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Energy-Efficient UAV Relaying Communications to Serve Ground Nodes

机译:节能UAV中继通信以提供地面节点

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摘要

This letter studies the energy-efficient unmanned aerial vehicle (UAV) communications to support ground nodes (GNs). The system considers the UAV working as a relay while there is a base station (BS) on the ground. We analyze the UAV energy consumption model to design the energy-efficient UAV trajectory path. We formulate the energy-efficient UAV relaying communication, which considers both throughput and UAV propulsion energy consumption. We optimize joint transmit power of UAV and BS; UAV trajectory, acceleration, and flying speed to maximize the energy-efficient UAV relaying problem. We also introduce a constraint named as information causality constraint (ICC). The main idea of ICC is to guarantee that the UAV receives information from BS in any time slot and forward the only received information to GNs in remaining time slots. The formulated energy-efficiency maximization problem is not convex. Thus, we solve it sub-optimally using the iterative method. Finally, we present the simulation results to validate the efficacy of the proposed algorithm.
机译:这封信研究了节能无人机(UAV)通信支持地面节点(GNS)。该系统将UAV作为继电器运行,而在地面上有基站(BS)。我们分析了UAV能耗模型,以设计节能UAV轨迹路径。我们制定了节能的UAV中继通信,其考虑了吞吐量和无人机推进能耗。我们优化UAV和BS的关节传输功率; UAV轨迹,加速度和飞行速度,最大限度地提高节能UAV中继问题。我们还将命名为信息因果关系约束(ICC)的约束。 ICC的主要思想是保证UAV在任何时隙中从BS接收信息,并将唯一接收的信息转发到剩余时隙中的GNS。配制的能量效率最大化问题不是凸出的。因此,我们使用迭代方法来解决它。最后,我们提出了仿真结果以验证所提出的算法的功效。

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