Progressive Ad-Hoc Route Reconstruction Using Distributed Uav Relays After A Large-Scale Failure

2018 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE (WCNC)(2018)

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摘要
In this paper, we address a route reconstruction problem using Unmanned Aerial Vehicles (UAVs) after a large-scale disaster where stationary ad-hoc networks are severely destructed. The main goal of this paper is to improve routing performance in a progressive manner by reconnecting partitioned networks through dispatched UAV relays. Our proposed algorithm uses two types of UAVs: global and local UAVs to collaboratively find the best deployment position in a dynamically changing environment. To obtain terrestrial network connectivity information and extract high-level network topology, we exploit the concept of strongly connected component in graph theory. Based on the understanding from a global point view, global UAVs recommend the most effective deployment positions to local UAVs so that they are deployed as relays in more critically disrupted areas. Simulation-based experiments validate that our distributed route reconstruction algorithm outperforms a counterpart algorithm in terms of steady-state and dynamic routing performance.
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关键词
large-scale failure,Unmanned Aerial Vehicles,large-scale disaster,stationary ad-hoc networks,partitioned networks,dispatched UAV relays,local UAVs,terrestrial network connectivity information,high-level network topology,strongly connected component,global UAVs,distributed route reconstruction algorithm,progressive ad-hoc route reconstruction problem
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