A negotiation-based networking methodology to enable cooperation across heterogeneous co-located networks

Ad Hoc Networks - Tập 10 - Trang 901-917 - 2012
Eli De Poorter1, Pieter Becue1, Milos Rovcanin1, Ingrid Moerman1, Piet Demeester1
1Department of Information Technology (INTEC), Ghent University – IBBT, Gaston Crommenlaan 8, bus 201, 9050 Gent, Belgium

Tài liệu tham khảo

The internet of things, ITU Internet Reports, 2005. S. Buljore, H. Harada, S. Filin, P. Houze, K. Tsagkaris, O. Holland, K. Nolte, T. Farnham, V. Ivanov, Architecture and enablers for optimized radio resource usage in heterogeneous wireless access networks: the IEEE 1900.4 working group, IEEE Communications Magazine, 2009. Wheeler, 2007, Commercial applications of wireless sensor networks using zigbee, IEEE Communications Magazine, 45, 70, 10.1109/MCOM.2007.343615 C.F. Garca-Hernnndez, P.H. Ibargnengoytia-Gonznlez, J. Garcna-Hernnndez, J.A. Pnrez-Dnaz, Wireless sensor networks and applications: a survey, IJCSNS International Journal of Computer Science and Network Security 7 (3) (2007). N. Wakamiya, S. Arakawa, M. Murata, Self-organization based network architecture for new generation networks, in: First International Conference on Emerging Network Intelligence, October 2009, pp. 61–68. Camp, 2002, A survey of mobility models for ad hoc network research, Wireless Communications and Mobile Computing, 2, 483, 10.1002/wcm.72 Musaloiu-E, 2008, Minimising the effect of wifi interference in 802.15.4 wireless sensor networks, International Journal on Sensor Networks, 3, 43, 10.1504/IJSNET.2008.016461 M. Yarvis, N. Kushalnagar, H. Singh, A. Rangarajan, Y. Liu, S. Singh, Exploiting heterogeneity in sensor networks, in: Proceedings of the 24th Annual Joint Conference of the IEEE Computer and Communications Societies (IEEE Infocom 2005), 2005. Nash, 2001 M. Toorani, A. Shirazi, Lpki – a lightweight public key infrastructure for the mobile environments, in: 11th IEEE Singapore International Conference on Communication Systems, 2008 (ICCS 2008), 2008, pp. 162–166. doi:10.1109/ICCS.2008.4737164. Feigenbaum, 1996, Decentralized trust management, 164 OpenPGP Message Format (IETF standard), <http://www.tools.ietf.org/html/rfc4880>. Device description structures, <http://www.w3.org/TR/dd-structures/>. Yucek, 2009, A survey of spectrum sensing algorithms for cognitive radio applications, IEEE Communications Surveys & Tutorials, 11, 116, 10.1109/SURV.2009.090109 De Poorter, 2011, Non-intrusive aggregation in wireless sensor networks, Ad Hoc Networks, 9, 324, 10.1016/j.adhoc.2010.07.017 Dasilva, 2011, Game theory in wireless networks, IEEE Communications Magazine, 49, 110, 10.1109/MCOM.2011.5978423 MacKenzie, 2001, Game theory and the design of self-configuring, adaptive wireless networks, IEEE Communications Magazine, 39, 126, 10.1109/35.965370 Lee, 2007, Cognitive network management with reinforcement learning for wireless mesh networks, 168 De Poorter, 2011, IDRA: a flexible system architecture for next-generation wireless sensor networks, Wireless Networks (Springer), 17 D. Hughes, K. Thoelen, W. HorrT, N. Matthys, et al., Looci: a loosely-coupled component infrastructure for networked embedded systems, in: Proceedings of the 7th International Conference on Advances in Mobile Computing & Multimedia, Kualu Lumpur, Malaysia, 14–16 December 2009, pp. 195–203. Erl, 2005 Tmotesky datasheet, <http://www.snm.ethz.ch/projects/tmotesky>. The IBBT W-iLab.t wireless sensor testbed, <http://www.ilabt.ibbt.be/>. L. Tytgat, B. Jooris, P. De Mil, B. Latre, I. Moerman, P. Demeester, Demo abstract: Wilab, a real-life wireless sensor testbed with environment emulation, published in European Conference on Wireless Sensor Networks, EWSN Adjunct Poster Proceedings (EWSN), Cork, Ireland, February 2009. Ad hoc on-demand distance vector (aodv) routing. networking group request for comments (rfc): 3561, July 2003, <http://www.tools.ietf.org/html/rfc3561>. M. Wirz, Btnode application for automated link measurements, term thesis, Master’s thesis, ETH Zurich, 2007. D. Ganesan, B. Krishnamachari, A. Woo, D. Culler, D. Estrin, S. Wicker, Complex behavior at scale: an experimental study of low-power wireless sensor networks, Wireless Sensor Networks, Technical Report CSD-TR 02-0013, UCLA, February 2002. Wu, 2005, Network planning in wireless ad hoc networks: a cross-layer approach, IEEE Journal on Selected Areas in Communications, 23, 136, 10.1109/JSAC.2004.837362 Wu, 2005, Network planning in wireless ad hoc networks: a cross-layer approach, IEEE Journal on Selected Areas in Communications, 23, 136, 10.1109/JSAC.2004.837362 Haykin, 2005, Cognitive radio: brain-empowered wireless communications, IEEE Journal on Selected Areas in Communications, 23, 201, 10.1109/JSAC.2004.839380 Jondral, 2005, Software-defined radio – basics and evolution to cognitive radio, EURASIP Journal on Wireless Communications and Networking, 2005, 275283, 10.1155/WCN.2005.275 Akyildiz, 2006, Next generation/dynamic spectrum access/cognitive radio wireless networks: a survey, Elsevier Computer Networks, 50, 2127, 10.1016/j.comnet.2006.05.001 Thomas, 2006, Cognitive networks: adaptation and learning to achieve end-to-end performance objectives, IEEE Communications Magazine, 44, 51, 10.1109/MCOM.2006.273099 C. Fortuna, M. Mohorcic, Trends in the development of communication networks: cognitive networks, Computer Networks, 2009. A.K. Sadek, K. Liu, A. Ephremides, Collaborative multiple-access protocols for wireless networks, ICC 2006, 2006. J. Garcna-Vidal, M. Guerrero-Zapata, J. Morillo, D. Fust, A protocol stack for cooperative wireless networks, in: Wireless Systems and Mobility in Next Generation Internet, Lecture Notes in Computer Science (LNCS), vol. 4396, 2007, pp 62–73. Pelusi, 2006, Opportunistic networking: data forwarding in disconnected mobile ad hoc networks, IEEE Communications Magazine, 44, 134, 10.1109/MCOM.2006.248176 Owl-s: semantic markup standard for web services, <http://www.w3.org/submission/owl-s/>.