An infrastructure-aided cooperative spectrum sensing scheme for vehicular ad hoc networks

Ad Hoc Networks - Tập 25 - Trang 197-212 - 2015
Kim Baraka1, Lise Safatly1, Hassan Artail1, Ali Ghandour1, Ali El-Hajj1
1Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box: 11-0236, Riad El-Solh, Beirut 1107 2020, Lebanon

Tài liệu tham khảo

Akyildiz, 2009, CRAHNs: cognitive radio ad hoc networks, Ad Hoc Netw., 7, 810, 10.1016/j.adhoc.2009.01.001 Akyildiz, 2011, Cooperative spectrum sensing in cognitive radio networks: a survey, Phys. Commun., 4, 40, 10.1016/j.phycom.2010.12.003 P. Alzen, Multi-Cell Performance of 802.11a Wireless LANs, Master Thesis, Jan. 2004. <http://pure.ltu.se/portal/en/studentthesis/multicell-performance-of-ieee-80211a-wireless-lans(d8822093-74e0-4a21-a12f-face58ae76df).html>. Atapattu, 2011, Energy detection based cooperative spectrum sensing in cognitive radio networks, IEEE Trans. Wireless Commun., 10, 10.1109/TWC.2011.012411.100611 Blau, 2008, Car Talk: Europe begins testing vehicle to vehicle and vehicle to infrastructure communications systems, IEEE Spectr., 45 D. Cabric, S. Mishra, R. Brodersen, Implementation issues in spectrum sensing for cognitive radios, in: 38th Asilomar Conference on Signals, Systems and Computers, 2004, pp. 772–776. D. Cabric, A. Tkachenko, R.W. Brodersen, Experimental study of spectrum sensing based on energy detection and network cooperation, in: 1st International Workshop on Technology and Policy for Accessing Spectrum (TAPAS ’06), New York, NY, August 2006. H. Chen, W. Gao, D. Daut, Signature based spectrum sensing algorithms for IEEE 802.22 WRAN, in: IEEE International Conference on Communications (ICC ’07), Glasgow, Scotland, June 2007, pp. 6487–6492. K. Chowdhury, R. Doost-Mohammady, W. Meleis, M. Di Felice, L. Bononi, Cooperation and communication in cognitive radio networks based on TV spectrum experiments, in: World of Wireless, Mobile and Multimedia Networks (WoWMoM), 2011 IEEE International Symposium on a. IEEE, 2011. C. Cordeiro, K. Challapali, D. Birru, N. Shankar, IEEE 802.22: the first worldwide wireless standard based on cognitive radios, in: 1st IEEE Int’l Symposium on New Frontiers in Dynamic Spectrum Access Networks, 2005, pp. 328–337. Davis, 1997, Adaptive greedy approximations, Constr. Approx., 13, 57, 10.1007/BF02678430 M. Di Felice, K. Roy Chowdhury, L. Bononi, Cooperative spectrum management in cognitive vehicular ad hoc networks, in: Vehicular Networking Conference (VNC), 2011 IEEE. IEEE, 2011. Ettus Research, Product page, <https://www.ettus.com/product/details/UN210 KIT>. A. Ghandour, K. Fawaz, H. Artail, Fuzzy cognitive vehicular ad hoc networks, in: 7th IEEE International Conference on Wireless and Mobile Computing, Networking and Communications, Shanghai, China, October 2011. A.J. Ghandour, M. Di Felice, H. Artail, L. Bononi, Modeling and simulation of WAVE 1609.4-based multi-channel vehicular ad hoc networks, in: 5th ACM International Conference on Simulations Tools and Techniques (SIMUTools 2012), March 19–23, 2012, Sirmione-Desenzano, Italy, 2012. GNU Radio, <http://gnuradio.org/redmine/projects/gnuradio/wiki>. Han, 2012, Analytical study of the IEEE 802.11p MAC sublayer in vehicular networks, IEEE Trans. Intell. Transp. Syst., 13, 873, 10.1109/TITS.2012.2183366 D. Jiang, L. Delgrossi, IEEE 802.11p: towards an international standard for wireless access in vehicular environments, in: Vehicular Technology Conference, 2008. VTC Spring 2008. IEEE. IEEE, 2008. Jiang, 2006, Design of 5.9 ghz dsrc-based vehicular safety communication, IEEE Wirel. Commun., 13, 36, 10.1109/WC-M.2006.250356 Z. Khalaf, A. Nafkha, J. Palicot, Blind spectrum detector for cognitive radio using compressed sensing and symmetry property of the second order cyclic autocorrelation, in: 7th International ICST Conference on Cognitive Radio Oriented Wireless Networks and Communications (CROWNCOM), Stockholm, Sweden, June 2012, pp. 291–296. Linksys, WAP300N Product page <http://www.linksys.com/en-eu/products/accesspoints/WAP300N>. Safatly, 2014, Blind spectrum sensing using symmetry property of cyclic autocorrelation function: from theory to practice, EURASIP J. Wirel. Commun. Netw., 10.1186/1687-1499-2014-26 R. Saifan, A.E. Kamal, Y. Guan, Efficient spectrum searching and monitoring in cognitive radio network, in: IEEE 8th International Conference on Mobile Adhoc and Sensor Systems (MASS), 2011. Samsung, Galaxy S4 Phone <http://www.samsung.com/global/microsite/galaxys4/>. Wang, 2010, A novel sensing coordination framework for CR-VANETs, IEEE Trans. Veh. Technol., 59 Z. Wang, M. Hassan, How much of DSRC is available for non-safety use?, in: 5th ACM Int’l Workshop on Vehicular Inter-networking, pp. 23–29, 2008. S. Xu, Z. Zhao, J. Shang, Spectrum sensing based on cyclostationarity, in: IEEE Workshop on Power Electronics and Intelligent Transportation System (PEITS ’08), Guangzhou, China, August 2008, pp. 171–174. S. Xu, Z. Zhao, J. Shang, Spectrum sensing based on cyclostationarity, in: IEEE Workshop on Power Electronics and Intelligent Transportation System (PEITS ’08), Guangzhou, China, August 2008, pp. 171–174. Z. Ye, G. Memik, J. Grosspietsch, Energy detection using estimated noise variance for spectrum sensing in cognitive radio networks, in: IEEE Wireless Communications and Networking Conference (WCNC 2008), Las Vegas, NV, USA, March 2008, pp. 711–716. Yang, 2013, Energy-efficient hybrid spectrum access scheme in cognitive vehicular ad hoc networks, IEEE Commun. Lett., 17, 10.1109/LCOMM.2012.122012.122341 Kim, 2013, Cognitive multicast with partially overlapped channels in vehicular ad hoc networks, Ad Hoc Netw., 11, 10.1016/j.adhoc.2012.01.005 Shu, 2013, Sequential opportunistic spectrum access with imperfect channel sensing, Ad Hoc Netw., 11, 10.1016/j.adhoc.2012.09.004