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Optimal Resource Allocation for Wireless Powered Multi-Carrier Backscatter Communication Networks

机译:无线动力多载波反向散射通信网络的最优资源分配

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Backscatter communication (BackCom) is considered as one of important techniques to extend the lifetime of Internet of Things (IoT). How to achieve resource allocation (RA) is a key technique to optimize system performance. Existing RA schemes only focus on time scheduling under the fixed transmit power, however, the globally optimal solutions and power allocation are not considered. In this letter, we solve the total rate maximization problem for a multi-carrier wireless powered BackCom network, where a dedicated radio frequency power source (PS) transmits multi-carrier signals to a hybrid information transceiver device (ITD) during energy harvesting (EH) phase, and then the ITD deliveries the signals to the associated receiver during the information transmission (IT) phase. Our goal is to maximize the sum rate of the backscatter data rate and the transmission rate during the IT phase by jointly optimizing power allocation, time allocation, reflection coefficient, energy allocation coefficient, where the maximum transmit power constraint at the PS and the minimum circuit power consumption constraint are considered. Then an iterative RA algorithm is developed to find the optimal solutions. Simulation results confirm the superiority of the proposed scheme in terms of transmission rates.
机译:反向散射通信(Backcom)被认为是扩展物联网终身的重要技术之一(物联网)。如何实现资源分配(RA)是优化系统性能的关键技术。现有的RA方案仅关注在固定发射功率下的时间调度,但是,不考虑全局最佳解决方案和功率分配。在这封信中,我们解决了多载波无线供电回顾网络的总速率最大化问题,其中专用射频电源(PS)在能量收集期间将多载波信号发送到混合信息收发器设备(ITD)(EH )相位,然后ITD在信息传输(IT)阶段期间将信号传送到相关接收器。我们的目标是通过联合优化功率分配,时间分配,反射系数,能量分配系数,能量分配系数,能量分配系数,在IT相期间最大化反向散射数据速率和传输速率的总和速率。考虑了功耗约束。然后开发了一种迭代RA算法以找到最佳解决方案。仿真结果证实了在传输速率方面的提出方案的优越性。

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