A wireless sensor network (WSN) is a network of distributed nodes, each equipped with sensors, computational elements, and transceivers. These networks are able to sense a desired phenomenon over a large geographic region and communicate this information back to the user or to a sink. While the use of these networks has been demonstrated, their full capabilities have not been realized, primarily due to the lack of efficient algorithms for self organization and fault tolerant operation. A fundamental issue in the deployment of a large scale WSN is the ability of the network to cover the region of interest. While it is important to know if the region is covered by the deployed sensor nodes, it is of even greater importance to determine the minimum number of these deployed sensors that will still guarantee coverage of the region. This issue takes on added importance as the sensor nodes have limited battery power. In this book, the coverage problem in a three dimensional space is rigorously analyzed and the minimum number of sensor nodes and their placement for complete coverage is determined.
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A wireless sensor network (WSN) is a network of distributed nodes, each equipped with sensors, computational elements, and transceivers. These networks are able to sense a desired phenomenon over a large geographic region and communicate this information back to the user or to a sink. While the use of these networks has been demonstrated, their full capabilities have not been realized, primarily due to the lack of efficient algorithms for self organization and fault tolerant operation. A fundamental issue in the deployment of a large scale WSN is the ability of the network to cover the region of interest. While it is important to know if the region is covered by the deployed sensor nodes, it is of even greater importance to determine the minimum number of these deployed sensors that will still guarantee coverage of the region. This issue takes on added importance as the sensor nodes have limited battery power. In this book, the coverage problem in a three dimensional space is rigorously analyzed and the minimum number of sensor nodes and their placement for complete coverage is determined.
Dr. Mohamed K. Watfa has held faculty positions at several universities including Univ. of Wollongong and AUB. He received his Ph.D. from the Univ. of Oklahoma in 2006 and was one of the youngest PhD holders at the age of 23. His research interests include wireless sensor networks & VANETs. He has more than 40 peer reviewed publications.
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Kartoniert / Broschiert. Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Watfa Mohamed KhalilDr. Mohamed K. Watfa has held faculty positions at several nuniversities including Univ. of Wollongong and AUB. He received nhis Ph.D. from the Univ. of Oklahoma in 2006 and was one of nthe youngest PhD holders at. N° de réf. du vendeur 4964064
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Taschenbuch. Etat : Neu. Coverage Strategies in Wireless Sensor Networks | A rigorous analysis | Mohamed Khalil Watfa | Taschenbuch | Einband - flex.(Paperback) | Englisch | 2009 | VDM Verlag Dr. Müller | EAN 9783639173352 | Verantwortliche Person für die EU: OmniScriptum GmbH & Co. KG, Bahnhofstr. 28, 66111 Saarbrücken, info[at]akademikerverlag[dot]de | Anbieter: preigu. N° de réf. du vendeur 101539966
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - A wireless sensor network (WSN) is a network of distributed nodes, each equipped with sensors, computational elements, and transceivers. These networks are able to sense a desired phenomenon over a large geographic region and communicate this information back to the user or to a sink. While the use of these networks has been demonstrated, their full capabilities have not been realized, primarily due to the lack of efficient algorithms for self organization and fault tolerant operation. A fundamental issue in the deployment of a large scale WSN is the ability of the network to cover the region of interest. While it is important to know if the region is covered by the deployed sensor nodes, it is of even greater importance to determine the minimum number of these deployed sensors that will still guarantee coverage of the region. This issue takes on added importance as the sensor nodes have limited battery power. In this book, the coverage problem in a three dimensional space is rigorously analyzed and the minimum number of sensor nodes and their placement for complete coverage is determined. N° de réf. du vendeur 9783639173352
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