【2h】

Throughput Maximization for UAV-Enabled Relaying in Wireless Powered Communication Networks

机译:无线供电通信网络中支持UAV的中继的吞吐量最大化

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摘要

This paper investigates mobile relaying in wireless powered communication networks (WPCN), where an unmanned aerial vehicle (UAV) is employed to help information delivery from multiple sources to destination with communication channels severely blocked. The sources are low-power without energy supply. To support information transmission, the UAV acts as a hybrid access point (AP) to provide wireless power transfer (WPT) and information reception for sources. We set the issue of system throughput maximization as the optimization problem. On the one hand, the system is subject to the information causality constraint due to the dependent processes of information reception and transmission for the UAV. On the other hand, the sources are constrained by a so-called neutrality constraints due to the dependent processes of energy harvesting and energy consumption. In addition, we take account of the access delay issue of all ground nodes. Specifically, two paradigms of delay-tolerant case and delay-sensitive case are presented. However, the formulated problem including optimizations for time slot scheduling, power allocation and UAV trajectory is non-convex and thus is difficult to obtain its optimal solution. To tackle this problem, we apply the successive convex approximation (SCA) technique and propose an iterative algorithm by which a suboptimal solution can be achieved. Simulation results validate our proposed design, and show that the obtained suboptimal solution is high-quality, as compared to benchmark scheme.
机译:本文研究了无线通信网络(WPCN)中的移动中继,其中无人飞行器(UAV)用于在严重阻塞通信信道的情况下帮助从多个源到目的地的信息传递。源是低功率的,没有能源供应。为了支持信息传输,UAV充当混合接入点(AP),以为源提供无线电力传输(WPT)和信息接收。我们将系统吞吐量最大化问题设置为优化问题。一方面,由于无人机的信息接收和传输的相关过程,系统受到信息因果关系的约束。另一方面,由于能量收集和能量消耗的相关过程,源受到所谓的中性约束的约束。此外,我们考虑了所有地面节点的访问延迟问题。具体来说,给出了容错情况和时延敏感情况的两种范例。然而,包括时隙调度,功率分配和UAV轨迹的优化在内的提出的问题是非凸的,因此难以获得其最佳解决方案。为了解决这个问题,我们应用了逐次凸逼近(SCA)技术,并提出了一种迭代算法,可以实现次优解。仿真结果验证了我们提出的设计,并且表明与基准方案相比,所获得的次优解决方案是高质量的。

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