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Design of Ad Hoc Wireless Mesh Networks Formed by Unmanned Aerial Vehicles with Advanced Mechanical Automation

机译:具有先进机械自动化的无人机组成的Ad Hoc无线网状网络设计

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Ad hoc wireless mesh networks formed by unmanned aerial vehicles (UAVs) equipped with wireless transceivers (access points (APs)) are increasingly being touted as being able to provide a flexible "on-the-fly" communications infrastructure that can collect and transmit sensor data from sensors in remote, wilderness, or disaster-hit areas. Recent advances in the mechanical automation of UAVs have resulted in separable APs and replaceable batteries that can be carried by UAVs and placed at arbitrary locations in the field. These advanced mechanized UAV mesh networks pose interesting questions in terms of the design of the network model and the optimal UAV scheduling algorithms. This paper proposes the design of wireless mesh networks that depend on the mechanized automation (AP separation and battery replacement) capabilities of UAVs, which includes mathematical formulations and heuristic UAV scheduling algorithms for each network model. Through performance evaluation, the proposed design is benchmarked against the theoretical lower bound.
机译:由配备有无线收发器(接入点(AP))的无人机(UAV)形成的自组织无线网状网络越来越受到吹捧,因为它能够提供可以收集和传输传感器的灵活的“实时”通信基础架构来自偏远,荒野或受灾地区的传感器的数据。无人机机械自动化的最新进展已导致可分离的AP和可更换的电池可以由无人机携带并放置在现场的任意位置。这些先进的机械化无人机网状网络在网络模型的设计和最佳无人机调度算法方面提出了有趣的问题。本文提出了一种基于无人机的机械化自动化(AP分离和电池更换)功能的无线网状网络设计,其中包括针对每种网络模型的数学公式和启发式UAV调度算法。通过性能评估,所提出的设计以理论下限为基准。

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