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UAV-Assisted Time Division Power Allocation Strategy Based on RF Energy Harvesting

机译:基于射频能量收集的无人机辅助时分功率分配策略

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摘要

Aiming at the difference in number of users in busy time and spare time for the femto base station (FBS), the power allocation problem of maximizing the total downlink information is investigated in this paper. By deploying a pico base station carried by unmanned aerial vehicle (PBS-UAV), it provides services for users of multiple FBSs in spare time. Both the FBS and PBS-UAV have energy harvesting function. During the busy time, the FBS and PBS-UAV simultaneously harvest energy from the macro base station, and FBSs transmit data to users. During the spare time, multiple FBSs are replaced by the PBS-UAV to communicate with users in downlink. The power allocation problem is modeled as an optimization problem. The objective is to maximize the amount of downlink information of FBSs and PBS-UAV while satisfying the constraints of FBS and PBS-UAV energy consumption and transmission power. The optimal solution is obtained by using an augmented Lagrange multiplier method. The simulation results show that compared with the equal power method and partial fixed power method with PBS-UAV, the proposed method has an increase in terms of total information to different degrees.
机译:针对毫微微基站(FBS)的繁忙时间和业余时间中的用户数量的差异,在本文中研究了最大化总下行链路信息的功率分配问题。通过部署由无人驾驶飞行器(PBS-UAV)承载的Pico基站,它在业余时间为多个FBS的用户提供服务。 FBS和PBS-UAV都具有能量收集功能。在繁忙时间期间,FBS和PBS-UAV同时从宏基站收获能量,并且FBS将数据发送给用户。在业余时间,多个FBS被PBS-UAV替换为与下行链路中的用户通信。电力分配问题被建模为优化问题。目的是最大化FBSS和PBS-UAV的下行链路信息的量,同时满足FBS和PBS-UV能量消耗和传输功率的约束。通过使用增强拉格朗日乘法器方法获得最佳解决方案。仿真结果表明,与具有PBS-UAV的等功率方法和部分固定功率方法相比,所提出的方法对不同程度的总信息方面的增加。

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