, of 3 %, but with a lower overhead, and with a end-to-end delay about 10 sec

B. I-b-l-i-o-g-r-a-p-h-y,

T. A. Edison, Brain Quote, 2017.

. Statista, Number of smartphone users worldwide from, 2014.

J. Stevens, Mobile Internet statistics and facts, 2016.

, Hosting Facts, 2016.

. Ericsson, Mobile Traffic Q3, 2016.

K. Lee, SLAW: Self-Similar Least-Action Human Walk, IEEE/ACM Transactions on Networking. IEEE, pp.515-529, 2012.

J. Geier, Assigning 802.11b access point channels, WiFi Planet Conference, 2012.

B. Kauffmann, Measurement-based self organization of interfering 802.11 wireless access networks, Proceedings of the 26th IEEE international Conference on Computer Communications, pp.1451-1459, 2007.

B. Karaoglu and W. Heinzelman, Cooperative Load Balancing and Dynamic Channel Allocation for Cluster-Based Mobile Ad Hoc Networks, IEEE Transactions on Mobile Computing, pp.951-963, 2015.

A. Mishra, A Client-driven Approach for Channel Management in Wireless LANs, IEEE INFOCOM, pp.1-13, 2007.

S. Zhuo, Z. Wang, and Y. Q. Song, A traffic adaptive multi-channel MAC protocol with Dynamic Slot Allocation for WSNs, IEEE Transactions on Mobile Computing. IEEE, pp.1600-1613, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01242262

G. Athanasiou, I. Broustis, and L. Tassiulas, Efficient Load-aware channel allocation in Wireless Access Networks, In: Journal of Computer Networks and Communications. Hindawi, pp.1-13, 2011.

X. Zhou, In: Sensor, mesh and ad hoc communications and networks workshops, pp.1-6, 2008.

E. Rozner, Traffic-aware channel assignment in Enterprise Wireless LANs, IEEE International Conference on Network Protocols, pp.1-11, 2007.

J. Tang, G. Xue, and W. Zhang, Maximum throughput and fair bandwidth allocation in multi-channel wireless mesh networks, IEEE International Conference on Computer Communications, pp.1-10, 2006.

B. Bakhshi and S. Khorsandi, A maximum fair bandwidth approach for channel assignment in wireless mesh networks, IEEE Wireless Communications and Networking Conference, pp.1-6, 2008.
DOI : 10.1109/wcnc.2008.385

Y. Kim, F. Baccelli, and G. Veciana, Spatial reuse and fairness of ad hoc networks with channel-aware csma protocols, IEEE Transactions on Information Theory, pp.4139-4157, 2014.
DOI : 10.1109/tit.2014.2320909

URL : https://hal.archives-ouvertes.fr/hal-00940562

N. Oyie, P. Langat, and S. Musyoki, A mobility-aware resource allocation scheme in femtocell networks, Scientific Conference Proceedings, pp.1-9, 2013.

Y. Liang, Y. Tsai, and K. Chiang, A dynamic resource allocation scheme in femtocell networks considering user mobility, Asia-Pacific Conference on Communications, pp.1-9, 2016.
DOI : 10.1109/apcc.2016.7581494

M. Zareei, CMCS: a cross-layer mobility-aware MAC protocol for cognitive radio sensor networks, In: EURASIP Journal on Wireless Communications and Networking. EURASIP, pp.1-15, 2016.
DOI : 10.1186/s13638-016-0652-y

URL : https://jwcn-eurasipjournals.springeropen.com/track/pdf/10.1186/s13638-016-0652-y

N. Gupta, A. Prakash, and R. Tripathi, Adaptive Beaconing in Mobility Aware Clustering Based MAC Protocol for Safety Message Dissemination in VANET, Wireless Communications and Mobile Computing, pp.1-15, 2017.
DOI : 10.1155/2017/1246172

URL : http://downloads.hindawi.com/journals/wcmc/2017/1246172.pdf

H. Balbi, Centralized channel allocation algorithm for IEEE 802.11 networks, Global Information Infrastructure and Networking Symposium, pp.1-7, 2012.
DOI : 10.1109/giis.2012.6466657

T. Lim, W. Jeon, and D. Jeong, Centralized channel allocation scheme in densely deployed IEEE 802.11 wireless LANs, 18th International Conference on Advanced Communication Technology, pp.249-253, 2016.
DOI : 10.1109/icact.2016.7423348

S. Avallone and I. F. Akyildiz, A Channel Assignment Algorithm for Multi-Radio Wireless Mesh Network, International Conference on Computer Communications and Networks, pp.1034-1039, 2007.

M. Parsapoor and U. Bilstrup, A centralized channel assignment algorithm for clustered ad hoc networks, IEEE Conference on Wireless Sensor. IEEE. 2013, pp.73-78
DOI : 10.1109/icwise.2013.6728784

B. Ko, Distributed Channel Assignment in MultiRadio 802.11 Mesh Networks, IEEE Wireless Communications and Networking Conference, pp.3978-3983, 2007.

D. M. Shrestha, A. Ranjitkar, and Y. Ko, A Distributed Channel Assignment for 802.11-based Multi-Radio Wireless Mesh Networks, International Conference on Communications and Networking in China, pp.932-936, 2007.

A. Plummer, T. Wu, and S. Biswas, A localized and distributed channel assignment framework for cognitive radio networks, International Workshop on Cognitive Wireless Networks, pp.932-936, 2007.

H. Kaur and N. Gupta, Localized Algorithm for Channel Assignment in Cognitive Radio Networks, In: International Journal of Engineering Research and Applications, pp.171-176, 2015.

L. Ding, Cross-layer Routing and Dynamic Spectrum Allocation in Cognitive Radio Ad Hoc Networks, IEEE Transactions on Vehicular Technology. IEEE, pp.1969-1979, 2010.

S. Kamruzzaman and E. Kim, An energy efficient QoS routing protocol for cognitive radio ad hoc networks, IEEE International Conference on Advanced Communication Technology, pp.344-349, 2011.

P. R. Walenga-junior, ZAP: a distributed channel assignment algorithm for cognitive radio networks, In: EURASIP Journal on Wireless Communications and Networking. EURASIP, pp.1-11, 2011.

D. Carrillo, Cognitive wireless mesh network without common control channel evaluated in NS-3, 17th Conference of Open Innovations Association, pp.22-27, 2015.
DOI : 10.1109/fruct.2015.7117966

H. M. Almasaeid and A. E. Kamal, Receiver-Based Channel Allocation for Wireless Cognitive Radio Mesh Networks, IEEE Symposium on New Frontiers in Dynamic Spectrum, pp.1286-1299, 2010.
DOI : 10.1109/dyspan.2010.5457862

H. A. Salameh, Throughput-oriented channel assignment for opportunistic spectrum access networks, In: Mathematical and Computer Modelling. IEEE, pp.2108-2118, 2011.

Y. Han, Throughput-efficient channel allocation algorithms in multi-channel cognitive vehicular networks, IEEE Transactions on Wireless Communications, pp.757-770, 2017.

M. Tabassum, Interference-aware high-throughput channel allocation mechanism for CR-VANETs, Eurasip Journal on Wireless Communications and Networking. EURASIP, pp.1-15, 2016.

C. Yin, R. Yang, and W. Zhu, Improving channel assignment in wireless mesh network with linear programming, International Conference on Electronics Information and Emergency Communication, pp.113-116, 2016.

A. S. Alfa, Mixed-integer programming based techniques for resource allocation in underlay cognitive radio networks: a survey, In: Journal of Communications and Networks. IEEE, pp.744-761, 2016.

J. Chen, S. Olafsson, and X. Gu, Observations on Using Simulated Annealing for Dynamic Channel Allocation in 802.11 WLANs, IEEE Vehicular Technology Conference, pp.1801-1805, 2008.

J. Chen, S. Olafsson, and X. Gu, Observations on Using Simulated Annealing for Dynamic Channel Allocation in 802.11 WLANs, IEEE Vehicular Technology Conference, pp.1801-1805, 2008.

S. Middha and P. Singh, Channel Assignment with Greedy Algorithm for Wireless Mesh Network, In: Journal of Computer Science and Applications, pp.1-6, 2015.

J. Xu, C. Guo, and J. Yang, Interference-aware greedy channel assignment in multi-radio multi-channel WMS, pp.1-4, 2016.

I. Dolinska, A Minimum-Spanning-Tree-Inspired Algorithm for Channel Assignment in 802.11 Networks, In: Journal of Electronics and Telecommunications. IEEE, pp.379-388, 2016.

S. Varone and N. Zufferey, Three tabu search methods for the MI-FAP applied to 802.11 networks, In: Conference on Combinatorial Optimization, pp.501-514, 2009.

A. Subramanian, Minimum Interference Channel Assignment in Multiradio Wireless Mesh Networks, IEEE Transactions on Mobile Computing. IEEE, pp.1459-1473, 2008.

F. Glover and M. Laguna, Tabu Search, pp.1-382, 1997.
URL : https://hal.archives-ouvertes.fr/hal-01389283

T. Bartz-beielstein, Evolutionary Algorithms, WIREs Data Mining and Knowledge Discovery. Wires, pp.178-195, 2014.

Z. Wang, Application of Improved Genetic Algorithm in the Channel Allocation of OFDMA System, IEEE Symposium on Computer, Consumer and Control, pp.942-947, 2016.

Z. Li, Improved dynamic channel allocation algorithm based on ant colony intelligence for P2P service, IEEE Computing, Communications and IT Applications Conference, pp.167-172, 2014.

S. Ghosh, A. Konar, and A. Nagar, Dynamic Channel Assignment Problem in Mobile Networks Using Particle Swarm Optimization, IEEE European Symposium on Computer Modeling and Simulation, pp.64-69, 2008.

S. Kumar, K. Kumar, and A. K. Pandey, Dynamic Channel Allocation in Mobile Multimedia Networks Using Error Back Propagation and Hopfield Neural Network, Procedia Computer Science, pp.107-116, 2016.

E. R. Hruschka, A Survey of Evolutionary Algorithms for Clustering, IEEE Transactions on Systems, Man, and Cybernetics, pp.133-155, 2009.

D. G. Reina, A Survey on the Application of Evolutionary Algorithms for Mobile Multihop Ad Hoc Network Optimization Problems, International Journal of Distributed Sensor Networks. Hindawi, pp.1-13, 2016.

C. V. Lucken, B. Baran, and C. Brizuela, A Survey on multi-objective evolutionary algorithms for many-objective problems, Computational Optimization and Applications, pp.707-756, 2014.

J. Riihijarvi, M. Petrova, and P. Mahonen, Frequency Allocation for WLANs using Graph Colouring Techniques, IEEE Conference on Wireless On-demand Network Systems and Services, pp.216-222, 2005.

A. Mishra, S. Banerjee, and W. Arbaugh, Weighted coloring based channel assignment for WLANs, In: ACM SIGMOBILE Mobile Computing and Communications. ACM, pp.19-31, 2005.

T. A. Sohan, A graph coloring based dynamic channel assignment algorithm for cognitive radio vehicular ad hoc networks, International Conference on Networking Systems and Security, pp.1-8, 2016.

, Federal Communications Commission Spectrum Policy Task Force, 2002.

P. J. Kolodzy, Interference temperature: a metric for dynamic spectrum utilization, International Journal of Network Management, pp.103-113, 2006.

P. Gupta and P. R. Kumar, The capacity of wireless networks, IEEE Transactions on Information Theory, pp.388-404, 2000.

A. Iyer, C. Rosenberg, and A. Karnik, What is the right model for wireless channel interference, IEEE Transactions on Wireless Communications. IEEE, pp.2662-2671, 2009.

C. Avin, SINR diagrams: towards algorithmically usable SINR models of wireless networks, Proceedings of the 28th ACM Symposium on Principles of Distributed Computing, pp.200-209, 2009.

Y. Saleem, A. Bashir, and E. Ahmed, Spectrum-aware Dynamic Channel Assignment in Cognitive Radio Networks, International Conference on Emerging Technologies, pp.1-6, 2012.

S. Batabyal and P. Bhaumik, Mobility models, traces and impact of mobility on opportunistic routing algorithms: a survey, IEEE Communications Surveys e Tutorials, pp.1679-1707, 2015.

C. Puttamadappa, S. K. Sarkar, and T. G. Basavaraju, Ad hoc Mobile Wireless Networks. Principles, Protocols, and Applications. 1nd, 2007.

A. Hanggoro and R. F. Sari, Performance evaluation of the manhattan mobility model in vehicular ad-hoc networks for high mobility vehicle, IEEE International Conference on Communication, Networks and Satellite, pp.31-36, 2013.

B. Ramakrishnan, Comprehensive analysis of highway, manhattan and freeway mobility models for vehicular ad hoc network, In: International Journal of Wireless and Mobile Computing. IEEE, pp.78-89, 2015.

. Cabspotting, San Francisco taxi cab trace, 2016.

. Microsoft, GeoLife GPS Trajectories

L. Rivoirard, Using real-world car traffic dataset in vehicular ad hoc network performance evaluation, In: International Journal of Advanced Computer Science and Applications, pp.390-398, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01503210

, Vehicular mobility trace of the city of Cologne, Germany, pp.390-398

N. Aschenbruck, A. Munjal, and T. Camp, Trace-based mobility modeling for multi-hop wireless networks, In: Computer Communications, pp.704-714, 2011.

C. Sreedhar, A Survey on Security Issues in Wireless Ad hoc Network Routing Protocols, In: International Journal on Computer Science and Engineering, pp.224-232, 2010.

D. Deng, Y. Chen, and Y. Wong, Adaptive channel allocation strategy for mobile ad hoc networks, Mathematical and Computer Modelling, pp.2720-2730, 2013.

M. Parsapoor and U. Bilstrupand, Ant colony optimization for channel assignment problem in a clustered mobile ad hoc network, Proceedings of the 4th International Conference on Swarm Intelligence, pp.314-322, 2013.
DOI : 10.1007/978-3-642-38703-6_37

URL : http://hh.diva-portal.org/smash/get/diva2:650437/FULLTEXT01

K. N. Quang, V. D. Nguyen, and H. Choo, Dynamic subchannel assignment-based cross-layer MAC and network protocol for multihop ad hoc networks, In: Journal of Computer Networks and Communications. Hindawi, pp.1-9, 2013.
DOI : 10.1155/2013/962643

URL : http://downloads.hindawi.com/journals/jcnc/2013/962643.pdf

Y. Yao, Power Control Based Channel Allocation Method for Ad Hoc Networks, In: Applied Mechanics and Materials, pp.299-302, 2014.
DOI : 10.4028/www.scientific.net/amm.484-485.299

S. S. Dehkordi and J. Torkestani, Channel assignment scheme based on learning automata for clustered wireless ad hoc networks, In: Journal of Computer Science and Information Technology, pp.149-172, 2014.

M. Nivetha and C. Rajinikanth, An energy efficient multichannel MAC provisioning In MANETs, In: International Journal of Engineering And Computer Science, pp.12176-12180, 2015.

Y. Wang and J. J. Garcia-luna-aceves, A Distributed Crosslayer Routing Protocol with Channel Assignment in MultiChannel MANET, IEEE: International Conference on Computing, Networking and Communications, pp.1-5, 2015.
DOI : 10.1109/iccnc.2015.7069493

URL : https://cloudfront.escholarship.org/dist/prd/content/qt73z6p7q0/qt73z6p7q0.pdf

M. Jothilakshmi, Dynamic channel allocation for cluster-based mobile ad hoc networks, In: International Journal of Innovative Research in Computer and Communication Engineering, pp.8727-8733, 2016.

K. Shahina and Y. B. Jinila, An Improved Model For Load Balancing and Dynamic Channel Allocation In Cluster Based MANETs, In: Journal of Engineering and Applied Sciences. ARPN, pp.8094-8099, 2016.

A. Fathinavid, A dynamic hybrid CDMA/TDMA scheme in mobile ad hoc networks based on learning automat, In: International Journal of Computer Science and Network Security, pp.1-12, 2017.

C. Chao, H. Tsai, and C. Huang, Load-aware channel hopping protocol design for mobile ad hoc networks, Wireless Networks, pp.89-101, 2017.

G. Bhuvaneshwari and K. Vaitheki, Load balancing and channel assignment for cluster based MANET in heterogeneous network, International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering, pp.168-175, 2017.

W. Liang, Vehicular ad hoc networks: architecture, research issues, methodologies, challenges, and trends, In: International Journal of Distributed Sensor Networks. IEEE, pp.1-11, 2015.

R. S. Hande and A. Muddana, Comprehensive survey on clustering-based efficient data dissemination algorithms for VANET, International Conference on Signal Processing, pp.629-632, 2016.
DOI : 10.1109/scopes.2016.7955516

S. A. Hussain, An efficient channel access scheme for vehicular ad hoc networks, Mobile Information Systems, pp.1-10, 2017.
DOI : 10.1155/2017/8246050

URL : http://downloads.hindawi.com/journals/misy/2017/8246050.pdf

T. Zhao, A connectivity resilient dynamic multichannel assignment method for VANET, In: Journal of Security and Communication Networks. ACM, pp.1855-1864, 2015.
DOI : 10.1002/sec.1032

URL : https://onlinelibrary.wiley.com/doi/pdf/10.1002/sec.1032

N. Gupta, A. Prakash, and R. Tripathi, Clustering based cognitive MAC protocol for channel allocation to prioritize safety message dissemination in vehicular adhoc network, Vehicular Communications, pp.44-54, 2016.
DOI : 10.1016/j.vehcom.2016.09.004

V. Nguyen, M. A. Kazmi, and C. S. Hong, ECCT: An efficient-cooperative ADHOC MAC for cluster-based TDMA system in VANETs, In: International Journal of Distributed Sensor Networks. Hindawi, pp.1-12, 2015.
DOI : 10.1155/2015/746438

URL : http://journals.sagepub.com/doi/pdf/10.1155/2015/746438

H. Peng, CM-MAC: A cluster-based multi-channel MAC protocol for VANET, In: Journal of Computer Research and Development, pp.502-510, 2014.

I. Chu, P. Chen, and W. Chen, An IEEE 802.11p based distributed channel assignment scheme considering emergency message dissemination, Vehicular Technology Conference (VTC Spring), pp.1-5, 2012.

S. Park, Dynamic service-channels allocation (DSCA) in vehicular ad hoc networks, IEEE Consumer Communications and Networking Conference, pp.351-357, 2013.

A. Reddy and M. Reddy, PBMAC-Position based channel allocation for vehicular ad hoc networks, In: Journal of Advanced Networking and Applications, pp.3156-3160, 2017.

R. S. Tomar and S. Verma, RSU centric channel allocation in Vehicular Ad hoc Networks, Sixth International Conference on Wireless Communication and Sensor Networks, pp.1-6, 2011.

M. Frigau, Social-based forwarding in multi-channel vehicular networks, IEEE International Workshop on Smart City and Ubiquitous Computing Applications, pp.166-173, 2015.

S. Chieochan, E. Hossain, and J. Diamond, Channel Assignment Schemes for Infrastructure-based 802.11 WLANs: A Survey, IEEE Communications Surveys and Tutorials. IEEE, pp.124-136, 2010.

F. D. Malliaros, Locating influential nodes in complex networks, In: Scientific Reports, vol.1, 2016.

B. Lee and J. Kim, Algorithm for finding the moving direction of a vehicle using magnetic sensor, IEEE Symposium on Computational Intelligence in Control and Automation, pp.74-79, 2011.

H. Y. Song and J. S. Lee, Detecting Positioning Errors and Estimating Correct Positions by Moving Window, 2017.

T. R. Henderson, M. Lacage, and G. F. Riley, Network simulations with the NS-3 simulator, In: ACM SIGCOMM. IEEE, pp.527-527, 2008.

E. G. Villegas, Effect of adjacent-channel interference in IEEE 802.11 WLANs, International Conference on Cognitive Radio Oriented Wireless Networks and Communications, pp.118-125, 2007.

L. Miao, Evaluation and enhancement of IEEE 802.11p standard: a survey, In: Mobile Computing. IEEE, pp.15-30, 2012.

W. Lin, A comparison of 802.11a and 802.11p for Vto-I Communication: a measurement study, International Conference on Heterogeneous Networking for Quality, Reliability, Security and Robustness, pp.559-570, 2010.

L. Wan, Routing protocols for delay tolerant networks: survey and performance evaluation, pp.1-16, 2015.

N. Aschenbruck, BonnMotion-A Mobility Scenario Generation and Analysis Tool, 2016.

J. G. Filho, A systematic technical survey of DTN and VDTN routing protocols, Computer Standards and Interfaces, pp.139-159, 2016.

T. Choksatid-wan, W. Narongkhachavana, and S. Prabhavat, An efficient spreading Epidemic Routing for DelayTolerant Network, Consumer Communications and Network Conference, pp.473-476, 2016.

G. Wang, A routing scheme based on Spray-andWait and Connecting-Capability of Node, International Conference on Progress in Informatics and Computing, pp.577-580, 2016.

E. Basar, Index modulation techniques for 5G wireless networks, pp.168-175, 2016.

X. Cheng, Index Modulation for 5G: Striving to Do More with Less, IEEE Communications Magazine, vol.54, p.8, 2016.

I. Martinez, J. Garcia, and E. Viruete, Resources variability in M-health services: an adaptive method for QoS control, IEEE Consumer Communications and Networking Conference, pp.829-822, 2008.