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Impact of the error sensing probability in wide coverage areas of clustered-based wireless sensor networks
Author(s) -
Edgar Romo-Montiel,
Mario E. Rivero-Ángeles,
Iclia Villordo-Jiménez,
Herón Molina-Lozano
Publication year - 2016
Publication title -
revista facultad de ingeniería universidad de antioquia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.16
H-Index - 12
eISSN - 2422-2844
pISSN - 0120-6230
DOI - 10.17533/udea.redin.n79a07
Subject(s) - wireless sensor network , computer science , interference (communication) , transmission (telecommunications) , channel (broadcasting) , computer network , cluster analysis , wireless , radius , key distribution in wireless sensor networks , real time computing , base station , mobile wireless sensor network , energy consumption , wireless network , telecommunications , engineering , electrical engineering , artificial intelligence
Wireless sensor networks are composed by a big number of autonomous nodes surveying a certain environmental parameter, such as temperature, humidity or even mobile targets. In this work we focus on mobile target detection in wide area systems such as tracking animals in a forest or vehicle detection in security missions. Specifically, a low energy consumption clustering protocol is proposed, analyzed and studied. To this end, two communication schemes, based on the well-known LEACH protocol are proposed. The performance of the system is studied by means of a mathematical model that describes the behavior of the network under the most relevant parameters such as coverage radius, transmission radius, and number of nodes inside the network, Additionally, the transmission probability in the cluster formation phase is studied under realistic considerations of a wireless channel, where signal detection errors occur due to interference and noise in the access channel.

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