DocumentCode
3613158
Title
DMRUT-MCDS: Discovery relationships in the cyber-physical integrated network
Author
Hongliang Lu ; Jiannong Cao ; Weiping Zhu ; Xianlong Jiao ; Shaohe Lv ; Xiaodong Wang
Author_Institution
Process. Lab., Nat. Univ. of Defense Technol., Changsha, China
Volume
17
Issue
6
fYear
2015
Firstpage
558
Lastpage
567
Abstract
In recent years, we have seen a proliferation of mobile-network-enabled smart objects, such as smart-phones and smart-watches, that form a cyber-physical integrated network to connect the cyber and physical worlds through the capabilities of sensing, communicating, and computing. Discovery of the relationship between smart objects is a critical and nontrivial task in cyber-physical integrated network applications. Aiming to find the most stable relationship in the heterogeneous and dynamic cyber-physical network, we propose a distributed and efficient relationship-discovery algorithm, called dynamically maximizing remaining unchanged time with minimum connected dominant set (DMRUT-MCDS) for constructing a backbone with the smallest scale infrastructure. In our proposed algorithm, the impact of the duration of the relationship is considered in order to balance the size and sustain time of the infrastructure. The performance of our algorithm is studied through extensive simulations and the results show that DMRUT-MCDS performs well in different distribution networks.
Keywords
mobile radio; smart phones; DMRUT-MCDS; cyber-physical integrated network; distribution networks; dynamic cyber-physical network; dynamically maximizing remaining unchanged time with minimum connected dominant set; heterogeneous cyber-physical network; mobile-network-enabled smart objects; smart phones; smart watches; Automobiles; Computers; Correlation; Heuristic algorithms; Mobile computing; Sensors; Wireless communication; Cyber-physical environment; dominate set; minimum duration links; relation;
fLanguage
English
Journal_Title
Communications and Networks, Journal of
Publisher
ieee
ISSN
1229-2370
Type
jour
DOI
10.1109/JCN.2015.000103
Filename
7387264
Link To Document