无人机操作认知通信方案

Zhengjia Xu, I. Petrunin, A. Tsourdos, Mondal Sabyasachi, Alex A. Williamson
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引用次数: 2

摘要

智能和敏捷的无线通信方案是为无人机(uav)作战提供高效空对地(A2G)通信的关键因素。为此,我们审查并提出了一种航空认知通信系统(ACCS)架构,该架构将在地面控制站(GCSs)和利用认知无线电(CR)概念的多架无人机之间提供指挥、控制和通信(C3)链接。在设计过程中审查和考虑的因素包括认知探测器的拓扑结构、认知探测器与控制机构之间的连通性、与无人交通管理(UTM)系统的连接、认知方案对数据链路的要求、故障通知和恢复等。提出的ACCS适合支持无人机作战,采用地面区域GCS网络、静态上行和灵活下行的混合数据链组成的分布式非通信架构,整体呈现动态性,并根据当前频谱环境周期性生成频率切换方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cognitive Communication Scheme for Unmanned Aerial Vehicle Operation
An intelligent and agile wireless communication scheme is a key factor in provision of efficient air-to-ground (A2G) communication for unmanned aerial vehicles (UAVs) operations. For this purpose we review and propose an architecture for aeronautical cognitive communication system (ACCS) that will be providing command, control and communication (C3) link between ground control stations (GCSs) and multiple UAVs utilizing cognitive radio (CR) concept. The factors reviewed and accounted for in the design process are the topology of cognitive detectors, connectivity between cognitive detector and control agency, connection with unmanned traffic management (UTM) system, data link requirements imposed by cognitive scheme, failure notification and recovery, etc. The proposed ACCS is suitable for supporting UAV operations and features a distributed non-communication architecture consisting of GCS network in the ground zone, hybrid data link with the static uplink and the flexible downlink, demonstrating a dynamic nature overall with the frequency handoff scheme generated periodically in accordance with current spectrum environment.
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