DocumentCode :
64394
Title :
The Impact of Transmission Power Control Strategies on Lifetime of Wireless Sensor Networks
Author :
Cotuk, Huseyin ; Bicakci, Kemal ; Tavli, Bulent ; Uzun, Ersin
Author_Institution :
TOBB Univ. of Econ. & Technol., Ankara, Turkey
Volume :
63
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
2866
Lastpage :
2879
Abstract :
Transmission power control has paramount importance in the design of energy-efficient wireless sensor networks (WSNs). In this paper, we systematically explore the effects of various transmission power control strategies on WSN lifetime with an emphasis on discretization of power levels and strategies for transmission power assignment. We investigate the effects of the granularity of power levels on energy dissipation characteristics through a linear programming framework by modifying a well known and heavily utilized continuous transmission power model (HCB model). We also investigate various transmission power assignment strategies by using two sets of experimental data on Mica motes. A novel family of mathematical programming models are developed to analyze the performance of these strategies. Bandwidth requirements of the proposed transmission power assignment strategies are also investigated. Numerical analysis of our models are performed to characterize the effects of various design parameters and to comparethe relative performance of transmission power assignment strategies. Our results show that the granularity of discrete energy consumption has a profound impact on WSN lifetime, furthermore, more fine-grained control of transmission power (i.e., link level control) can extend network lifetime up to 20% in comparison to optimally-assigned network-level single transmission power.
Keywords :
linear programming; wireless sensor networks; HCB model; Mica motes; WSN lifetime; continuous transmission power model; energy-efficient wireless sensor networks; linear programming framework; mathematical programming models; transmission power assignment strategies; transmission power control strategy; Bandwidth; Base stations; Energy dissipation; Mathematical model; Numerical models; Power control; Wireless sensor networks; Wireless sensor networks; bandwidth; discrete power levels; energy efficiency; linear programming; mathematical programming; mixed integer programming; network lifetime; transmission power control;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.2013.151
Filename :
6572782
Link To Document :
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