Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs

ilustraciones, fotografías, gráficas, tablas

Autores:
Rueda Dimaté, Óscar David
Tipo de recurso:
Fecha de publicación:
2021
Institución:
Universidad Nacional de Colombia
Repositorio:
Universidad Nacional de Colombia
Idioma:
spa
OAI Identifier:
oai:repositorio.unal.edu.co:unal/80566
Acceso en línea:
https://repositorio.unal.edu.co/handle/unal/80566
https://repositorio.unal.edu.co/
Palabra clave:
000 - Ciencias de la computación, información y obras generales
Telecommunications networks
Communications software
Computer programming
Redes de telecomunicaciones
Programas para comunicación entre computadores
Programación (computadores electrónicos)
MANET
SDN
Redes ad-hoc móviles
Redes definidas por software
Controlador
Virtualización
MANET
SDN
Mobile ad-hoc networks
Software defined networks
Controller
Virtualization
Rights
openAccess
License
Reconocimiento 4.0 Internacional
id UNACIONAL2_815199cb975e8a40b9a9587d0a63db9b
oai_identifier_str oai:repositorio.unal.edu.co:unal/80566
network_acronym_str UNACIONAL2
network_name_str Universidad Nacional de Colombia
repository_id_str
dc.title.spa.fl_str_mv Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
dc.title.translated.eng.fl_str_mv Construction of a virtualized control module to perform load balancing in MANETs
title Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
spellingShingle Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
000 - Ciencias de la computación, información y obras generales
Telecommunications networks
Communications software
Computer programming
Redes de telecomunicaciones
Programas para comunicación entre computadores
Programación (computadores electrónicos)
MANET
SDN
Redes ad-hoc móviles
Redes definidas por software
Controlador
Virtualización
MANET
SDN
Mobile ad-hoc networks
Software defined networks
Controller
Virtualization
title_short Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
title_full Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
title_fullStr Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
title_full_unstemmed Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
title_sort Construcción de un módulo de control virtualizado para realizar balanceo de carga en MANETs
dc.creator.fl_str_mv Rueda Dimaté, Óscar David
dc.contributor.advisor.spa.fl_str_mv Ortiz Triviño, Jorge Eduardo
dc.contributor.author.spa.fl_str_mv Rueda Dimaté, Óscar David
dc.contributor.researchgroup.spa.fl_str_mv TLÖN - Grupo de Investigación en Redes de Telecomunicaciones Dinámicas y Lenguajes de Programación Distribuidos
dc.subject.ddc.spa.fl_str_mv 000 - Ciencias de la computación, información y obras generales
topic 000 - Ciencias de la computación, información y obras generales
Telecommunications networks
Communications software
Computer programming
Redes de telecomunicaciones
Programas para comunicación entre computadores
Programación (computadores electrónicos)
MANET
SDN
Redes ad-hoc móviles
Redes definidas por software
Controlador
Virtualización
MANET
SDN
Mobile ad-hoc networks
Software defined networks
Controller
Virtualization
dc.subject.lemb.eng.fl_str_mv Telecommunications networks
Communications software
Computer programming
dc.subject.lemb.spa.fl_str_mv Redes de telecomunicaciones
Programas para comunicación entre computadores
Programación (computadores electrónicos)
dc.subject.proposal.spa.fl_str_mv MANET
SDN
Redes ad-hoc móviles
Redes definidas por software
Controlador
Virtualización
dc.subject.proposal.eng.fl_str_mv MANET
SDN
Mobile ad-hoc networks
Software defined networks
Controller
Virtualization
description ilustraciones, fotografías, gráficas, tablas
publishDate 2021
dc.date.accessioned.none.fl_str_mv 2021-10-15T23:43:11Z
dc.date.available.none.fl_str_mv 2021-10-15T23:43:11Z
dc.date.issued.none.fl_str_mv 2021
dc.type.spa.fl_str_mv Trabajo de grado - Maestría
dc.type.driver.spa.fl_str_mv info:eu-repo/semantics/masterThesis
dc.type.version.spa.fl_str_mv info:eu-repo/semantics/acceptedVersion
dc.type.content.spa.fl_str_mv Text
dc.type.redcol.spa.fl_str_mv http://purl.org/redcol/resource_type/TM
status_str acceptedVersion
dc.identifier.uri.none.fl_str_mv https://repositorio.unal.edu.co/handle/unal/80566
dc.identifier.instname.spa.fl_str_mv Universidad Nacional de Colombia
dc.identifier.reponame.spa.fl_str_mv Repositorio Institucional Universidad Nacional de Colombia
dc.identifier.repourl.spa.fl_str_mv https://repositorio.unal.edu.co/
url https://repositorio.unal.edu.co/handle/unal/80566
https://repositorio.unal.edu.co/
identifier_str_mv Universidad Nacional de Colombia
Repositorio Institucional Universidad Nacional de Colombia
dc.language.iso.spa.fl_str_mv spa
language spa
dc.relation.references.spa.fl_str_mv Abbas, A. M., y Kure, O. (2009). A probabilistic quality of service routing for mobile Ad hoc networks. En 2009 first international conference on networked digital technologies (pp. 256–260). doi: 10.1109/NDT.2009.5272075
Ajmal, S., Jabeen, S., Rasheed, A., y Hasan, A. (2015). An intelligent hybrid spread spectrum MAC for interference management in mobile ad hoc networks. Computer Communications, 72 , 116–129. Descargado de http://www.sciencedirect.com/science/article/pii/S0140366415001541 doi:http://dx.doi.org/10.1016/j.comcom.2015.04.006
Akyildiz, I. F., Wang, P., y Lin, S.-C. (2015). SoftAir: A software defined networking architecture for 5G wireless systems. Computer Networks, 85 , 1–18. Descargado de http://www.sciencedirect.com/science/article/pii/S1389128615001632 doi: https://doi.org/10.1016/j.comnet.2015.05.007
Amokrane, A., Langar, R., Boutabayz, R., y Pujolle, G. (2013, 12). Online flow-based energy efficient management in Wireless Mesh Networks. En 2013 ieee global communications conference (globecom) (pp. 329–335). doi: 10.1109/GLOCOM.2013.6831092
An, N., y Lim, H. (2019). Poster: Protecting Control Planes in In-Band Software-Defined Wireless Networks. En The 25th annual international conference on mobile computing and networking. New York, NY, USA: Association for Computing Machinery. Descargado de https://doi.org/10.1145/3300061.3343396 doi: 10.1145/3300061.3343396
Arun, K. P., Chakraborty, A., y Manoj, B. S. (2014, 12). Communication overhead of an OpenFlow wireless mesh network. En 2014 ieee international conference on advanced networks and telecommuncations systems (ants) (pp. 1–6). doi: 10.1109/ANTS.2014.7057232
Barbeau, M., y Kranakis, E. (2007). Principles of Ad hoc networking (First ed.; Wiley, Ed.). John Wiley Sons, Ltd. Betzler, A., Quer, F., Camps-Mur, D., Demirkol, I., y Garcia-Villegas, E. (2016). On the benefits of wireless SDN in networks of constrained edge devices. En 2016 european conference on networks and communications (eucnc) (pp. 37–41). doi: 10.1109/EuCNC.2016.7561000
Bibri, S. (2017). The IoT for Smart Sustainable Cities of the Future: An Analytical Framework for Sensor-Based Big Data Applications for Environmental Sustainability. Sustainable Cities and Society, 38 . doi: 10.1016/j.scs.2017.12.034
Chung, J., González, G., Armuelles, I., Robles, T., Alcarria, R., y Morales, A. (2012, 10). Characterizing the multimedia service capacity of wireless mesh networks for rural communities. En 2012 ieee 8th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 628–635). doi: 10.1109/Wi-MOB.2012.6379142
Chung, J., González, G., Armuelles, I., Robles, T., Alcarria, R., y Morales, A. (2012, 10). Characterizing the multimedia service capacity of wireless mesh networks for rural communities. En 2012 ieee 8th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 628–635). doi: 10.1109/Wi-MOB.2012.6379142
Clausen, T., y Jacquet, P. (2003). RFC3626: Optimized Link State Routing Protocol (OLSR). USA: RFC Editor.
Dely, P., Kassler, A., y Bayer, N. (2011, 7). OpenFlow for Wireless Mesh Networks. En Computer communications and networks (icccn), 2011 proceedings of 20th international conference on (pp. 1–6). doi: 10.1109/ICCCN.2011.6006100
de Sousa, N. F. S., Perez, D. A. L., Rosa, R. V., Santos, M. A. S., y Rothenberg, C. E. (2018). Network Service Orchestration: {A} Survey. CoRR, abs/1803.0 . Descargado de http://arxiv.org/abs/1803.06596
de Sousa, N. F. S., Perez, D. A. L., Rosa, R. V., Santos, M. A. S., y Rothenberg, C. E. (2018). Network Service Orchestration: {A} Survey. CoRR, abs/1803.0 . Descargado de http://arxiv.org/abs/1803.06596
Detti, A., Pisa, C., Salsano, S., y Blefari-Melazzi, N. (2013, 10). Wireless Mesh Software Defined Networks (wmSDN). En 2013 ieee 9th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 89–95). doi: 10.1109/WiMOB.2013.6673345
Fals Borda, O. (2000). Acciónn y Espacio. autonomías en la nueva República. IEPRI.
Faucet Developers. (2021). Faucet Documentation. Descargado de https://faucet.nz/
Fitzek, F. H. P., y Katz, M. D. (2014). Mobile Clouds. Chichester, UK: John Wiley & Sons, Ltd. Descargado de http://doi.wiley.com/10.1002/9781118801338 doi: 10.1002/9781118801338
Furlan, D. (2011). Improving BATMAN Routing Stability and Performance (Tesis Doctoral no publicada). Universita Degli Studi di Trento.
Gast, M. (2005). 802.11 Wireless Networks The Definitive Guide. O’Reilly.
Hakiri, A., Sellami, B., Patil, P., Berthou, P., y Gokhale, A. (2017, 10). Managing Wireless Fog Networks using Software-Defined Networking. En 2017 ieee/acs 14th international conference on computer systems and applications (aiccsa) (pp. 1149–1156). doi: 10.1109/AICCSA.2017.9
Han, S. Y., Shin, B., y Lee, D. (2014, 9). A fine-grain partial MAC virtualization to support cross layer design in wireless ad hoc networks. En Local computer networks (lcn), 2014 ieee 39th conference on (pp. 506–509). doi: 10.1109/LCN.2014.6925828
Haque, I. T., y Abu-Ghazaleh, N. (2016). Wireless Software Defined Networking: a Survey and Taxonomy. IEEE Communications Surveys Tutorials, PP(99), 1. doi: 10.1109/COMST.2016.2571118
Hardkernel co Ltd. (2020). ODROID XU4 Wiki. Descargado de https://wiki.odroid.com/odroid-xu4/odroid-xu4
Hobbes, T. (1996). Leviathan. Oxford University Press.
Huang, H., Li, P., Guo, S., y Zhuang, W. (2015). Software-defined wireless mesh networks: architecture and traffic orchestration. IEEE Network, 29 (4), 24–30. doi: 10.1109/MNET.2015.7166187
Huang, Y., y Li, G. (2010). A Semantic Analysis for Internet of Things. Intelligent Computation Technology and Automation, International Conference on, 1 , 336–339. doi: 10.1109/ICICTA.2010.73
Hundeboll, M., y Ledet-Pedersen, J. (2011). Inter-flow network coding for wireless mesh networks (Tesis Doctoral no publicada). Aalborg University.Hyytiä, E., y Virtamo, J. (2007). On Traffic Load Distribution and Load Balancing in Dense Wireless Multihop Networks. EURASIP Journal on Wireless Communications and Networking, 2007 (1), 16932. doi: 10.1155/2007/16932
Jagadeesan, N. A., y Krishnamachari, B. (2015). Software-Defined Networking Paradigms in Wireless Networks: A Survey. ACM Computing Surveys, 47 (2), 27:1 - 27:11.
Jain, R., Chiu, D. M., y WR, H. (1984). A Quantitative Measure Of Fairness And Discrimination For Resource Allocation In Shared Computer Systems. CoRR, cs.NI/9809 .
Jain, S., Kumar, A., Mandal, S., Ong, J., Poutievski, L., Singh, A., . . . Vahdat, A. (2013). B4: Experience with a Globally Deployed Software Defined WAN. En Proceedings of the acm sigcomm conference. Hong Kong, China. Descargado de http://cseweb.ucsd.edu/ vahdat/papers/b4-sigcomm13.pdf
Jo, M. Y., y Kim, K. (2016). A research on the regional routing scheme based mobile agent for SDN. En International conference on information networking (Vol. 2016-March, pp. 211–213). doi: 10.1109/ICOIN.2016.7427116
Kleinberg, J., Rabani, Y., y Tardos, E. (2001, 8). Fairness in Routing and Load Balancing. Journal of Computer and System Sciences, 63 (1), 2–20. Descargado de http://linkinghub.elsevier.com/retrieve/pii/S0022000001917520 doi: 10.1006/jcss.2001.1752
Kuhn, T. S. (1962). The Structure of Scientific Revolutions. University of Chicago Press. Le-Trung, Q., Engelstad, P. E., Skeie, T., y Taherkordi, A. (2008). Loadbalance of Intra/inter-MANET Traffic over Multiple Internet Gateways. En Proceedings of the 6th international conference on advances in mobile computing and multimedia (pp. 50–57). New York, NY, USA: ACM. Descargado de http://doi.acm.org/10.1145/1497185.1497200 doi: 10.1145/1497185.1497200
Li, M., Zhao, L., Li, X., Li, X., Zaki, Y., Timm-Giel, A., y Gorg, C. (2012, 5). Investigation of Network Virtualization and Load Balancing Techniques in LTE Networks. En 2012 ieee 75th vehicular technology conference (vtc spring) (pp. 1–5). doi: 10.1109/VETECS.2012.6240347
Liang, C., y Yu, F. R. (2015). Wireless Network Virtualization: A Survey, Some Research Issues and Challenges. IEEE Communications Surveys Tutorials, 17 (1), 358–380. doi: 10.1109/COMST.2014.2352118
Linux Foundation. (2021). What Is Open vSwitch? Descargado de https://docs.openvswitch.org/en/latest/intro/what-is-ovs/
Liskov, B. (2010). Distributed Computing (N. A. Lynch y A. A. Shvartsman, Eds.). Berlin, Heidelberg: Springer Berlin Heidelberg. doi: 10.1007/978-3-642-15763-9{\ }2
Maheshwari, D., y Nedunchezhian, R. (2012). Load Balancing in Mobile Ad Hoc Networks: A Survey. International Journal of Computer Applications, 59 (16), 44–49.
Mcheick, H., Karawash, A., y Baba, T. (2011). Load Balancing Mathematical Model. En 2011 developments in e-systems engineering (pp. 581–586). doi: 10.1109/DeSE.2011.63
Neumann, A., Aichele, C., Lindner, M., y Wunderlich, S. (2008). Better approach to mobile ad-hoc networking (BATMAN). En Ietf draft (pp. 1–24). IETF. Descargado de https://tools.ietf.org/html/draft-openmesh-b-a-t-m-a-n-00
Newman, M. E. J. (2003). The Structure and Function of Complex Networks. SIAM Review, 45 (2), 167–256. Descargado de http://dx.doi.org/10.1137/S003614450342480 doi: 10.1137/S003614450342480
Nossum, R. (1987). Advanced topics in artificial intelligence (J. Siekmann, Ed.). Springer Verlag.
Noubir, G., Qian, W., Thapa, B., y Wang, Y. (2009, 3). Experimentationoriented platform for development and evaluation of MANET crosslayer protocols. Ad Hoc Networks, 7 (2), 443–459. Descargado de http://www.sciencedirect.com/science/article/pii/S1570870508000619 doi: 10.1016/j.adhoc.2008.05.002
Open-Mesh. (2020). B.A.T.M.A.N. Advanced Documentation Overview. Descargado de https://www.open-mesh.org/projects/open-mesh/wiki
Open Virtual Switch. (2016). OVS Faucet Tutorial. Descargado de https://docs.openvswitch.org/en/latest/tutorials/faucet/
Ospina-López, J. P., y Ortiz-Triviño, J. E. (2015). Characterization of a cluster and its resources in an Ad-Hoc network starting from the truncated geometric distribution. ITECKNE: Innovación e Investigación en Ingeniería, 12 (1), 68–75.
Perkins, C., Belding-Royer, E., y Das, S. (2003). RFC3561: Ad Hoc On-Demand Distance Vector (AODV) Routing. USA: RFC Editor.
Pham, P. P., y Perreau, S. (2003). Performance analysis of reactive shortest path and multipath routing mechanism with load balance. En Ieee infocom 2003. twenty-second annual joint conference of the ieee computer and communications societies (ieee cat. no.03ch37428) (Vol. 1, pp. 251–259). doi: 10.1109/INFCOM.2003.1208677
Qadir, J., Ahmed, N., y Ahad, N. (2014). Building programmable wireless networks: an architectural survey. EURASIP Journal on Wireless Communications and Networking, 2014 (1), 1–31. Descargado de http://dx.doi.org/10.1186/1687-1499-2014-172 doi: 10.1186/1687-1499-2014-172
Rajamani, K., y Jeyaseelan, J. (2005). Efficient partitioning of MAC (media access control) functions. Google Patents. Descargado de http://www.google.com.na/patents/US20050270993
Raspberry Pi Foundation. (2020). FAQs. Descargado de https://www.raspberrypi.org/documentation/faqs/
Rawls, J. (1995). Teoría de la justicia. Fondo de Cultura Económica.
Rawls, J., y Kelly, E. (2001). Justice as Fairness: A Restatement. Harvard University Press.
Raychaudhuri, D., y Gerla, M. (2011). Emerging Wireless Technologies and the Future Mobile Internet. Cambridge University Press. Descargado de https://books.google.com.co/books?id=NwjniHbu80UC
Robertazzi, T. (2000). Computer Networks and Systems (Third Edit ed.). Springer Verlag. doi: 10.1007/978-1-4612-1164-8
Russell, S. J., y Norvig, P. (2020). Artificial Intelligence: A Modern Approach (4th ed.). Prentice Hall.
RYU project team. (2020). RYU SDN Framework (1.0 ed.). Descargado de https://book.ryu-sdn.org/en/Ryubook.pdf
Sartre, J.-P. (1943). El ser y la nada.
Seither, D., König, A., y Hollick, M. (2011, 10). Routing performance of Wireless Mesh Networks: A practical evaluation of BATMAN advanced. En 2011 ieee 36th conference on local computer networks (pp. 897–904). doi: 10.1109/LCN.2011.6115569
Sliwa, B., Falten, S., y Wietfeld, C. (2019). Performance Evaluation and Optimization of B.A.T.M.A.N. V Routing for Aerial and Ground-Based Mobile Ad-Hoc Networks. En 2019 ieee 89th vehicular technology conference (vtc2019-spring) (pp. 1–7). doi: 10.1109/VTCSpring.2019.8746361
Spinoza, B. (1980). Ética demostrada según el orden geométrico. Fondo de Cultura Económica.
Tashtoush, Y., Darwish, O., y Hayajneh, M. (2014). Fibonacci sequence based multipath load balancing approach for mobile ad hoc networks. Ad Hoc Networks, 16 , 237–246. Descargado de http://www.sciencedirect.com/science/article/pii/S1570870514000031 doi: https://doi.org/10.1016/j.adhoc.2013.12.015
Tlön, G. (2021). TLÖN - Grupo de Investigación en Redes de Telecomunicaciones Dinámicas y Lenguajes de Programación Distribuidos. Descargado de http://tlon.unal.edu.co/
T.M. Blessing, L., Chakrabarti, A., T.M. Blessing, L., y Chakrabarti, A. (2009). DRM, a Design Research Methodology. Springer.
Toumpis, S., y Gitzenis, S. (2009, 4). Load Balancing in Wireless Sensor Networks using Kirchhoff’s Voltage Law. En Ieee infocom 2009 (pp. 1656–1664). doi: 10.1109/INFCOM.2009.5062084
Triviño Cabrera, A., Casilari, E., Bartolomé, D., y Ariza, A. (2006). Traffic Load Distribution in Ad Hoc Networks through Mobile Internet Gateways. Proceedings of Fourth International Working Conference on Performance Modelling and Evaluation of Heterogeneous Networks, 1 .
Turner, N. M., J., T. A., H, B., G, P., L, P., J, R., y S, S. (2008). OpenFlow: enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 32 (2), 69–74.
Unión Internacional de Telecomunicaciones. (2005). Manual de gestión nacional del espectro.
Wang, W., Chen, Y., Zhang, Q., y Jiang, T. (2016). A software-defined wireless networking enabled spectrum management architecture. IEEE Communications Magazine, 54 (1), 33–39. doi: 10.1109/MCOM.2016.7378423
Wang, Y., Zhang, Y., y Chen, J. (2016). SDNPS: A Load-Balanced Topic-Based Publish/-Subscribe System in Software-Defined Networking. Applied Sciences, 6 (91), 1–21. doi:10.3390/app6040091
Wen, H., Kumar, P., y Le-Ngoc, T. (2013). Wireless Virtualization. Springer.
Wu, D., Arkhipov, D. I., Asmare, E., Qin, Z., y McCann, J. A. (2015, 4). UbiFlow: Mobility management in urban-scale software defined IoT. En 2015 ieee conference on computer communications (infocom) (pp. 208–216). doi: 10.1109/INFOCOM.2015.7218384
Yang, F., Gondi, V., Hallstrom, J. O., Wang, K. C., y Eidson, G. (2014). OpenFlowbased load balancing for wireless mesh infrastructure. En 2014 ieee 11th consumer communications and networking conference (ccnc) (pp. 444–449). doi: 10.1109/CCNC.2014.6866608
Yang, M., Li, Y., Jin, D., Zeng, L., Wu, X., y Vasilakos, A. V. (2015). Software-Defined and Virtualized Future Mobile and Wireless Networks: A Survey. Mobile Networks and Applications, 20 (1), 4–18. Descargado de http://dx.doi.org/10.1007/s11036-014-0533-8 doi: 10.1007/s11036-014-0533-8
Yu, H. H. C., Quer, G., y Rao, R. R. R. (2017, 5). Wireless SDN mobile ad hoc network: From theory to practice. En 2017 ieee international conference on communications (icc) (pp. 1–7). IEEE. Descargado de http://ieeexplore.ieee.org/document/7996340/ doi:10.1109/ICC.2017.7996340
Yu, J. Y., y Chong, P. H. J. (2005). A survey of clustering schemes for mobile ad hoc networks. IEEE Communications Surveys Tutorials, 7 (1), 32–48. doi:10.1109/COMST.2005.1423333
Zaki, Y. (2013). Future Mobile Communications LTE Optimization and Mobile Network Virtualization. Springer Vieweg, Wiesbaden. doi: 10.1007/978-3-658-00808-6
Zaki, Y., Zhao, L., Goerg, C., y Timm-Giel, A. (2010, 10). LTE wireless virtualization and spectrum management. En Wireless and mobile networking conference (wmnc), 2010 third joint ifip (pp. 1–6). doi: 10.1109/WMNC.2010.5678740
Zaman, R. U., Khan, K. U. R., y Reddy, A. V. (2009, 12). A review of gateway load balancing strategies in Integrated Internet-MANET. En Internet multimedia services architecture and applications (imsaa), 2009 ieee international conference on (pp. 1–6). doi: 10.1109/IMSAA.2009.5439450
Zárate-Ceballos, H., y Ortiz-Triviño, J. E. (2020). S.O.V.O.R.A.: A Distributed Wireless Operating System. Information, 11 (12). Descargado de https://www.mdpi.com/2078-2489/11/12/581 doi: 10.3390/info11120581
Zhao, J. H., Yang, X. Z., y Liu, H. W. (2005, 4). Load-balancing strategy of multigateway for ad hoc Internet connectivity. En International conference on information technology: Coding and computing (itcc’05) - volume ii (Vol. 2, pp. 592–596). doi: 10.1109/ITCC.2005.184
Zhou, Q., Wang, C. X., McLaughlin, S., y Zhou, X. (2015). Network virtualization and resource description in software-defined wireless networks. IEEE Communications Magazine, 53 (11), 110–117. doi: 10.1109/MCOM.2015.7321979
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spelling Reconocimiento 4.0 Internacionalhttp://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Ortiz Triviño, Jorge Eduardob691205eb442f404dc22848c59c4ddb7600Rueda Dimaté, Óscar David8950f90f882ff219945d3c8d737e6bf6600TLÖN - Grupo de Investigación en Redes de Telecomunicaciones Dinámicas y Lenguajes de Programación Distribuidos2021-10-15T23:43:11Z2021-10-15T23:43:11Z2021https://repositorio.unal.edu.co/handle/unal/80566Universidad Nacional de ColombiaRepositorio Institucional Universidad Nacional de Colombiahttps://repositorio.unal.edu.co/ilustraciones, fotografías, gráficas, tablasEl paradigma de las Redes Definidas por Software (SDN) permite el uso de técnicas de virtualización para la administración y despliegue de servicios en las Redes Ad-hoc Móviles (MANET). Esto representa un desafío debido a las propiedades de auto-organización, necesidad de conservación de la energía, infraestructura descentralizada y escalabilidad. Una arquitectura de virtualización apropiada habilita funcionalidades como el balanceo de carga en sistemas distribuidos, como el propuesto en el proyecto Tlön. Este trabajo, presenta un modelo que usa un agente local para crear un módulo de control virtualizado para realizar balanceo de carga en MANET, trabajando con la tecnología IEEE 802.11. (Texto tomado de la fuente).Software Defined Networks (SDN) and Software Defined Wireless Networks (SDWN)- allow the use of virtualization techniques for managing and deploying services over Mobile Ad-hoc Networks (MANET). This can be a challenge due to the properties of self-organization, energy awareness, decentralized infrastructure and scalability of MANET. An appropriate virtualization architecture enables the load balancing over MANET on a distributed computer system, such as the one proposed in the Tlön project. This paper presents a model that uses a local agent to create a load balancer into the MANET, working with the Ad-hoc mode of IEEE 802.11 technology.Incluye anexosMaestríaMagíster en Ingeniería - TelecomunicacionesAl tratarse Tlön de un proyecto de investigación aplicada y experimental, debe guiarse de una metodología como Design Research Methodology (DRM) introducida por T.M. Blessing y cols. (2009).Computación aplicada - telecomunicacionesxv, 100 páginasapplication/pdfspaUniversidad Nacional de ColombiaBogotá - Ingeniería - Maestría en Ingeniería - TelecomunicacionesDepartamento de Ingeniería de Sistemas e IndustrialFacultad de IngenieríaBogotá, ColombiaUniversidad Nacional de Colombia - Sede Bogotá000 - Ciencias de la computación, información y obras generalesTelecommunications networksCommunications softwareComputer programmingRedes de telecomunicacionesProgramas para comunicación entre computadoresProgramación (computadores electrónicos)MANETSDNRedes ad-hoc móvilesRedes definidas por softwareControladorVirtualizaciónMANETSDNMobile ad-hoc networksSoftware defined networksControllerVirtualizationConstrucción de un módulo de control virtualizado para realizar balanceo de carga en MANETsConstruction of a virtualized control module to perform load balancing in MANETsTrabajo de grado - Maestríainfo:eu-repo/semantics/masterThesisinfo:eu-repo/semantics/acceptedVersionTexthttp://purl.org/redcol/resource_type/TMAbbas, A. M., y Kure, O. (2009). A probabilistic quality of service routing for mobile Ad hoc networks. En 2009 first international conference on networked digital technologies (pp. 256–260). doi: 10.1109/NDT.2009.5272075Ajmal, S., Jabeen, S., Rasheed, A., y Hasan, A. (2015). An intelligent hybrid spread spectrum MAC for interference management in mobile ad hoc networks. Computer Communications, 72 , 116–129. Descargado de http://www.sciencedirect.com/science/article/pii/S0140366415001541 doi:http://dx.doi.org/10.1016/j.comcom.2015.04.006Akyildiz, I. F., Wang, P., y Lin, S.-C. (2015). SoftAir: A software defined networking architecture for 5G wireless systems. Computer Networks, 85 , 1–18. Descargado de http://www.sciencedirect.com/science/article/pii/S1389128615001632 doi: https://doi.org/10.1016/j.comnet.2015.05.007Amokrane, A., Langar, R., Boutabayz, R., y Pujolle, G. (2013, 12). Online flow-based energy efficient management in Wireless Mesh Networks. En 2013 ieee global communications conference (globecom) (pp. 329–335). doi: 10.1109/GLOCOM.2013.6831092An, N., y Lim, H. (2019). Poster: Protecting Control Planes in In-Band Software-Defined Wireless Networks. En The 25th annual international conference on mobile computing and networking. New York, NY, USA: Association for Computing Machinery. Descargado de https://doi.org/10.1145/3300061.3343396 doi: 10.1145/3300061.3343396Arun, K. P., Chakraborty, A., y Manoj, B. S. (2014, 12). Communication overhead of an OpenFlow wireless mesh network. En 2014 ieee international conference on advanced networks and telecommuncations systems (ants) (pp. 1–6). doi: 10.1109/ANTS.2014.7057232Barbeau, M., y Kranakis, E. (2007). Principles of Ad hoc networking (First ed.; Wiley, Ed.). John Wiley Sons, Ltd. Betzler, A., Quer, F., Camps-Mur, D., Demirkol, I., y Garcia-Villegas, E. (2016). On the benefits of wireless SDN in networks of constrained edge devices. En 2016 european conference on networks and communications (eucnc) (pp. 37–41). doi: 10.1109/EuCNC.2016.7561000Bibri, S. (2017). The IoT for Smart Sustainable Cities of the Future: An Analytical Framework for Sensor-Based Big Data Applications for Environmental Sustainability. Sustainable Cities and Society, 38 . doi: 10.1016/j.scs.2017.12.034Chung, J., González, G., Armuelles, I., Robles, T., Alcarria, R., y Morales, A. (2012, 10). Characterizing the multimedia service capacity of wireless mesh networks for rural communities. En 2012 ieee 8th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 628–635). doi: 10.1109/Wi-MOB.2012.6379142Chung, J., González, G., Armuelles, I., Robles, T., Alcarria, R., y Morales, A. (2012, 10). Characterizing the multimedia service capacity of wireless mesh networks for rural communities. En 2012 ieee 8th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 628–635). doi: 10.1109/Wi-MOB.2012.6379142Clausen, T., y Jacquet, P. (2003). RFC3626: Optimized Link State Routing Protocol (OLSR). USA: RFC Editor.Dely, P., Kassler, A., y Bayer, N. (2011, 7). OpenFlow for Wireless Mesh Networks. En Computer communications and networks (icccn), 2011 proceedings of 20th international conference on (pp. 1–6). doi: 10.1109/ICCCN.2011.6006100de Sousa, N. F. S., Perez, D. A. L., Rosa, R. V., Santos, M. A. S., y Rothenberg, C. E. (2018). Network Service Orchestration: {A} Survey. CoRR, abs/1803.0 . Descargado de http://arxiv.org/abs/1803.06596de Sousa, N. F. S., Perez, D. A. L., Rosa, R. V., Santos, M. A. S., y Rothenberg, C. E. (2018). Network Service Orchestration: {A} Survey. CoRR, abs/1803.0 . Descargado de http://arxiv.org/abs/1803.06596Detti, A., Pisa, C., Salsano, S., y Blefari-Melazzi, N. (2013, 10). Wireless Mesh Software Defined Networks (wmSDN). En 2013 ieee 9th international conference on wireless and mobile computing, networking and communications (wimob) (pp. 89–95). doi: 10.1109/WiMOB.2013.6673345Fals Borda, O. (2000). Acciónn y Espacio. autonomías en la nueva República. IEPRI.Faucet Developers. (2021). Faucet Documentation. Descargado de https://faucet.nz/Fitzek, F. H. P., y Katz, M. D. (2014). Mobile Clouds. Chichester, UK: John Wiley & Sons, Ltd. Descargado de http://doi.wiley.com/10.1002/9781118801338 doi: 10.1002/9781118801338Furlan, D. (2011). Improving BATMAN Routing Stability and Performance (Tesis Doctoral no publicada). Universita Degli Studi di Trento.Gast, M. (2005). 802.11 Wireless Networks The Definitive Guide. O’Reilly.Hakiri, A., Sellami, B., Patil, P., Berthou, P., y Gokhale, A. (2017, 10). Managing Wireless Fog Networks using Software-Defined Networking. En 2017 ieee/acs 14th international conference on computer systems and applications (aiccsa) (pp. 1149–1156). doi: 10.1109/AICCSA.2017.9Han, S. Y., Shin, B., y Lee, D. (2014, 9). A fine-grain partial MAC virtualization to support cross layer design in wireless ad hoc networks. En Local computer networks (lcn), 2014 ieee 39th conference on (pp. 506–509). doi: 10.1109/LCN.2014.6925828Haque, I. T., y Abu-Ghazaleh, N. (2016). Wireless Software Defined Networking: a Survey and Taxonomy. IEEE Communications Surveys Tutorials, PP(99), 1. doi: 10.1109/COMST.2016.2571118Hardkernel co Ltd. (2020). ODROID XU4 Wiki. Descargado de https://wiki.odroid.com/odroid-xu4/odroid-xu4Hobbes, T. (1996). Leviathan. Oxford University Press.Huang, H., Li, P., Guo, S., y Zhuang, W. (2015). Software-defined wireless mesh networks: architecture and traffic orchestration. IEEE Network, 29 (4), 24–30. doi: 10.1109/MNET.2015.7166187Huang, Y., y Li, G. (2010). A Semantic Analysis for Internet of Things. Intelligent Computation Technology and Automation, International Conference on, 1 , 336–339. doi: 10.1109/ICICTA.2010.73Hundeboll, M., y Ledet-Pedersen, J. (2011). Inter-flow network coding for wireless mesh networks (Tesis Doctoral no publicada). Aalborg University.Hyytiä, E., y Virtamo, J. (2007). On Traffic Load Distribution and Load Balancing in Dense Wireless Multihop Networks. EURASIP Journal on Wireless Communications and Networking, 2007 (1), 16932. doi: 10.1155/2007/16932Jagadeesan, N. A., y Krishnamachari, B. (2015). Software-Defined Networking Paradigms in Wireless Networks: A Survey. ACM Computing Surveys, 47 (2), 27:1 - 27:11.Jain, R., Chiu, D. M., y WR, H. (1984). A Quantitative Measure Of Fairness And Discrimination For Resource Allocation In Shared Computer Systems. CoRR, cs.NI/9809 .Jain, S., Kumar, A., Mandal, S., Ong, J., Poutievski, L., Singh, A., . . . Vahdat, A. (2013). B4: Experience with a Globally Deployed Software Defined WAN. En Proceedings of the acm sigcomm conference. Hong Kong, China. Descargado de http://cseweb.ucsd.edu/ vahdat/papers/b4-sigcomm13.pdfJo, M. Y., y Kim, K. (2016). A research on the regional routing scheme based mobile agent for SDN. En International conference on information networking (Vol. 2016-March, pp. 211–213). doi: 10.1109/ICOIN.2016.7427116Kleinberg, J., Rabani, Y., y Tardos, E. (2001, 8). Fairness in Routing and Load Balancing. Journal of Computer and System Sciences, 63 (1), 2–20. Descargado de http://linkinghub.elsevier.com/retrieve/pii/S0022000001917520 doi: 10.1006/jcss.2001.1752Kuhn, T. S. (1962). The Structure of Scientific Revolutions. University of Chicago Press. Le-Trung, Q., Engelstad, P. E., Skeie, T., y Taherkordi, A. (2008). Loadbalance of Intra/inter-MANET Traffic over Multiple Internet Gateways. En Proceedings of the 6th international conference on advances in mobile computing and multimedia (pp. 50–57). New York, NY, USA: ACM. Descargado de http://doi.acm.org/10.1145/1497185.1497200 doi: 10.1145/1497185.1497200Li, M., Zhao, L., Li, X., Li, X., Zaki, Y., Timm-Giel, A., y Gorg, C. (2012, 5). Investigation of Network Virtualization and Load Balancing Techniques in LTE Networks. En 2012 ieee 75th vehicular technology conference (vtc spring) (pp. 1–5). doi: 10.1109/VETECS.2012.6240347Liang, C., y Yu, F. R. (2015). Wireless Network Virtualization: A Survey, Some Research Issues and Challenges. IEEE Communications Surveys Tutorials, 17 (1), 358–380. doi: 10.1109/COMST.2014.2352118Linux Foundation. (2021). What Is Open vSwitch? Descargado de https://docs.openvswitch.org/en/latest/intro/what-is-ovs/Liskov, B. (2010). Distributed Computing (N. A. Lynch y A. A. Shvartsman, Eds.). Berlin, Heidelberg: Springer Berlin Heidelberg. doi: 10.1007/978-3-642-15763-9{\ }2Maheshwari, D., y Nedunchezhian, R. (2012). Load Balancing in Mobile Ad Hoc Networks: A Survey. International Journal of Computer Applications, 59 (16), 44–49.Mcheick, H., Karawash, A., y Baba, T. (2011). Load Balancing Mathematical Model. En 2011 developments in e-systems engineering (pp. 581–586). doi: 10.1109/DeSE.2011.63Neumann, A., Aichele, C., Lindner, M., y Wunderlich, S. (2008). Better approach to mobile ad-hoc networking (BATMAN). En Ietf draft (pp. 1–24). IETF. Descargado de https://tools.ietf.org/html/draft-openmesh-b-a-t-m-a-n-00Newman, M. E. J. (2003). The Structure and Function of Complex Networks. SIAM Review, 45 (2), 167–256. Descargado de http://dx.doi.org/10.1137/S003614450342480 doi: 10.1137/S003614450342480Nossum, R. (1987). Advanced topics in artificial intelligence (J. Siekmann, Ed.). Springer Verlag.Noubir, G., Qian, W., Thapa, B., y Wang, Y. (2009, 3). Experimentationoriented platform for development and evaluation of MANET crosslayer protocols. Ad Hoc Networks, 7 (2), 443–459. Descargado de http://www.sciencedirect.com/science/article/pii/S1570870508000619 doi: 10.1016/j.adhoc.2008.05.002Open-Mesh. (2020). B.A.T.M.A.N. Advanced Documentation Overview. Descargado de https://www.open-mesh.org/projects/open-mesh/wikiOpen Virtual Switch. (2016). OVS Faucet Tutorial. Descargado de https://docs.openvswitch.org/en/latest/tutorials/faucet/Ospina-López, J. P., y Ortiz-Triviño, J. E. (2015). Characterization of a cluster and its resources in an Ad-Hoc network starting from the truncated geometric distribution. ITECKNE: Innovación e Investigación en Ingeniería, 12 (1), 68–75.Perkins, C., Belding-Royer, E., y Das, S. (2003). RFC3561: Ad Hoc On-Demand Distance Vector (AODV) Routing. USA: RFC Editor.Pham, P. P., y Perreau, S. (2003). Performance analysis of reactive shortest path and multipath routing mechanism with load balance. En Ieee infocom 2003. twenty-second annual joint conference of the ieee computer and communications societies (ieee cat. no.03ch37428) (Vol. 1, pp. 251–259). doi: 10.1109/INFCOM.2003.1208677Qadir, J., Ahmed, N., y Ahad, N. (2014). Building programmable wireless networks: an architectural survey. EURASIP Journal on Wireless Communications and Networking, 2014 (1), 1–31. Descargado de http://dx.doi.org/10.1186/1687-1499-2014-172 doi: 10.1186/1687-1499-2014-172Rajamani, K., y Jeyaseelan, J. (2005). Efficient partitioning of MAC (media access control) functions. Google Patents. Descargado de http://www.google.com.na/patents/US20050270993Raspberry Pi Foundation. (2020). FAQs. Descargado de https://www.raspberrypi.org/documentation/faqs/Rawls, J. (1995). Teoría de la justicia. Fondo de Cultura Económica.Rawls, J., y Kelly, E. (2001). Justice as Fairness: A Restatement. Harvard University Press.Raychaudhuri, D., y Gerla, M. (2011). Emerging Wireless Technologies and the Future Mobile Internet. Cambridge University Press. Descargado de https://books.google.com.co/books?id=NwjniHbu80UCRobertazzi, T. (2000). Computer Networks and Systems (Third Edit ed.). Springer Verlag. doi: 10.1007/978-1-4612-1164-8Russell, S. J., y Norvig, P. (2020). Artificial Intelligence: A Modern Approach (4th ed.). Prentice Hall.RYU project team. (2020). RYU SDN Framework (1.0 ed.). Descargado de https://book.ryu-sdn.org/en/Ryubook.pdfSartre, J.-P. (1943). El ser y la nada.Seither, D., König, A., y Hollick, M. (2011, 10). Routing performance of Wireless Mesh Networks: A practical evaluation of BATMAN advanced. En 2011 ieee 36th conference on local computer networks (pp. 897–904). doi: 10.1109/LCN.2011.6115569Sliwa, B., Falten, S., y Wietfeld, C. (2019). Performance Evaluation and Optimization of B.A.T.M.A.N. V Routing for Aerial and Ground-Based Mobile Ad-Hoc Networks. En 2019 ieee 89th vehicular technology conference (vtc2019-spring) (pp. 1–7). doi: 10.1109/VTCSpring.2019.8746361Spinoza, B. (1980). Ética demostrada según el orden geométrico. Fondo de Cultura Económica.Tashtoush, Y., Darwish, O., y Hayajneh, M. (2014). Fibonacci sequence based multipath load balancing approach for mobile ad hoc networks. Ad Hoc Networks, 16 , 237–246. Descargado de http://www.sciencedirect.com/science/article/pii/S1570870514000031 doi: https://doi.org/10.1016/j.adhoc.2013.12.015Tlön, G. (2021). TLÖN - Grupo de Investigación en Redes de Telecomunicaciones Dinámicas y Lenguajes de Programación Distribuidos. Descargado de http://tlon.unal.edu.co/T.M. Blessing, L., Chakrabarti, A., T.M. Blessing, L., y Chakrabarti, A. (2009). DRM, a Design Research Methodology. Springer.Toumpis, S., y Gitzenis, S. (2009, 4). Load Balancing in Wireless Sensor Networks using Kirchhoff’s Voltage Law. En Ieee infocom 2009 (pp. 1656–1664). doi: 10.1109/INFCOM.2009.5062084Triviño Cabrera, A., Casilari, E., Bartolomé, D., y Ariza, A. (2006). Traffic Load Distribution in Ad Hoc Networks through Mobile Internet Gateways. Proceedings of Fourth International Working Conference on Performance Modelling and Evaluation of Heterogeneous Networks, 1 .Turner, N. M., J., T. A., H, B., G, P., L, P., J, R., y S, S. (2008). OpenFlow: enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 32 (2), 69–74.Unión Internacional de Telecomunicaciones. (2005). Manual de gestión nacional del espectro.Wang, W., Chen, Y., Zhang, Q., y Jiang, T. (2016). A software-defined wireless networking enabled spectrum management architecture. IEEE Communications Magazine, 54 (1), 33–39. doi: 10.1109/MCOM.2016.7378423Wang, Y., Zhang, Y., y Chen, J. (2016). SDNPS: A Load-Balanced Topic-Based Publish/-Subscribe System in Software-Defined Networking. Applied Sciences, 6 (91), 1–21. doi:10.3390/app6040091Wen, H., Kumar, P., y Le-Ngoc, T. (2013). Wireless Virtualization. Springer.Wu, D., Arkhipov, D. I., Asmare, E., Qin, Z., y McCann, J. A. (2015, 4). UbiFlow: Mobility management in urban-scale software defined IoT. En 2015 ieee conference on computer communications (infocom) (pp. 208–216). doi: 10.1109/INFOCOM.2015.7218384Yang, F., Gondi, V., Hallstrom, J. O., Wang, K. C., y Eidson, G. (2014). OpenFlowbased load balancing for wireless mesh infrastructure. En 2014 ieee 11th consumer communications and networking conference (ccnc) (pp. 444–449). doi: 10.1109/CCNC.2014.6866608Yang, M., Li, Y., Jin, D., Zeng, L., Wu, X., y Vasilakos, A. V. (2015). Software-Defined and Virtualized Future Mobile and Wireless Networks: A Survey. Mobile Networks and Applications, 20 (1), 4–18. Descargado de http://dx.doi.org/10.1007/s11036-014-0533-8 doi: 10.1007/s11036-014-0533-8Yu, H. H. C., Quer, G., y Rao, R. R. R. (2017, 5). Wireless SDN mobile ad hoc network: From theory to practice. En 2017 ieee international conference on communications (icc) (pp. 1–7). IEEE. Descargado de http://ieeexplore.ieee.org/document/7996340/ doi:10.1109/ICC.2017.7996340Yu, J. Y., y Chong, P. H. J. (2005). A survey of clustering schemes for mobile ad hoc networks. IEEE Communications Surveys Tutorials, 7 (1), 32–48. doi:10.1109/COMST.2005.1423333Zaki, Y. (2013). Future Mobile Communications LTE Optimization and Mobile Network Virtualization. Springer Vieweg, Wiesbaden. doi: 10.1007/978-3-658-00808-6Zaki, Y., Zhao, L., Goerg, C., y Timm-Giel, A. (2010, 10). LTE wireless virtualization and spectrum management. En Wireless and mobile networking conference (wmnc), 2010 third joint ifip (pp. 1–6). doi: 10.1109/WMNC.2010.5678740Zaman, R. U., Khan, K. U. R., y Reddy, A. V. (2009, 12). A review of gateway load balancing strategies in Integrated Internet-MANET. En Internet multimedia services architecture and applications (imsaa), 2009 ieee international conference on (pp. 1–6). doi: 10.1109/IMSAA.2009.5439450Zárate-Ceballos, H., y Ortiz-Triviño, J. E. (2020). S.O.V.O.R.A.: A Distributed Wireless Operating System. Information, 11 (12). Descargado de https://www.mdpi.com/2078-2489/11/12/581 doi: 10.3390/info11120581Zhao, J. H., Yang, X. Z., y Liu, H. W. (2005, 4). Load-balancing strategy of multigateway for ad hoc Internet connectivity. En International conference on information technology: Coding and computing (itcc’05) - volume ii (Vol. 2, pp. 592–596). doi: 10.1109/ITCC.2005.184Zhou, Q., Wang, C. X., McLaughlin, S., y Zhou, X. (2015). Network virtualization and resource description in software-defined wireless networks. IEEE Communications Magazine, 53 (11), 110–117. doi: 10.1109/MCOM.2015.7321979InvestigadoresPúblico generalLICENSElicense.txtlicense.txttext/plain; charset=utf-83964https://repositorio.unal.edu.co/bitstream/unal/80566/3/license.txtcccfe52f796b7c63423298c2d3365fc6MD53ORIGINAL1013582789.2021 (1).pdf1013582789.2021 (1).pdfTesis de Maestría en Ingeniería - Telecomunicacionesapplication/pdf10744356https://repositorio.unal.edu.co/bitstream/unal/80566/5/1013582789.2021%20%281%29.pdfc17b5f950c5c96c9aaa9799013efecd8MD55THUMBNAIL1013582789.2021 (1).pdf.jpg1013582789.2021 (1).pdf.jpgGenerated Thumbnailimage/jpeg4465https://repositorio.unal.edu.co/bitstream/unal/80566/6/1013582789.2021%20%281%29.pdf.jpg22656bb51a508f9c928aac9113ef7e9fMD56unal/80566oai:repositorio.unal.edu.co:unal/805662023-07-30 23:03:46.673Repositorio Institucional Universidad Nacional de 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