A cooperative game theoretic approach to clustering algorithms for wireless sensor networks

As one of the most widely investigated topology control mechanisms of wireless sensor networks (WSNs), the clustering algorithm provides energy efficient communications by reducing transmission overhead and enhancing transmission reliability. Through the previous forms of noncooperative games, the behavior of each sensor node (SN) is individual in WSNs; accordingly, it engenders uneven distribution of residual energy across SNs and expedites network partition. To balance energy consumption of SNs and increase network lifetime and stability, a cooperative game theoretic model of clustering algorithms is provided for assigning feasible allocations of energy cost. Moreover, from the outcome of this model, we propose and analyze a cooperative clustering approach for global optimization with the capacity of sensing data transmission and energy efficiency. The key idea is that SNs should trade off individual cost with network-wide cost. In the algorithm, we develop conditions to form coalitions considering residual energy, transmission distance and number of SNs in a cluster adapting to various WSNs. Furthermore, we present performance evaluation and comparison of the existing clustering algorithms with our approach quantitatively with respect to network lifetime, data transmission capacity and energy efficiency. Comparing with other approaches through the simulation, our scheme can surely guarantee to prolong network life-time and improve data transmission capacity up to 5.8% and 35.9%, respectively.

[1]  Tim Roughgarden,et al.  Algorithmic Game Theory , 2007 .

[2]  Levente Buttyán,et al.  Nash equilibria of packet forwarding strategies in wireless ad hoc networks , 2006, IEEE Transactions on Mobile Computing.

[3]  Dirk Timmermann,et al.  Low energy adaptive clustering hierarchy with deterministic cluster-head selection , 2002, 4th International Workshop on Mobile and Wireless Communications Network.

[4]  Sirin Tekinay,et al.  A survey of game-theoretic approaches in wireless sensor networks , 2008, Comput. Networks.

[5]  Ameer Ahmed Abbasi,et al.  A survey on clustering algorithms for wireless sensor networks , 2007, Comput. Commun..

[6]  Tai-Myung Chung,et al.  Energy-Efficient Distance Based Clustering Routing Scheme for Wireless Sensor Networks , 2007, ICCSA.

[7]  Ian F. Akyildiz,et al.  Wireless sensor networks: a survey , 2002, Comput. Networks.

[8]  Anantha P. Chandrakasan,et al.  An application-specific protocol architecture for wireless microsensor networks , 2002, IEEE Trans. Wirel. Commun..

[9]  Anna Hać,et al.  Wireless Sensor Network Designs , 2003 .

[10]  Mohamed F. Younis,et al.  Energy-aware management for cluster-based sensor networks , 2003, Comput. Networks.

[11]  Ossama Younis,et al.  HEED: a hybrid, energy-efficient, distributed clustering approach for ad hoc sensor networks , 2004, IEEE Transactions on Mobile Computing.

[12]  Zheng Zeng-Wei,et al.  Clustering routing algorithm using game-theoretic techniques for WSNs , 2004, 2004 IEEE International Symposium on Circuits and Systems (IEEE Cat. No.04CH37512).

[13]  Wendi B. Heinzelman,et al.  Application-specific protocol architectures for wireless networks , 2000 .