Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model

In this paper we have presented a physical implementation of a topology control algorithm for MANETs. Mobile nodes follow the characteristics of the Pursue Mobility model. There is no need to change routing table as connectivity of the network is maintained all through. Every node in the network is...

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Main Authors: C. K. Sarkar, Mrinal K. Naskar, Surendra S. Dalu
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2008-01-01
Series:Journal of Applied Computer Science & Mathematics
Subjects:
Online Access:http://www.jacs.usv.ro/getpdf.php?issue=4&paperid=42
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spelling doaj-959d1209d1ea4f9ebc531721bc4f693a2020-11-24T23:27:30ZengStefan cel Mare University of SuceavaJournal of Applied Computer Science & Mathematics2066-42732066-31292008-01-01241420Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility ModelC. K. SarkarMrinal K. NaskarSurendra S. DaluIn this paper we have presented a physical implementation of a topology control algorithm for MANETs. Mobile nodes follow the characteristics of the Pursue Mobility model. There is no need to change routing table as connectivity of the network is maintained all through. Every node in the network is free to travel with its own velocity. Individual node can take the decision on its own to change the velocity for maintaining the connectivity with the node being pursued (target node). Each mobile node is equipped with a transceiver and a GPS receiver. Target node transmits its velocity and coordinate information periodically to all pursuer mobile nodes in a network. The pursuer nodes, after receiving this information from the target node, will modify its own velocity, if required, to maintain the topology. Results obtained through the experimentation with the prototype developed, demonstrate that the connectivity and hence the topology of the network is maintained always.http://www.jacs.usv.ro/getpdf.php?issue=4&paperid=42Mobile Ad hoc NetworksTopology ControlPursue Mobility ModelHardware Implementation
collection DOAJ
language English
format Article
sources DOAJ
author C. K. Sarkar
Mrinal K. Naskar
Surendra S. Dalu
spellingShingle C. K. Sarkar
Mrinal K. Naskar
Surendra S. Dalu
Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
Journal of Applied Computer Science & Mathematics
Mobile Ad hoc Networks
Topology Control
Pursue Mobility Model
Hardware Implementation
author_facet C. K. Sarkar
Mrinal K. Naskar
Surendra S. Dalu
author_sort C. K. Sarkar
title Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
title_short Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
title_full Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
title_fullStr Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
title_full_unstemmed Implementation of a Topology Control Algorithm for Mobile Ad hoc Networks Using Pursue Mobility Model
title_sort implementation of a topology control algorithm for mobile ad hoc networks using pursue mobility model
publisher Stefan cel Mare University of Suceava
series Journal of Applied Computer Science & Mathematics
issn 2066-4273
2066-3129
publishDate 2008-01-01
description In this paper we have presented a physical implementation of a topology control algorithm for MANETs. Mobile nodes follow the characteristics of the Pursue Mobility model. There is no need to change routing table as connectivity of the network is maintained all through. Every node in the network is free to travel with its own velocity. Individual node can take the decision on its own to change the velocity for maintaining the connectivity with the node being pursued (target node). Each mobile node is equipped with a transceiver and a GPS receiver. Target node transmits its velocity and coordinate information periodically to all pursuer mobile nodes in a network. The pursuer nodes, after receiving this information from the target node, will modify its own velocity, if required, to maintain the topology. Results obtained through the experimentation with the prototype developed, demonstrate that the connectivity and hence the topology of the network is maintained always.
topic Mobile Ad hoc Networks
Topology Control
Pursue Mobility Model
Hardware Implementation
url http://www.jacs.usv.ro/getpdf.php?issue=4&paperid=42
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