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Active node determination for correlated data gathering in wireless sensor networks
Authors:Efe Karasabun  Ibrahim Korpeoglu  Cevdet Aykanat
Affiliation:1. ICTEAM, Université catholique de Louvain, Louvain-la-Neuve, Belgium;2. LSIIT, Université de Strasbourg, Strasbourg, France;1. Department of Electrical Engineering, KAIST, Daejeon, South Korea;2. Communication Lab., LIG Nex1, Seongnam-City, Gyeonggi-do, South Korea;1. School of Mathematics, Statistics and Computer Science, College of Science, University of Tehran, Tehran, Iran;2. Department of Electrical Engineering, Sharif University of Technology, Tehran, Iran;1. Vienna University of Technology, Institute of Telecommunications, Favoritenstrasse 9-11/389, 1040 Vienna, Austria;2. Department of Information Technology (INTEC) of Ghent University – iMinds, Gaston Crommenlaan 8, B-9050 Gent, Belgium
Abstract:In wireless sensor network applications where data gathered by different sensor nodes is correlated, not all sensor nodes need to be active for the wireless sensor network to be functional. Given that the sensor nodes that are selected as active form a connected wireless network, the inactive sensor nodes can be turned off. Allowing some sensor nodes to be active and some sensor nodes inactive interchangably during the lifecycle of the application helps the wireless sensor network to have a longer lifetime. The problem of determining a set of active sensor nodes in a correlated data environment for a fully operational wireless sensor network can be formulated as an instance of the connected correlation-dominating set problem. In this work, our contribution is twofold; we propose an effective and runtime-efficient iterative improvement heuristic to solve the active sensor node determination problem, and a benefit function that aims to minimize the number of active sensor nodes while maximizing the residual energy levels of the selected active sensor nodes. Extensive simulations we performed show that the proposed approach achieves a good performance in terms of both network lifetime and runtime efficiency.
Keywords:
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