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Energy Hole Mitigation through Cooperative Transmission in Wireless Sensor Networks
Author(s) -
Li Fei,
Yi Chen,
Qiang Gao,
Xiaohong Peng,
Qiong Li
Publication year - 2015
Publication title -
international journal of distributed sensor networks
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.324
H-Index - 53
eISSN - 1550-1477
pISSN - 1550-1329
DOI - 10.1155/2015/757481
Subject(s) - computer science , wireless sensor network , maximization , energy consumption , transmission (telecommunications) , mathematical optimization , computer network , energy (signal processing) , node (physics) , hop (telecommunications) , wireless , optimization problem , efficient energy use , minification , distributed computing , algorithm , telecommunications , electrical engineering , mathematics , statistics , structural engineering , programming language , engineering
The energy balancing capability of cooperative communication is utilized to solve the energy hole problem in wireless sensor networks. We first propose a cooperative transmission strategy, where intermediate nodes participate in two cooperative multi-input single-output (MISO) transmissions with the node at the previous hop and a selected node at the next hop, respectively. Then, we study the optimization problems for power allocation of the cooperative transmission strategy by examining two different approaches: network lifetime maximization (NLM) and energy consumption minimization (ECM). For NLM, the numerical optimal solution is derived and a searching algorithm for suboptimal solution is provided when the optimal solution does not exist. For ECM, a closed-form solution is obtained. Numerical and simulation results show that both the approaches have much longer network lifetime than SISO transmission strategies and other cooperative communication schemes. Moreover, NLM which features energy balancing outperforms ECM which focuses on energy efficiency, in the network lifetime sense.

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