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An energy-aware distributed clustering protocol in wireless sensor networks using fuzzy logic
Authors:Hoda Taheri  Peyman Neamatollahi  Ossama Mohamed Younis  Shahrzad Naghibzadeh  Mohammad Hossein Yaghmaee
Affiliation:1. International School of Software, Wuhan University, 37 Luoyu Road, Wuhan, Hubei 430079, China;2. School of Informatics and Computing, Indiana University Bloomington, 150 S. Woodlawn Avenue Bloomington, IN 47405, United States;1. School of Information Technology, Nanjing University of Chinese Medicine, China;2. School of Computer Science and Engineering, Nanjing University of Science and Technology, China;3. School of Computer Science and Technology, Nanjing Normal University, China
Abstract:Clustering is an effective approach for organizing a network into a connected hierarchy, load balancing, and prolonging the network lifetime. On the other hand, fuzzy logic is capable of wisely blending different parameters. This paper proposes an energy-aware distributed dynamic clustering protocol (ECPF) which applies three techniques: (1) non-probabilistic cluster head (CH) elections, (2) fuzzy logic, and (3) on demand clustering. The remaining energy of the nodes is the primary parameter for electing tentative CHs via a non-probabilistic fashion. A non-probabilistic CH election is implemented by introducing a delay inversely proportional to the residual energy of each node. Therefore, tentative CHs are selected based on their remaining energy. In addition, fuzzy logic is employed to evaluate the fitness (cost) of a node in order to choose a final CH from the set of neighboring tentative CHs. On the other hand, every regular (non CH) node elects to connect to the CH with the least fuzzy cost in its neighborhood. Besides, in ECPF, CH elections are performed sporadically (in contrast to performing it every round). Simulation results demonstrate that our approach performs better than well known protocols (LEACH, HEED, and CHEF) in terms of extending network lifetime and saving energy.
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