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Optimal Time Allocation in Relay Assisted Backscatter Communication Systems

机译:中继辅助反向散射通信系统中的最佳时间分配

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In this paper, we consider a relay assisted backscatter communication (RaBackCom) system, where a user backscatters incident signals from a carrier emitter (CE) to a relay and a receiver simultaneously, and then the relay forwards the user's information to the receiver for throughput improvement. We consider two cases that the relay is with/without an embedded energy source. Specifically, if the relay does not have an energy source, it first harvests energy from the signals from the CE and then uses its harvested energy for information forwarding. For both cases, we formulate time allocation problems on the user's information backscattering, the user's information forwarding, or the relay's energy harvesting to maximize the system throughput, and then derive closed-form solutions. Simulation results demonstrate the advantages of the proposed relay cooperation scheme with the optimal time allocation in terms of system throughput.
机译:在本文中,我们考虑了中继辅助反向散射通信(RaBackCom)系统,其中用户同时将入射信号从载波发射器(CE)反向散射到中继器和接收器,然后中继器将用户的信息转发到接收器以提高吞吐量改进。我们考虑两种情况,即继电器带有/不带有嵌入式能源。具体来说,如果中继没有能量源,它将首先从来自CE的信号中收集能量,然后将其收集的能量用于信息转发。对于这两种情况,我们都会针对用户的信息反向散射,用户的信息转发或中继的能量收集制定时间分配问题,以最大程度地提高系统吞吐量,然后得出封闭式解决方案。仿真结果证明了所提出的中继协作方案在系统吞吐量方面具有最佳时间分配的优势。

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