UAV Coverage for Downlink in Disasters: Precoding and Multi-hop D2D

Xiaonan Liu, Guan Gui, Nan Zhao, W. Meng, Zan Li, Yunfei Chen, F. Adachi
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引用次数: 9

Abstract

Unmanned aerial vehicles (UAVs) can be exploited to provide emergency coverage in disasters, due to its mobility and flexibility. In this paper, we propose multi-antenna precoding design and multi-hop device-to-device (D2D) communication to guarantee the reliable transmission and extend the UAV coverage for downlink in disasters. Firstly, multi-hop D2D links are established to extend the coverage of UAV emergency networks with limited transmit power. In particular, a shortest-path-routing algorithm is proposed to establish the D2D links rapidly with minimum nodes, with closed-form solutions for the number of hops derived. Secondly, the precoding design for the UAV downlink is studied, to optimize the performance of UAV transmission. Due to the non-convexity of the problem, a second-order-cone programming based algorithm is proposed to solve it efficiently. Simulation results show the effectiveness of the proposed schemes for UAV coverage in disasters.
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灾害中无人机下行覆盖:预编码和多跳D2D
由于无人机的机动性和灵活性,可以利用无人机在灾害中提供应急覆盖。本文提出了多天线预编码设计和多跳设备对设备(D2D)通信,以保证无人机在灾害情况下的可靠传输和扩展下行覆盖。首先,建立多跳D2D链路,在发射功率有限的情况下扩大无人机应急网络的覆盖范围;特别地,提出了一种最短路径路由算法,以最小节点快速建立D2D链路,并导出了跳数的封闭解。其次,研究了无人机下行链路的预编码设计,优化了无人机的传输性能。针对该问题的非凸性,提出了一种基于二阶锥规划的算法来有效地求解该问题。仿真结果表明了所提方案对无人机灾害覆盖的有效性。
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