DocumentCode
1831643
Title
A Probablistic Load-Balancing Convergecast Tree Algorithm for Heterogeneous Wireless Sensor Networks
Author
Chen, Chia-Pang ; Wang, Jiing-Yi ; Chuang, Cheng-Long ; Lai, Tzu-Yun ; Jiang, Joe-Air
Author_Institution
Dept. of Bio-Ind. Mechatron. Eng., Nat. Taiwan Univ., Taipei, Taiwan
fYear
2012
fDate
25-27 June 2012
Firstpage
1624
Lastpage
1628
Abstract
Prolonging network lifetime of wireless sensor networks (WSNs) is a challenging task because of the heterogeneity among sensor nodes inherited from real worlds in forms of different residual energy, transmission speed, transmission range, and nodal traffic. Thus, it is necessary to consider the impact of the heterogeneities when trying to balance the energy consumption in sensor nodes. In this paper, we present a distributed probabilistic load-balancing converge cast tree algorithm (PLCTA) to address the heterogeneity issues in terms of nodal traffic burden and residual energy by dynamically forming converge cast routing trees. For these purpose, a selfish weight assignment approach is easily applied to nodes and able to automatically adjust the weight of each link between a node and its candidate parent nodes using local information. When nodes try to get their own benefit, such as saving energy and reducing traffic burden, they implicitly help construct the load balanced converge cast tree. Simulation results show that our proposed PLCTA indeed improves the routing efficiency through the load balance strategy designed for heterogeneous WSNs and leads to network lifetime prolongation.
Keywords
distributed algorithms; resource allocation; telecommunication network routing; telecommunication traffic; trees (mathematics); wireless sensor networks; PLCTA; convergecast routing trees; distributed probabilistic load-balancing convergecast tree algorithm; energy consumption; heterogeneous WSN; heterogeneous wireless sensor networks; load balance strategy; network lifetime prolongation; nodal traffic; probablistic load-balancing convergecast tree algorithm; prolonging network lifetime; residual energy; routing efficiency; selfish weight assignment approach; sensor nodes; transmission range; transmission speed; Equations; Load modeling; Mathematical model; Relays; Routing; Sensors; Wireless sensor networks; component; convergecast tree algorithm; heterogenous wireless networks; load balance;
fLanguage
English
Publisher
ieee
Conference_Titel
High Performance Computing and Communication & 2012 IEEE 9th International Conference on Embedded Software and Systems (HPCC-ICESS), 2012 IEEE 14th International Conference on
Conference_Location
Liverpool
Print_ISBN
978-1-4673-2164-8
Type
conf
DOI
10.1109/HPCC.2012.237
Filename
6332372
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