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Energy-aware joint power, packet and topology optimization by simulated annealing for WSNs

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Autore
Xenakis, A.; Foukalas, F.; Stamoulis, G.; Khattab, T.
Data
2013
DOI
10.1109/IEEEGCC.2013.6705741
Soggetto
optimization
packet transmission
simulated annealing
topology control
transmit power
wireless sensor networks
Automatic repeat request
Communication mechanisms
Feed back information
Optimization problems
Packet transmissions
Wireless sensor network (WSNs)
Energy utilization
Exhibitions
Heuristic methods
Packet networks
Power control
Sensor nodes
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Abstract
Energy-aware connectivity in wireless sensor networks (WSNs) can increase their network lifetime. This can be achieved by optimizing the power control, a particular communication mechanism and the topology control. To this end, in this paper', an energy-aware joint power, packet and topology optimization for WSNs is provided. More specifically, we assume power control based on feedback information, packet transmission through automatic-repeat-request(ARQ) mechanism and topology control assuming specific coverage constraints. This particular joint optimization problem is considered as NP-complete and heuristic methods are usually applied in such complicated cases. In particular, we employ Simulated Annealing (SA) for a step-by-step evaluation of the average energy consumption of sensor nodes, which is considered the objective function of our optimization problem. In each step of the SA algorithm, the resultant topology is evaluated and at the convergence point the near optimal transmit power and packet as well as node placements are obtained jointly. © 2013 IEEE.
URI
http://hdl.handle.net/11615/34695
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