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Optimal Time Allocation in Backscatter Assisted Wireless Powered Communication Networks

机译:反向散射辅助无线通信网络中的最佳时间分配

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摘要

This paper proposes a wireless powered communication network (WPCN) assisted by backscatter communication (BackCom). This model consists of a power station, an information receiver and multiple users that can work in either BackCom mode or harvest-then-transmit (HTT) mode. The time block is mainly divided into two parts corresponding to the data backscattering and transmission periods, respectively. The users first backscatter data to the information receiver in time division multiple access (TDMA) during the data backscattering period. When one user works in the BackCom mode, the other users harvest energy from the power station. During the data transmission period, two schemes, i.e., non-orthogonal multiple access (NOMA) and TDMA, are considered. To maximize the system throughput, the optimal time allocation policies are obtained. Simulation results demonstrate the superiority of the proposed model.
机译:本文提出了一种由反向散射通信(BackCom)辅助的无线通信网络(WPCN)。该模型由一个发电站,一个信息接收器和多个用户组成,这些用户可以以BackCom模式或“收获-然后-传输”(HTT)模式工作。时间块主要分为两个部分,分别对应于数据反向散射和传输周期。用户首先在数据反向散射期间以时分多址(TDMA)反向散射数据到信息接收器。当一个用户在BackCom模式下工作时,其他用户从发电站获取能量。在数据传输期间,考虑了两种方案,即非正交多址(NOMA)和TDMA。为了使系统吞吐量最大化,可以获得最佳的时间分配策略。仿真结果证明了该模型的优越性。

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