案相比,该方案在网络吞吐量方面至少提高了77.3%。

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