S. Iskounen, T. M. Nguyen, S. Monnet, L. Hamidouche, ;. Hamidouche et al., Device-to-device communications using wi-fi direct for dense wireless networks, 2016 7th International Conference on the Network of the Future (NOF), p.2016, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01527865

I. Edwin, dissémination D2D sur les réseaux Wi-Fi denses

. .. Conclusion,

. Bibliographie,

. Cisco, Cisco visual networking index : Global mobile data traffic forecast update, 2016.

R. Toole, BitTorrent Architecture and Protocol, 2006.

J. Liang, R. Kumar, and K. W. Ross, Understanding kazaa, 2004.

I. Stoica, R. Morris, D. Karger, M. F. Kaashoek, and H. Balakrishnan, Chord : A Scalable Peer-to-Peer Lookup Service for Internet Applications, Conference on Applications, technologies, architectures, and protocols for computer communications (SIGCOMM '01), pp.149-160, 2001.

S. Ratnasamy, P. Francis, M. Handley, R. Karp, and S. Shenker, A Scalable Content-addressable Network, SIGCOMM Comput. Commun. Rev, vol.31, issue.4, pp.161-172, 2001.

A. Asadi, Q. Wang, and V. Mancuso, A survey on device-to-device communication in cellular networks, IEEE Communications Surveys and Tutorials, vol.16, issue.4, pp.1801-1819, 2014.

F. Rebecchi, M. D. De-amorim, V. Conan, A. Passarella, R. Bruno et al., Data offloading techniques in cellular networks : a survey, IEEE Communications Surveys & Tutorials, vol.17, issue.2, pp.580-603
URL : https://hal.archives-ouvertes.fr/hal-01081713

L. Al-kanj, Z. Dawy, and E. Yaacoub, Energy-aware cooperative content distribution over wireless networks : Design alternatives and implementation aspects, IEEE Communications Surveys Tutorials, vol.15, pp.1736-1760, 2013.

N. Saquib, E. Hossain, L. B. Le, and D. I. Kim, Interference management in ofdma femtocell networks : Issues and approaches, IEEE Wireless Communications, vol.19, issue.3, 2012.

L. Hamidouche, S. Monnet, P. Sens, and D. Refauvelet, Toward heterogeneityaware device-to-device data dissemination over Wi-Fi networks, ICPADS 2017-International Conference on Parallel and Distributed Systems, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01619216

T. Nguyen, L. Hamidouche, F. Mathieu, S. Monnet, and S. Iskounen, SDN-based Wi-Fi Direct Clustering for Cloud Access in Campus Networks, Annals of Telecommunications, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01567735

L. Hamidouche, S. Monnet, P. Sens, and D. Refauvelet, Prise en compte de l'autonomie des batteries des périphériques mobiles pour la diffusion efficace de données en D2D, Compas, 2017.

L. Hamidouche, S. Monnet, F. Bardolle, P. Sens, and D. Refauvelet, Edwin : Leveraging device-to-device communications for efficient data dissemination over wi-fi networks, 2017 IEEE 31st International Conference on Advanced Information Networking and Applications (AINA), pp.228-235, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01515372

S. Iskounen, T. M. Nguyen, S. Monnet, and L. Hamidouche, Device-todevice communications using wi-fi direct for dense wireless networks, 2016 7th International Conference on the Network of the Future (NOF), pp.1-3, 2016.

L. Hamidouche, S. Monnet, and P. Sens, EDWiN : Vers une diffusion efficace de données sur les réseaux Wi-Fi, Compas, 2016.

S. Ghemawat, H. Gobioff, and S. Leung, The Google file system, ACM SIGOPS Operating Systems Review, vol.37, issue.5, p.29, 2003.

K. Shvachko, H. Kuang, S. Radia, and R. Chansler, The Hadoop distributed file system, 2010 IEEE 26th Symposium on Mass Storage Systems and Technologies, MSST2010, 2010.

D. Bindel, Y. Chen, P. Eaton, D. Geels, R. P. Gummadi et al., Oceanstore : An architecture for global-scale persistent storage, Asplos, vol.35, issue.11, pp.190-201, 2000.

G. Shah, Distributed Data Structures for Peer-to-peer Systems, 2003.

A. Rowstron and P. Druschel, Pastry : Scalable, decentralized object location, and routing for large-scale peer-to-peer systems, IFIP/ACM International Conference on Distributed Systems Platforms and Open Distributed Processing, pp.329-350, 2001.

M. Ripeanu, Peer-to-peer architecture case study : Gnutella network, Proceedings First International Conference on Peer-to-Peer Computing, pp.1-11, 2001.
DOI : 10.1109/p2p.2001.990433

S. Saroiu, K. P. Gummadi, and S. D. Gribble, Measuring and analyzing the characteristics of napster and gnutella hosts, Multimedia systems, vol.9, issue.2, pp.170-184, 2003.

, SETI@HOME

, Folging@Home

J. Liang, R. Kumar, and K. W. Ross, The fasttrack overlay : A measurement study, Computer Networks, vol.50, issue.6, pp.842-858, 2006.
DOI : 10.1016/j.comnet.2005.07.014

P. Maymounkov and D. Mazieres, Kademlia : A peer-to-peer information system based on the xor metric, International Workshop on Peer-to-Peer Systems, pp.53-65, 2002.

P. Druschel and A. Rowstron, Past : A large-scale, persistent peer-to-peer storage utility, Proceedings of the Eighth Workshop on, pp.75-80, 2001.

G. Wang and J. Tang, The nosql principles and basic application of cassandra model, 2012 International Conference on, pp.1332-1335, 2012.

J. Benet, Ipfs-content addressed, versioned, p2p file system, 2014.

M. Castro, P. Druschel, A. Kermarrec, A. Nandi, A. Rowstron et al., Splitstream : high-bandwidth multicast in cooperative environments, ACM SIGOPS Operating Systems Review, vol.37, pp.298-313, 2003.

T. White, Hadoop : The definitive guide, 2012.

S. Giordano, Handbook of wireless networks and mobile computing," ch. Mobile Ad Hoc Networks, pp.325-346, 2002.

L. Liu, Y. Jing, Y. Zhang, and B. Xia, A survey on p2p file sharing algorithms over manets, Consumer Electronics Times, vol.2, issue.2, pp.109-115, 2013.

Y. C. Hu, S. M. Das, and H. Pucha, Exploiting the synergy between peer-topeer and mobile ad hoc networks, HotOS, pp.37-42, 2003.

H. Pucha, S. M. Das, and Y. C. Hu, Ekta : An efficient dht substrate for distributed applications in mobile ad hoc networks, Mobile Computing Systems and Applications, pp.163-173, 2004.

Y. Tung, K. , and C. Lin, Location-assisted energy-efficient content search for mobile peer-to-peer networks, Pervasive Computing and Communications Workshops (PERCOM Workshops, pp.477-482, 2011.

S. Srinivasan, A. Moghadam, S. G. Hong, and H. Schulzrinne, 7ds-node cooperation and information exchange in mostly disconnected networks, Communications, 2007. ICC'07. IEEE International Conference on, pp.3921-3927, 2007.
DOI : 10.1109/icc.2007.646

C. Lindemann and O. P. Waldhorst, A distributed search service for peer-topeer file sharing in mobile applications, Proceedings. Second International Conference on, pp.73-80, 2002.
DOI : 10.1109/ptp.2002.1046315

A. Klemm, C. Lindemann, and O. P. Waldhorst, A special-purpose peer-topeer file sharing system for mobile ad hoc networks, Vehicular Technology Conference, 2003. VTC 2003-Fall, vol.4, pp.2758-2763, 2003.
DOI : 10.1109/vetecf.2003.1286080

URL : http://ul.qucosa.de/api/qucosa%3A33088/attachment/ATT-0/

F. Li and J. Wu, Mops : Providing content-based service in disruption-tolerant networks, Distributed Computing Systems, 2009. ICDCS'09. 29th IEEE International Conference on, pp.526-533, 2009.
DOI : 10.1109/icdcs.2009.28

P. Costa, C. Mascolo, M. Musolesi, and G. P. Picco, Socially-aware routing for publish-subscribe in delay-tolerant mobile ad hoc networks, IEEE Journal on Selected Areas in Communications, vol.26, pp.748-760, 2008.

C. Boldrini, M. Conti, and A. Passarella, Contentplace : social-aware data dissemination in opportunistic networks, Proceedings of the 11th international symposium on Modeling, analysis and simulation of wireless and mobile systems, pp.203-210, 2008.

K. Chen, H. Shen, and H. Zhang, Leveraging social networks for p2p contentbased file sharing in disconnected manets, IEEE Transactions on Mobile Computing, vol.13, issue.2, pp.235-249, 2014.

K. Chandrasekaran, Epidemic routing for partially-connected ad hoc networks

A. Balasubramanian, B. Levine, and A. Venkataramani, Dtn routing as a resource allocation problem, ACM SIGCOMM Computer Communication Review, vol.37, pp.373-384, 2007.
DOI : 10.1145/1282427.1282422

URL : http://www.cs.umass.edu/~arun/papers/RAPID_extended.pdf

R. Ramanathan, R. Hansen, P. Basu, R. Rosales-hain, and R. Krishnan, Prioritized epidemic routing for opportunistic networks, Proceedings of the 1st international MobiSys workshop on Mobile opportunistic networking, pp.62-66, 2007.
DOI : 10.1145/1247694.1247707

J. Liu, M. Tang, and G. Yu, Adaptive spray and wait routing based on relayprobability of node in dtn, 2012 International Conference on, pp.1138-1141, 2012.

T. Spyropoulos, K. Psounis, and C. S. Raghavendra, Spray and focus : Efficient mobility-assisted routing for heterogeneous and correlated mobility, Pervasive Computing and Communications Workshops, 2007. PerCom Workshops' 07. Fifth Annual IEEE International Conference on, pp.79-85, 2007.
DOI : 10.1109/percomw.2007.108

, Open Garden

T. Kärkkäinen, M. Pitkänen, P. Houghton, and J. Ott, Scampi application platform, Proceedings of the Seventh ACM International Workshop on Challenged Networks, CHANTS '12, pp.83-86, 2012.

C. Diot, M. Martin, and N. Erik, Haggle project, 2004.

S. Farrell, S. Weber, A. Mcmahon, E. Meehan, and K. Hartnett, An n4c dtn router node design, 1st Extreme Workshop on Communication, 2009.

, C3po-collaborative creation of contents and publishing using opportunistic networks, 2014.

C. Perkins, E. Belding-royer, and S. Das, Ad hoc on-demand distance vector (aodv) routing, 2003.
DOI : 10.17487/rfc3561

URL : https://www.rfc-editor.org/rfc/pdfrfc/rfc3561.txt.pdf

T. Clausen and P. Jacquet, Optimized link state routing protocol (olsr), 2003.
URL : https://hal.archives-ouvertes.fr/inria-00471712

S. Dimatteo, P. Hui, B. Han, and V. O. Li, Cellular traffic offloading through WiFi networks, Proceedings-8th IEEE International Conference on Mobile Ad-hoc and Sensor Systems, pp.192-201, 2011.
DOI : 10.1109/mass.2011.26

URL : http://www.deutsche-telekom-laboratories.de/~panhui/publications/mass11offload.pdf

S. Andreev, A. Pyattaev, K. Johnsson, O. Galinina, and Y. Koucheryavy, Cellular traffic offloading onto network-assisted device-to-device connections, IEEE Communications Magazine, vol.52, issue.4, pp.20-31, 2014.

A. Pyattaev, K. Johnsson, S. Andreev, and Y. Koucheryavy, Proximity-based data offloading via network assisted device-to-device communications, Vehicular Technology Conference (VTC Spring), pp.1-5, 2013.

H. Yoon, J. Kim, F. Tan, and R. Hsieh, On-demand video streaming in mobile opportunistic networks, Sixth Annual IEEE International Conference on, pp.80-89, 2008.

H. Lee, J. Yoo, and J. Kim, Movi+ : Opportunity extension for mobile peer-to-peer video on demand, Consumer Communications and Networking Conference (CCNC), pp.247-252, 2013.

L. Keller, C. Fragouli, and U. C. Irvine, MicroCast : Cooperative Video Streaming on Smartphones Categories and Subject Descriptors, pp.57-69, 2012.

N. Golrezaei, M. Ji, A. F. Molisch, A. G. Dimakis, and G. Caire, Device-todevice communications for wireless video delivery, 2012 Conference Record of the Forty Sixth Asilomar Conference on Signals, Systems and Computers, pp.930-933, 2012.

Q. Gong, Y. Guo, Y. Chen, Y. Liu, and F. Xie, Design and evaluation of a wifidirect based lte cooperative video streaming system, Global Communications Conference (GLOBECOM), pp.1-6, 2016.

G. Lee, W. Saad, M. Bennis, A. Mehbodniya, and F. Adachi, Online channel allocation for full-duplex device-to-device communications, Globecom Workshops (GC Wkshps), pp.1-6, 2016.

M. Pan and Y. Lin, Efficient data dissemination for wi-fi peer-to-peer networks by unicasting among wi-fi p2p groups, Wireless Networks, pp.1-19

B. Chen and C. Yang, Caching policy optimization for d2d communications by learning user preference, 2017.

T. Peng, Q. Lu, H. Wang, S. Xu, and W. Wang, Interference avoidance mechanisms in the hybrid cellular and device-to-device systems, 2009 IEEE 20th International Symposium on Personal, Indoor and Mobile Radio Communications, pp.617-621, 2009.

S. Xu, H. Wang, T. Chen, Q. Huang, and T. Peng, Effective interference cancellation scheme for device-to-device communication underlaying cellular networks, Vehicular Technology Conference Fall (VTC 2010-Fall), pp.1-5, 2010.

B. Kaufman and B. Aazhang, Cellular networks with an overlaid device to device network, Signals, Systems and Computers, pp.1537-1541, 2008.

P. Janis, V. Koivunen, C. Ribeiro, J. Korhonen, K. Doppler et al., Interference-aware resource allocation for device-to-device radio underlaying cellular networks, Vehicular Technology Conference, pp.1-5, 2009.

C. H. Yu, K. Doppler, C. B. Ribeiro, and O. Tirkkonen, Resource sharing optimization for device-to-device communication underlaying cellular networks, IEEE Transactions on Wireless Communications, vol.10, issue.8, pp.2752-2763, 2011.

R. R. Tyagi, F. Aurzada, K. Lee, S. G. Kim, and M. Reisslein, Impact of retransmission limit on preamble contention in lte-advanced network, IEEE Systems Journal, vol.9, issue.3, pp.752-765, 2015.

C. Xu, L. Song, Z. Han, D. Li, and B. Jiao, Resource allocation using a reverse iterative combinatorial auction for device-to-device underlay cellular networks, Global Communications Conference (GLOBECOM), pp.4542-4547, 2012.

G. Zhang, Subcarrier and bit allocation for real-time services in multiuser ofdm systems, IEEE International Conference on, vol.5, pp.2985-2989, 2004.

M. Jung, K. Hwang, and S. Choi, Joint mode selection and power allocation scheme for power-efficient device-to-device (d2d) communication, IEEE 75th, pp.1-5, 2012.

M. Belleschi, G. Fodor, and A. Abrardo, Performance analysis of a distributed resource allocation scheme for d2d communications, GLOBECOM Workshops (GC Wkshps), pp.358-362, 2011.

D. Feng, L. Lu, Y. Yuan-wu, G. Y. Li, G. Feng et al., Device-to-device communications underlaying cellular networks, IEEE Transactions on Communications, vol.61, issue.8, pp.3541-3551, 2013.
DOI : 10.1109/tcomm.2013.071013.120787

I. Kim, I. Park, and Y. H. Lee, Use of linear programming for dynamic subcarrier and bit allocation in multiuser ofdm, IEEE Transactions on Vehicular Technology, vol.55, issue.4, pp.1195-1207, 2006.

P. Cheng, L. Deng, H. Yu, Y. Xu, and H. Wang, Resource allocation for cognitive networks with d2d communication : An evolutionary approach, Wireless Communications and Networking Conference (WCNC), pp.2671-2676, 2012.
DOI : 10.1109/wcnc.2012.6214252

K. Vanganuru, S. Ferrante, and G. Sternberg, System capacity and coverage of a cellular network with d2d mobile relays, MILITARY COMMUNICATIONS CONFERENCE, pp.1-6, 2012.

A. Asadi and V. Mancuso, Energy efficient opportunistic uplink packet forwarding in hybrid wireless networks, Proceedings of the Fourth International Conference on Future Energy Systems, e-Energy '13, pp.261-262, 2013.
DOI : 10.1145/2487166.2487197

A. Asadi and V. Mancuso, On the compound impact of opportunistic scheduling and d2d communications in cellular networks, Proceedings of the 16th ACM international conference on Modeling, analysis & simulation of wireless and mobile systems, pp.279-288, 2013.

S. C. Spinella, G. Araniti, A. Iera, and A. Molinaro, Integration of ad-hoc networks with infrastructured systems for multicast services provisioning, Ultra Modern Telecommunications & Workshops, 2009. ICUMT'09. International Conference on, pp.1-6, 2009.

N. Golrezaei, A. F. Molisch, and A. G. Dimakis, Base-station assisted deviceto-device communications for high-throughput wireless video networks, 2012 IEEE International Conference on Communications (ICC), pp.7077-7081, 2012.
DOI : 10.1109/twc.2014.2316817

N. Golrezaei, A. G. Dimakis, and A. F. Molisch, Device-to-device collaboration through distributed storage, Global Communications Conference (GLOBECOM), pp.2397-2402, 2012.
DOI : 10.1109/glocom.2012.6503475

T. Iyer, R. Hsieh, N. B. Rizvandi, B. Varghese, and R. Boreli, Mobile P2P trusted on-demand video streaming, CoRR, 2012.

J. Sung, D. Lee, Y. Bang, J. Lee, and J. K. Rhee, Energy-aware algorithms for network-assisted device-to-device content delivery networks, 2015 International Conference on Information and Communication Technology Convergence (ICTC), pp.469-471, 2015.
DOI : 10.1109/ictc.2015.7354587

F. Wang, C. Xu, L. Song, Q. Zhao, X. Wang et al., Energy-aware resource allocation for device-to-device underlay communication, 2013 IEEE International Conference on Communications (ICC), pp.6076-6080, 2013.
DOI : 10.1109/icc.2013.6655574

Y. Zhao, Y. Li, H. Zhang, N. Ge, and J. Lu, Fundamental tradeoffs on energyaware d2d communication underlaying cellular networks : A dynamic graph approach, IEEE Journal on Selected Areas in Communications, vol.34, pp.864-882, 2016.
DOI : 10.1109/jsac.2016.2544558

L. Nobach and D. Hausheer, Towards Decentralized, Energy-and Privacy-Aware Device-to-Device Content Delivery, pp.128-132, 2014.
DOI : 10.1007/978-3-662-43862-6_16

URL : https://hal.archives-ouvertes.fr/hal-01401299

B. P. Crow, I. Widjaja, J. G. Kim, and P. T. Sakai, Ieee 802.11 wireless local area networks, IEEE Communications magazine, vol.35, issue.9, pp.116-126, 1997.

S. Bluetooth, BLUETOOTH SPECIFICATION Version 4.2, 2014.

D. Camps-mur, A. Garcia-saavedra, and P. Serrano, Device-to-device communications with wi-fi direct : overview and experimentation, Wireless Communications, vol.20, issue.3, pp.96-104, 2013.
DOI : 10.1109/mwc.2013.6549288

M. A. Khan, W. Cherif, F. Filali, and R. Hamila, Wi-fi direct research-current status and future perspectives, Journal of Network and Computer Applications, vol.93, pp.245-258, 2017.
DOI : 10.1016/j.jnca.2017.06.004

K. Liu, W. Shen, B. Yin, X. Cao, L. X. Cai et al., Development of mobile ad-hoc networks over wi-fi direct with off-the-shelf android phones, IEEE International Conference on, pp.1-6, 2016.

U. Menegato, L. Souza-cimino, S. E. Silva, F. A. Silva, J. C. Lima et al., Dynamic clustering in wifi direct technology, Proceedings of the 12th ACM international symposium on Mobility management and wireless access, pp.25-29, 2014.

M. Jin, J. Jung, and J. Lee, Dynamic power-saving method for wi-fi direct based iot networks considering variable-bit-rate video traffic, Sensors, vol.16, issue.10, p.1680, 2016.

K. Lim, Y. Seo, Y. Ko, J. Kim, and J. Lee, Dynamic power management in wi-fi direct for future wireless serial bus, Wireless networks, vol.20, issue.7, pp.1777-1793, 2014.

H. Je, D. Kwon, H. Kim, and H. Ju, Mobile network configuration for largescale multimedia delivery on a single wlan, Network Operations and Management Symposium (APNOMS), pp.1-6, 2014.

R. Kanaoka and Y. Tobe, Design of a data transfer system on smartphones using wi-fi direct and accelerometers, 2014 IEEE 3rd Global Conference on Consumer Electronics (GCCE), pp.71-75, 2014.

W. Cherif, M. A. Khan, F. Filali, S. Sharafeddine, and Z. Dawy, P2p group formation enhancement for opportunistic networks with wi-fi direct, 2017 IEEE Wireless Communications and Networking Conference (WCNC), pp.1-6, 2017.

H. B. Li, R. Miura, and F. Kojima, Channel access proposal for enabling quick discovery for d2d wireless networks, 2017 International Conference on Computing, Networking and Communications (ICNC), pp.1012-1016, 2017.

, Wi-Fi Aware

D. Mark, J. Varma, J. Lamarche, A. Horovitz, and K. Kim, Peer-to-peer using multipeer connectivity, pp.239-280, 2015.

M. Maity, B. Raman, and M. Vutukuru, Tcp download performance in dense wifi scenarios : Analysis and solution, IEEE Transactions on Mobile Computing, vol.16, issue.1, pp.213-227, 2017.

, Magency

V. P. Kemerlis, E. C. Stefanis, G. Xylomenos, and G. C. Polyzos, Throughput unfairness in tcp over wifi, WONS 2006 : Third Annual Conference on Wireless On-demand Network Systems and Services, pp.26-31, 2006.
URL : https://hal.archives-ouvertes.fr/inria-00001005

, WiFi Performance Benchmark Testing in a Class-room Environment-Alethea

, UniFi AP HD

&. Wireless,

, 802.11ac acces point Aruba 320 Series

, Cisco Meraki MR52

R. Riggio, M. K. Marina, and T. Rasheed, Interference management in software-defined mobile networks, Integrated Network Management (IM), 2015 IFIP/IEEE International Symposium on, pp.626-632, 2015.

O. Stiti, O. Braham, and G. Pujolle, Virtual openflow-based sdn wi-fi access point, Global Information Infrastructure and Networking Symposium (GIIS), pp.1-3, 2015.

M. Seyedebrahimi, F. Bouhafs, A. Raschellà, M. Mackay, and Q. Shi, Sdnbased channel assignment algorithm for interference management in dense wi-fi networks, Networks and Communications (EuCNC), 2016 European Conference on, pp.128-132, 2016.

A. Gupta, J. Min, and I. Rhee, Wifox : Scaling wifi performance for large audience environments, Proceedings of the 8th international conference on Emerging networking experiments and technologies, pp.217-228, 2012.

K. V. Cardoso and J. F. De-rezende, Increasing throughput in dense 802.11 networks by automatic rate adaptation improvement, Wireless Networks, vol.18, issue.1, pp.95-112, 2012.

B. Bellalta, Ieee 802.11 ax : High-efficiency wlans, IEEE Wireless Communications, vol.23, issue.1, pp.38-46, 2016.

E. Perahia, C. Cordeiro, M. Park, and L. L. Yang, Ieee 802.11 ad : Defining the next generation multi-gbps wi-fi, Consumer Communications and Networking Conference (CCNC), pp.1-5, 2010.

M. Norouzi, D. J. Fleet, and R. R. Salakhutdinov, Hamming distance metric learning, Advances in neural information processing systems, pp.1061-1069, 2012.

A. Montresor and M. Jelasity, PeerSim : A scalable P2P simulator, Proc. of the 9th Int. Conference on Peer-to-Peer (P2P'09), pp.99-100, 2009.

Z. Yang, Powertutor-a power monitor for android-based mobile platforms, EECS, vol.2, p.19, 2012.

A. J. Oliner, A. P. Iyer, I. Stoica, E. Lagerspetz, and S. Tarkoma, Carat : Collaborative energy diagnosis for mobile devices, Proceedings of the 11th ACM Conference on Embedded Networked Sensor Systems, p.10, 2013.

C. Yoon, D. Kim, W. Jung, C. Kang, and H. Cha, Appscope : Application energy metering framework for android smartphone using kernel activity monitoring, USENIX Annual Technical Conference, vol.12, pp.1-14, 2012.

M. A. Hoque, M. Siekkinen, K. N. Khan, Y. Xiao, and S. Tarkoma, Modeling, profiling, and debugging the energy consumption of mobile devices, ACM Computing Surveys (CSUR), vol.48, issue.3, p.39, 2016.

S. Iskounen, T. M. Nguyen, and S. Monnet, Wifi-direct simulation for inet in omnet++, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01389581

K. Benzekki, A. E. Fergougui, and A. E. Elalaoui, Software-defined networking (sdn) : a survey, Security and Communication Networks, vol.9, pp.5803-5833, 2016.

H. Liu, H. Darabi, P. Banerjee, and J. Liu, Survey of wireless indoor positioning techniques and systems, IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews, vol.37, issue.6, pp.1067-1080, 2007.

J. A. Hartigan and M. A. Wong, A K-Means Clustering Algorithm, Journal of the Royal Statistical Society. Series C (Applied Statistics), vol.28, issue.1, pp.100-108, 1979.

D. Brélaz, New methods to color the vertices of a graph, Communications of the ACM, vol.22, issue.4, pp.251-256, 1979.

, OMNET++ Wi-Fi Direct Implementation Source Code

, Liste des figures

, Illustration d'un partage de fichier dans un réseau Gnutella, p.12

. .. , , p.17

. .. , 29 II.7 Topologie d'un groupe de communication Wi-Fi adhoc, II.6 Topologie d'un réseau Wi-Fi à plusieurs points d'accès, p.30

. , 31 II.9 Modes de formation de groupes Wi-Fi Direct (crédits Camps-Mur et al. [93]), vol.35

. , Représentation d'un réseau Wi-Fi à grande échelle, p.41

. , Diagramme de séquence d'un téléchargement depuis le serveur, p.53

. , Diagramme de séquence d'un échange D2D bidirectionnel, p.54

. .. , 59 IV.2 Prise en compte de la batterie et de la bande passante des périphériques : les phases de dissémination

V. , 1 (a) Impact du degré de parallélisme sur le temps de complétion (b) Évolution du remplissage des chunks

. , 79 V.4 Impact du temps d'établissement de connexion sur les performances de la dissémination

V. ,

, Comparaison des temps d'activité sur le réseau sans clustering, p.82

. , Comparaison de l'évolution de la complétion des périphériques ; (V.8b) Comparaison des temps d'activité sur le réseau des différentes approches

. , Réduction de l'activité des périphériques sur le réseau avec la prise en compte de l'hétérogénéité des batteries

. , Différence de batterie finale en fin de dissémination avec la prise en compte l'hétérogénéité des batteries ; (V.10b) Évolution de la batterie minimale sur le réseau pour un réseau dont 20% des périphériques sont mauvais

V. , Comparaison des temps de complétion

. , Phases de dissémination du serveur avec la prise en compte de l'hétérogénéité des batteries pour un réseau avec 40% de mauvais périphériques et (V.12b) évolution de la complétion des périphériques, vol.87

. , Phases de dissémination par serveur avec prise en compte de l'hétérogénéité des batteries pour un réseau avec 20% de mauvais périphériques et (V.13b) évolution de la complétion des périphériques

V. , Impact de la prise en compte de la bande passante sur le temps de complétion

V. , Gain énergétique de la prise en compte de la batterie et de la bande passante comparée à la prise en compte de la batterie (40% de mauvais périphériques)

. .. , Topologie du réseau obtenue après le clustering, p.97

, Contrôle de la puissance du signal avec le clustering, p.99

, Évaluation du débit pour 802.11g(54Mbps) et 802.11n(150Mbps), p.103

. , Mesure de temps de calcul de clusters

, Topologie de simulation sur OMNET++

. , Temps moyen de téléchargement avec K = 4

. , Impact de l'utilisation de clusters sur le taux d'erreurs et sur le temps de téléchargement

, Délais et débits moyens sur des tablettes, Apple iPad Air, vol.2, p.74

. , Configuration par défaut du simulateur

. , Configuration du simulateur pour l'évaluation de la prise en compte de l'hétérogénéité des périphériques mobiles

. , Initialisation et lancement de la dissémination

. .. Comportement-du-serveur,

. .. Déclenchement-d'un-Échange-d2d,

. , Procédure des clients (périphériques mobiles)

, Dissémination avec prise en compte de la batterie, p.60

. Prise-en-compte-de-la-batterie and . .. De-la-bande-passante, , p.64

, Algorithme de sélection des transferts depuis le point d'accès, p.65

.. .. Algorithme-des-k-moyennes,