A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET

Constructing a virtual backbone network can efficiently concentrate most routing and forwarding operations of whole network into several dominating nodes in the virtual backbone sub-net, which is recently developing into an attracted candidate solution for the architectures of terrestrial mobile ad...

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Main Authors: Qi Xiaohan, Yang Zhihua
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201818903013
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spelling doaj-7cd3afd08e2b41358a5f3919dad8c9352021-02-02T05:02:08ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011890301310.1051/matecconf/201818903013matecconf_meamt2018_03013A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANETQi XiaohanYang ZhihuaConstructing a virtual backbone network can efficiently concentrate most routing and forwarding operations of whole network into several dominating nodes in the virtual backbone sub-net, which is recently developing into an attracted candidate solution for the architectures of terrestrial mobile ad hoc networks. In a flying ad hoc network (FANET), however, high dynamics of nodes and scenarios produce considerably large challenges on the topology control and maintenance due to rapidly timevarying property of topology. In this paper, therefore, we proposed a link prediction-based minimal connected dominating set (MCDS) dependent topology control mechanism to achieve efficient maintenances of connectivity in the network. In particular, the proposed algorithm could provide a stable and effective virtual backbone sub-net in a fast changing topology of FANET, by flexibly scheduling multiple MCDS with a very efficient method. The simulation results shows that, compared with typical single CDS method, the proposed algorithm presents excellent performances in obviously dynamic environments with respect to fewer update times and higher rate of successful updates.https://doi.org/10.1051/matecconf/201818903013
collection DOAJ
language English
format Article
sources DOAJ
author Qi Xiaohan
Yang Zhihua
spellingShingle Qi Xiaohan
Yang Zhihua
A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
MATEC Web of Conferences
author_facet Qi Xiaohan
Yang Zhihua
author_sort Qi Xiaohan
title A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
title_short A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
title_full A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
title_fullStr A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
title_full_unstemmed A Multi-MCDS scheduling based virtual backbone network construction and maintenance algorithm in FANET
title_sort multi-mcds scheduling based virtual backbone network construction and maintenance algorithm in fanet
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Constructing a virtual backbone network can efficiently concentrate most routing and forwarding operations of whole network into several dominating nodes in the virtual backbone sub-net, which is recently developing into an attracted candidate solution for the architectures of terrestrial mobile ad hoc networks. In a flying ad hoc network (FANET), however, high dynamics of nodes and scenarios produce considerably large challenges on the topology control and maintenance due to rapidly timevarying property of topology. In this paper, therefore, we proposed a link prediction-based minimal connected dominating set (MCDS) dependent topology control mechanism to achieve efficient maintenances of connectivity in the network. In particular, the proposed algorithm could provide a stable and effective virtual backbone sub-net in a fast changing topology of FANET, by flexibly scheduling multiple MCDS with a very efficient method. The simulation results shows that, compared with typical single CDS method, the proposed algorithm presents excellent performances in obviously dynamic environments with respect to fewer update times and higher rate of successful updates.
url https://doi.org/10.1051/matecconf/201818903013
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