TY - GEN
T1 - Network connectivity under probabilistic communication models in wireless sensor networks
AU - Hefeeda, Mohamed
AU - Ahmadi, Hossein
PY - 2007/10/11
Y1 - 2007/10/11
N2 - Several previous works have experimentally shown that communication ranges of sensors are not regular disks. Rather, they follow probabilistic models. Yet, many current connectivity maintenance protocols assume the disk communication model for convenience and ease of analysis. In addition, current protocols do not provide any assessment of the quality of communication between nodes. In this paper, we take a first step in designing connectivity maintenance protocols for more realistic communication models. We propose a distributed connectivity maintenance protocol that explicitly accounts for the probabilistic nature of communication links and achieves a given target communication quality between nodes. Our protocol is simple to implement, and we demonstrate its robustness against random node failures, inaccuracy of node locations, and imperfect time synchronization of nodes using extensive simulations. We compare our protocol against others in the literature and show that it activates fewer number of nodes, consumes much less energy, and significantly prolongs the network lifetime.
AB - Several previous works have experimentally shown that communication ranges of sensors are not regular disks. Rather, they follow probabilistic models. Yet, many current connectivity maintenance protocols assume the disk communication model for convenience and ease of analysis. In addition, current protocols do not provide any assessment of the quality of communication between nodes. In this paper, we take a first step in designing connectivity maintenance protocols for more realistic communication models. We propose a distributed connectivity maintenance protocol that explicitly accounts for the probabilistic nature of communication links and achieves a given target communication quality between nodes. Our protocol is simple to implement, and we demonstrate its robustness against random node failures, inaccuracy of node locations, and imperfect time synchronization of nodes using extensive simulations. We compare our protocol against others in the literature and show that it activates fewer number of nodes, consumes much less energy, and significantly prolongs the network lifetime.
UR - https://www.scopus.com/pages/publications/45849099977
U2 - 10.1109/MOBHOC.2007.4428600
DO - 10.1109/MOBHOC.2007.4428600
M3 - Conference contribution
AN - SCOPUS:45849099977
SN - 1424414555
SN - 9781424414550
T3 - 2007 IEEE Internatonal Conference on Mobile Adhoc and Sensor Systems, MASS
BT - 2007 IEEE Internatonal Conference on Mobile Adhoc and Sensor Systems, MASS
T2 - 2007 IEEE Internatonal Conference on Mobile Adhoc and Sensor Systems, MASS
Y2 - 8 October 2007 through 11 October 2007
ER -