Title :
Distributed prevention mechanism for network partitioning in wireless sensor networks
Author :
Lili Wang ; Xiaobei Wu
Author_Institution :
Sch. of Autom., Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
Connectivity is a crucial quality of service measure in wireless sensor networks. However, the network is always at risk of being split into several disconnected components owing to the sensor failures caused by various factors. To handle the connectivity problem, this paper introduces an in-advance mechanism to prevent network partitioning in the initial deployment phase. The approach is implemented in a distributed manner, and every node only needs to know local information of its 1-hop neighbors, which makes the approach scalable to large networks. The goal of the proposed mechanism is twofold. First, critical nodes are locally detected by the critical node detection (CND) algorithm based on the concept of maximal simplicial complex, and backups are arranged to tolerate their failures. Second, under a greedy rule, topological holes within the maximal simplicial complex as another potential risk to the network connectivity are patched step by step. Finally, we demonstrate the effectiveness of the proposed algorithm through simulation experiments.
Keywords :
fault tolerance; telecommunication network topology; wireless sensor networks; 1-hop neighbors; WSN; connectivity problem; critical node detection algorithm; distributed prevention mechanism; fault tolerance; greedy rule; initial deployment phase; maximal simplicial complex concept; network partitioning; topological holes; wireless sensor networks; Fault tolerance; Image edge detection; Network topology; Probes; Structural rings; Topology; Wireless sensor networks; Connectivity; fault tolerance; partitioning; wireless sensor networks (WSN);
Journal_Title :
Communications and Networks, Journal of
DOI :
10.1109/JCN.2014.000113