A novel wireless sensor network topology with fewer links
Abstract
This paper, based on -NN graph, presents symmetric -NN graph , a brand new topology which could be adopted by a series of network-based structures. We show that the nearest neighbors of a node exert disparate influence on guaranteeing network connectivity, and connections with the farthest ones among these neighbors are competent to build up a connected network, contrast to the current popular strategy of connecting all these neighbors. In particular, for a network with node amount up to , as experiments demonstrate, connecting with the farthest three, rather than all, of the five nearest neighbor nodes, i.e. , can guarantee the network connectivity in high probabilities. We further reveal that more than links or edges in -NN graph are not necessary for the connectivity. Moreover, a composite topology combining symmetric -NN and random geometric graph (RGG) is constructed for constrained transmission radii in wireless sensor networks (WSNs) application.
Keywords
Cite
@article{arxiv.1410.7955,
title = {A novel wireless sensor network topology with fewer links},
author = {Jie Ding and Min-Yi Wang and Qiao Wang and Xin-Shan Zhu},
journal= {arXiv preprint arXiv:1410.7955},
year = {2014}
}