Reliability evaluation for clustered WSNs under malware propagation


Autoria(s): Shen, Shigen; Huang, Longjun; Liu, Jianhua; Champion, Adam C.; Yu, Shui; Cao, Qiying
Data(s)

01/01/2016

Resumo

We consider a clustered wireless sensor network (WSN) under epidemic-malware propagation conditions and solve the problem of how to evaluate its reliability so as to ensure efficient, continuous, and dependable transmission of sensed data from sensor nodes to the sink. Facing the contradiction between malware intention and continuous-time Markov chain (CTMC) randomness, we introduce a strategic game that can predict malware infection in order to model a successful infection as a CTMC state transition. Next, we devise a novel measure to compute the Mean Time to Failure (MTTF) of a sensor node, which represents the reliability of a sensor node continuously performing tasks such as sensing, transmitting, and fusing data. Since clustered WSNs can be regarded as parallel-serial-parallel systems, the reliability of a clustered WSN can be evaluated via classical reliability theory. Numerical results show the influence of parameters such as the true positive rate and the false positive rate on a sensor node's MTTF. Furthermore, we validate the method of reliability evaluation for a clustered WSN according to the number of sensor nodes in a cluster, the number of clusters in a route, and the number of routes in the WSN.

Identificador

http://hdl.handle.net/10536/DRO/DU:30085313

Idioma(s)

eng

Publicador

MDPI

Relação

http://dro.deakin.edu.au/eserv/DU:30085313/yu-reliabilityevaluation-2016.pdf

http://www.dx.doi.org/10.3390/s16060855

Direitos

2016, The Authors

Palavras-Chave #wireless sensor network #reliability evaluation #malware propagation #epidemic theory #continuous-time Markov chain #reliability theory
Tipo

Journal Article