Title :
Minimum-Transmission Broadcast in Uncoordinated Duty-Cycled Wireless Ad Hoc Networks
Author :
Hong, Jue ; Cao, Jiannong ; Li, Wenzhong ; Lu, Sanglu ; Chen, Daoxu
Author_Institution :
Nanjing Univ., Nanjing, China
Abstract :
Broadcast is a fundamental operation of wireless ad hoc networks (WANETs) and has widely been studied over the past few decades. However, most existing broadcasting strategies assume nonsleeping wireless nodes and thus are not suitable for uncoordinated duty-cycled WANETs, in which each node periodically switches on and off to save energy. In this paper, we study the minimum-transmission broadcast problem in uncoordinated duty-cycled WANETs (MTB-UD problem) and prove its NP-hardness. We show that modifications of existing broadcast approaches can only provide a linear approximation ratio of O(n) (where n is the number of nodes in the network). We propose a novel set-cover-based approximation (SCA) scheme with both centralized and distributed approximation algorithms. The centralized SCA (CSCA) algorithm has a logarithmic approximation ratio of 3(ln ?? + 1) and time complexity of O(n 3) (?? is the maximum degree of the network). The distributed SCA (DSCA) algorithm has a constant approximation ratio of at most 20 while keeping both linear time and message complexities. We have conducted both theoretical analysis and simulations to evaluate the performance of the proposed algorithms. Results show that both the CSCA and DSCA algorithms outperform the modified versions of existing broadcast approaches by at least 50%.
Keywords :
ad hoc networks; broadcasting; computational complexity; distributed algorithms; NP-hardness; WANET; centralized approximation algorithm; distributed approximation algorithm; linear approximation ratio; message complexity; minimum-transmission broadcast; nonsleeping wireless nodes; set-cover-based approximation scheme; theoretical analysis; time complexity; uncoordinated duty-cycled wireless ad hoc networks; Approximation algorithm; NP hard; duty cycle; minimum-transmission broadcast (MTB); wireless ad hoc network (WANET);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2009.2030203