Title
Energy Efficient Duty Cycle Design based on Quantum Immune Clonal Evolutionary Algorithm in Body Area Networks.
Abstract
Duty cycle design is an important topic in body area networks. As small sensors are equipped with the limited power source, the extension of network lifetime is generally achieved by reducing the network energy consumption, for instance through duty cycle schemes. However, the duty cycle design is a highly complex NP-hard problem and its computational complexity is too high with exhaustive search algorithm for practical implementation. In order to extend the network lifetime, we proposed a novel quantum immune clonal evolutionary algorithm (QICEA) for duty cycle design while maintaining full coverage in the monitoring area. The QICEA is tested, and a performance comparison is made with simulated annealing (SA) and genetic algorithm (GA). Simulation results show that compared to the SA and the GA, the proposed QICEA can extending the lifetime of body area networks and enhancing the energy efficiency effectively.
Year
DOI
Venue
2015
10.4108/eai.28-9-2015.2261427
BODYNETS
Field
DocType
Volume
Quantum,Evolutionary algorithm,Duty cycle,Efficient energy use,Engineering,Distributed computing
Conference
3
Issue
ISSN
Citations 
9
2032-944X
0
PageRank 
References 
Authors
0.34
0
5
Name
Order
Citations
PageRank
Jie Zhou1232.92
Eryk Dutkiewicz2891122.78
Ren Ping Liu349862.73
Gengfa Fang412824.24
Yuanan Liu523.06