论文标题

无线驱动的多亚琴无人机的放置和资源分配用于节能多源Noma

Placement and Resource Allocation of Wireless-Powered Multiantenna UAV for Energy-Efficient Multiuser NOMA

论文作者

Wang, Zhongyu, Lv, Tiejun, Zeng, Jie, Ni, Wei

论文摘要

本文研究了一种新的下行链路非正交多访问(NOMA)系统,其中多对无线电源传输(WPT)供电,并用作多对地面用户(GUS)在每对中运行NOMA的基础站。提出了能源效率(EE)最大化问题,以共同优化无人机的WPT时间和放置,以及无人机在不同的Noma用户对之间和每对之间的发射功率的分配。为了有效地解决此非凸问题,我们使用块坐标下降将问题分解为三个子问题。对于每个NOMA用户对中对水上功率分配的子问题,我们构建了一个超模块化游戏,具有确认的融合到NASH平衡。鉴于对配对功率分配,将连续的凸近似值用于凸面化和求解用户对之间的WPT时间分配和对配对功率分配的子问题。最后,我们使用Lagrange乘数方法解决了无人机位置的子问题。模拟表明,我们的方法可以大大优于不使用Noma和WPT技术或不优化无人机位置的替代方案。

This paper investigates a new downlink nonorthogonal multiple access (NOMA) system, where a multiantenna unmanned aerial vehicle (UAV) is powered by wireless power transfer (WPT) and serves as the base station for multiple pairs of ground users (GUs) running NOMA in each pair. An energy efficiency (EE) maximization problem is formulated to jointly optimize the WPT time and the placement for the UAV, and the allocation of the UAV's transmit power between different NOMA user pairs and within each pair. To efficiently solve this nonconvex problem, we decompose the problem into three subproblems using block coordinate descent. For the subproblem of intra-pair power allocation within each NOMA user pair, we construct a supermodular game with confirmed convergence to a Nash equilibrium. Given the intra-pair power allocation, successive convex approximation is applied to convexify and solve the subproblem of WPT time allocation and inter-pair power allocation between the user pairs. Finally, we solve the subproblem of UAV placement by using the Lagrange multiplier method. Simulations show that our approach can substantially outperform its alternatives that do not use NOMA and WPT techniques or that do not optimize the UAV location.

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