Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G

El artículo describe las redes 4G y muestra un mapa general de su desarrollo tecnológico. Adicionalmente se muestran dos temas que son clave en el desarrollo de este tipo de redes. Estos temas son el Handover Vertical y la convergencia hacia IP. La revisión expuesta muestra el estado del arte y los...

Full description

Autores:
González Páez, Francisco Javier; M. Sc. (c). Universidad Nacional de Colombia Bogotá
Ortiz Triviño, Jorge Eduardo; Ph.D. (c). Universidad Nacional de Colombia Bogotá
Tipo de recurso:
Fecha de publicación:
2010
Institución:
Universidad Santo Tomás
Repositorio:
Universidad Santo Tomás
Idioma:
spa
OAI Identifier:
oai:repository.usta.edu.co:11634/8303
Acceso en línea:
http://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/287
Palabra clave:
Redes 4G, handoff vertical, Handover Vertical, IP Móvil.
Rights
License
Copyright (c) 2018 ITECKNE
id SantoToma2_ee71fb6a28292b4101a56450bbd21918
oai_identifier_str oai:repository.usta.edu.co:11634/8303
network_acronym_str SantoToma2
network_name_str Universidad Santo Tomás
repository_id_str
dc.title.spa.fl_str_mv Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
title Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
spellingShingle Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
Redes 4G, handoff vertical, Handover Vertical, IP Móvil.
title_short Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
title_full Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
title_fullStr Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
title_full_unstemmed Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
title_sort Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4G
dc.creator.fl_str_mv González Páez, Francisco Javier; M. Sc. (c). Universidad Nacional de Colombia Bogotá
Ortiz Triviño, Jorge Eduardo; Ph.D. (c). Universidad Nacional de Colombia Bogotá
dc.contributor.author.spa.fl_str_mv González Páez, Francisco Javier; M. Sc. (c). Universidad Nacional de Colombia Bogotá
Ortiz Triviño, Jorge Eduardo; Ph.D. (c). Universidad Nacional de Colombia Bogotá
dc.subject.proposal.spa.fl_str_mv Redes 4G, handoff vertical, Handover Vertical, IP Móvil.
topic Redes 4G, handoff vertical, Handover Vertical, IP Móvil.
description El artículo describe las redes 4G y muestra un mapa general de su desarrollo tecnológico. Adicionalmente se muestran dos temas que son clave en el desarrollo de este tipo de redes. Estos temas son el Handover Vertical y la convergencia hacia IP. La revisión expuesta muestra el estado del arte y los antecedentes de estos temas. Con base en esto se genera un mapa conceptual en el que se considera la variedad de tecnologías que convergen en el esquema 4G.
publishDate 2010
dc.date.issued.spa.fl_str_mv 2010-12-31
dc.type.coarversion.fl_str_mv http://purl.org/coar/version/c_970fb48d4fbd8a85
dc.type.coar.fl_str_mv http://purl.org/coar/resource_type/c_2df8fbb1
dc.type.drive.none.fl_str_mv info:eu-repo/semantics/article
dc.identifier.spa.fl_str_mv http://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/287
10.15332/iteckne.v7i2.287
url http://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/287
identifier_str_mv 10.15332/iteckne.v7i2.287
dc.language.iso.spa.fl_str_mv spa
language spa
dc.relation.spa.fl_str_mv http://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/287/281
/*ref*/Mishra, A. R., “Advanced Cellular Networks planning and Optimisation”, John Wiley & Sons Ltd (ed), 2007.
/*ref*/Sun, J., Sauvola, J., Howie, D., “Features in Future: 4G Visions from a Technical Perspective”, IEEE 2001.
/*ref*/Janevski, T., “5G Mobile Phone Concept”, IEEE, 2009.
/*ref*/Li, X., Gani, A., Salleh, R., Zakaria, O., “The Future of Mobile Wireless Communication Networks”, International Conference on Communication Software and Networks, 2009
/*ref*/Eastwood, L., Migaldi, S., Xie, Q., Gupta, V., “Mobility Using IEEE 802.21 In A Heterogeneous IEEE 802.16/802.11-Based, IMT-Advanced (4g) Network”, IEEE Wireless Communications, Abril de 2008, pp. 26-34.
/*ref*/Jamil, M., Shaikh, S. P., Shahzad, M., Awais, Q., “4G: The Future Mobile Technology”, IEEE.
/*ref*/Rec. ITU-R M1645, “Framework and overall objectives of the future development of IMT-2000 and systems beyond IMT-2000”, 2003.
/*ref*/Govil, J., Govil, J., “4G: Functionalities Development and an Analysis of Mobile Wireless Grid”, First International Conference on Emerging Trends in Engineering and Technology, 2008, pp. 270-275.
/*ref*/Khan, A. H., Qadeer, M. A., Ansari, J. A., Waheed, S., “4G as a Next Generation Wireless Network”, International Conference on Future Computer and Communication, IEEE, 2009 pp. 334-338.
/*ref*/Rouffet, D., Sehier, P., “Convergence and Competition on the Way towards 4G”, IEEE, 2007.
/*ref*/Wang, Y., Qiao, X., Li, X., Meng, L., “The ServiceContext Information Processing Mechanism in B3G/4G”, International Conference on Computer Science and Software Engineering, 2008, pp.1174-1177.
/*ref*/Frattasi, S., Fathi, H., Gimmler, A., Fitzek, F., Prasad, R., “Designing Socially Robust 4G Wireless Services”, IEEE Technology and Society Magazine | summer 2006, pp. 51-64.
/*ref*/Choi, J, “4G Solution for Convergence?”, IEEE, 2006.
/*ref*/Murota, K. NTT DoCoMo, “Mobile communications trends in Japan and NTT DoCoMo’s activities towards 21st century”, ACTS Mobile Summit99, Sorrento, Italy, June 1999.
/*ref*/Park, Y., Park, T., “A Survey of Security Threats on 4G Networks”, Workshop on Security and Privacy in 4G Networks, IEEE, 2007.
/*ref*/Govil, J., Govil, J., “An Empirical Feasibility Study of 4G’s Key Technologies”, IEEE, 2008, pp. 267- 270.
/*ref*/Xiuhua, Q., Chuanhui, Q., Li, W., “A Study of Some Key Technologies of 4G System”, IEEE 2008.
/*ref*/Sgora, A., Vergados, D. D., “Handoff Prioritization and Decision Schemes in Wireless Cellular Networks: a Survey”, IEEE Communications Surveys & Tutorials, vol. 11, no. 4, fourth quarter 2009, pp.57-77.
/*ref*/Goyal, P., Saxena, S. K., “A Dynamic Decision Model for Vertical Handoffs across Heterogeneous Wireless Networks”, World Academy of Science, Engineering And Technology Volume 31, ISSN 1307-6884, Julio 2008, pp. 677-682.
/*ref*/Lott, M., Siebert, M., Bonjour, S., von Hugo, D., Weckerle, M., “Interworking of WLAN and 3G systems”, IEE Proc.-Commun., Vol. 151, No. 5, Octubre 2004, pp. 507-513.
/*ref*/Syuhadal, M. Z. A., Mahamod, I., Firuz, W. A. W. N. S., “Performance Evaluation of Vertical Handoff in Fourth Generation (4G) Networks Model”, 6th National Conference on Telecommunication Technologies e IEEE 2008 2nd Malaysia Conference on Photonics, 26-27 August, 2008, pp. 392-398.
/*ref*/Lee, J. H., Lee, S., K., Song, J. S., “An enhanced TCP for upward vertical handoff in integrated WLAN and cellular networks”, Int. J. Commun. Syst. 2008, pp. 901–921.
/*ref*/Ho, P., Wang, Y., Hou, F., “Shen, S., A Study on Vertical Handoff for Integrated WLAN and WWAN with Micro-Mobility Prediction”, IEEE, 2006.
/*ref*/Hasib, A., Fapojuwo, A.O., “Mobility model for heterogeneous wireless networks and its application in common radio resource management”, IET Commun., 2008, Vol. 2, No. 9, pp. 1186– 1195.
/*ref*/Chang, B., Chen, J., Hsieh C. Liang, Y., “Markov Decision Process-based Adaptive Vertical Handoff with RSS Prediction in Heterogeneous Wireless Networks”, WCNC, IEEE, 2009.
/*ref*/Stevens-Navarro, E., Lin, Y., “An MDP-Based Vertical Handoff Decision Algorithm for Heterogeneous Wireless Networks”, IEEE Transactions On Vehicular Technology, vol. 57, no. 2, Marzo 2008, pp. 1243-1254.
/*ref*/Sepúlveda, L. M., “Desarrollo de un algoritmo para handoff vertical entre redes IEEE802.16 WWAN y UMTS”, Tesis presentada a la Universidad Nacional de Colombia para optar al grado de Maestría en ingeniería de Telecomunicaciones, 2008.
/*ref*/Zeng, W., “Handover Decision Using Fuzzy MADM in Heterogeneous Networks”, In the Proc. 2004 IEEE Wireless Communications and Networking Conference (WCNC 04), vol. 2, Atlanta, Georgia, USA, Marzo 2004, pp. 653-658.
/*ref*/Sur, A., Sicker, D. C., “Multi Layer Rules Based Framework for Vertical Handoff: A novel approach to trigger Vertical Handoff in multihomed devices”, IEEE, 2005.
/*ref*/Lincken, S. J., “Vertical handover policies for common radio resource management”, International Journal of Communication Systems, March 15, 2005, pp. 528-543.
/*ref*/Wu, J., Yang, S., Hwang, B., “A terminal-controlled vertical handover decision scheme in IEEE 802.21-enabled heterogeneous wireless networks”, International Journal of Communication Systems, January 21, 2009, pp. 819-834.
/*ref*/Zhang, Y., Zhuang, W., Saleh, A., “Vertical Handoff between 802.11 and 802.16 Wireless Access Networks”, 2008.
/*ref*/Lee C. W., “A framework of handoffs in wireless overlay networks based on mobile IPv6”, IEEE JSAC, 23(11):2118-2128, November, 2005.
/*ref*/Koodli, R., “Fast Handovers for Mobile IPv6”, draft-ietf-mipship-fmipv6-rfc4068bis-02.txt, Julio 2007.
/*ref*/Makaya, C., Pierre, S., “Efficient Handoff Scheme for Heterogeneous IPv6-based Wireless Networks”, IEEE, 2007.
/*ref*/Estandar IEEE 802.21, 2008.
/*ref*/Liao, W. K., Chen, Y. C., “Supporting vertical handover between universal mobile telecommunications system and wireless LAN for real-time services”, IET Commun., 2008, 2, (1), pp. 75–8.
/*ref*/Yang, M., Cheon, K., Park, A., Kim, S., “3GEWLAN Vertical Handover Experience using Fast Mobile IPv6”, IEEE, 2008.
/*ref*/ETSI TR 101 957 v1.1.1 (2001-08): ‘Broadband Radio Access Networks (BRAN), HIPERLAN TYPE 2, Requirements and Architectures for Interworking between HIPERLAN/2 and 3rd Generation Cellular Systems’
/*ref*/Shalini Punithavathani, D., Sankaranarayanan, K., “IPv4/IPv6 Transition Mechanisms”, European Journal of Scientific Research, ISSN 1450- 216X Vol.34 No.1 (2009), pp.110-124.
/*ref*/Hoque, K. Md. R., Haque, R. R., Hossain, Md. A., Farazi, M.S.F., Hossain, G., “Modeling and Performance of TCP in a MCCDMA System for 4G Communications”, IEEE, 2007.
/*ref*/Chan, A. C., Tsang, D. H., Gupta, S., “Impacts of Handoff on TCP Performance in Mobile Wireless Computing”, Conferencia Internacional IEEE sobre Comunicaciones Inalámbricas Personales realizada en Mumbai, India, entre el 17 y 19 de Diciembre de 1997, pp. 184-188.
/*ref*/Montavont, N., Noel, T., “Handover Management for Mobile Nodes in IPv6 Networks”, IEEE, 2002.
/*ref*/Casetti, C., Gerla, M., Mascolo, S., Sanadidi, M. Y., Wang, R., “TCP Westwood: end-to-end congestion control for wired/wireless networks. Wireless Networks”, 8(5):467–479, 2002.
/*ref*/Goff, T., Moronski, J., Phatak, D. S., Gupta, V., “Freeze-TCP: A true end-to-end TCP enhancement mechanism for mobile environments”, In Proc. IEEE INFOCOM, 2000.
/*ref*/Ludwig R., Katz, R. H., “The Eifel algorithm: Making TCP robust against spurious retransmissions”, ACM SIGCOMM Comput. Commun. Rev., 30(1):30–36, 2000.
/*ref*/Chouly, A., Brajal, A., Jourdan, S., “Orthogonal Multicarrier Techniques Applied to Direct Sequence Spread Spectrum CDMA Systems”,’ Proc. of IEEE GLOBECOM’93, Houston, TX, Noviembre 1993. pp. 1723–1728.
/*ref*/Chan, M. C., Ramjee, R., “Improving TCP/IP performance over third generation wireless networks”, In Proc. IEEE INFOCOM, Hong Kong, Mar. 2004.
/*ref*/Chan, M. C., Ramjee, R., “TCP/IP performance over 3G wireless links with rate and delay variation”, In Proc. ACM MOBICOM, Atlanta, USA, Sep. 2002.
/*ref*/Wang, N., Wang, Y., Chang, S., “A Fast Adaptive Congestion Control Scheme for Improving TCP Performance during Soft Vertical Handoff”, IEEE, 2007
/*ref*/Chen, L., Yang, G., Sun, T., Sanadidi, M. Y., Gerla, G., “Enhancing QoS Support for Vertical Handoffs Using Implicit/Explicit Handoff Notifications”, 2nd Int’l Conf. on Quality of Service in Heterogeneous Wired/Wireless Networks (QShine’05), IEEE,2005.
dc.relation.citationissue.spa.fl_str_mv ITECKNE; Vol. 7, núm. 2 (2010); 191-198
2339-3483
1692-1798
dc.rights.spa.fl_str_mv Copyright (c) 2018 ITECKNE
dc.rights.coar.fl_str_mv http://purl.org/coar/access_right/c_abf2
rights_invalid_str_mv Copyright (c) 2018 ITECKNE
http://purl.org/coar/access_right/c_abf2
dc.format.mimetype.spa.fl_str_mv application/pdf
dc.publisher.spa.fl_str_mv Universidad Santo Tomás. Seccional Bucaramanga
institution Universidad Santo Tomás
repository.name.fl_str_mv Repositorio Universidad Santo Tomás
repository.mail.fl_str_mv noreply@usta.edu.co
_version_ 1800786432634126336
spelling González Páez, Francisco Javier; M. Sc. (c). Universidad Nacional de Colombia BogotáOrtiz Triviño, Jorge Eduardo; Ph.D. (c). Universidad Nacional de Colombia Bogotá2010-12-31http://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/28710.15332/iteckne.v7i2.287El artículo describe las redes 4G y muestra un mapa general de su desarrollo tecnológico. Adicionalmente se muestran dos temas que son clave en el desarrollo de este tipo de redes. Estos temas son el Handover Vertical y la convergencia hacia IP. La revisión expuesta muestra el estado del arte y los antecedentes de estos temas. Con base en esto se genera un mapa conceptual en el que se considera la variedad de tecnologías que convergen en el esquema 4G.application/pdfspaUniversidad Santo Tomás. Seccional Bucaramangahttp://revistas.ustabuca.edu.co/index.php/ITECKNE/article/view/287/281/*ref*/Mishra, A. R., “Advanced Cellular Networks planning and Optimisation”, John Wiley & Sons Ltd (ed), 2007./*ref*/Sun, J., Sauvola, J., Howie, D., “Features in Future: 4G Visions from a Technical Perspective”, IEEE 2001./*ref*/Janevski, T., “5G Mobile Phone Concept”, IEEE, 2009./*ref*/Li, X., Gani, A., Salleh, R., Zakaria, O., “The Future of Mobile Wireless Communication Networks”, International Conference on Communication Software and Networks, 2009/*ref*/Eastwood, L., Migaldi, S., Xie, Q., Gupta, V., “Mobility Using IEEE 802.21 In A Heterogeneous IEEE 802.16/802.11-Based, IMT-Advanced (4g) Network”, IEEE Wireless Communications, Abril de 2008, pp. 26-34./*ref*/Jamil, M., Shaikh, S. P., Shahzad, M., Awais, Q., “4G: The Future Mobile Technology”, IEEE./*ref*/Rec. ITU-R M1645, “Framework and overall objectives of the future development of IMT-2000 and systems beyond IMT-2000”, 2003./*ref*/Govil, J., Govil, J., “4G: Functionalities Development and an Analysis of Mobile Wireless Grid”, First International Conference on Emerging Trends in Engineering and Technology, 2008, pp. 270-275./*ref*/Khan, A. H., Qadeer, M. A., Ansari, J. A., Waheed, S., “4G as a Next Generation Wireless Network”, International Conference on Future Computer and Communication, IEEE, 2009 pp. 334-338./*ref*/Rouffet, D., Sehier, P., “Convergence and Competition on the Way towards 4G”, IEEE, 2007./*ref*/Wang, Y., Qiao, X., Li, X., Meng, L., “The ServiceContext Information Processing Mechanism in B3G/4G”, International Conference on Computer Science and Software Engineering, 2008, pp.1174-1177./*ref*/Frattasi, S., Fathi, H., Gimmler, A., Fitzek, F., Prasad, R., “Designing Socially Robust 4G Wireless Services”, IEEE Technology and Society Magazine | summer 2006, pp. 51-64./*ref*/Choi, J, “4G Solution for Convergence?”, IEEE, 2006./*ref*/Murota, K. NTT DoCoMo, “Mobile communications trends in Japan and NTT DoCoMo’s activities towards 21st century”, ACTS Mobile Summit99, Sorrento, Italy, June 1999./*ref*/Park, Y., Park, T., “A Survey of Security Threats on 4G Networks”, Workshop on Security and Privacy in 4G Networks, IEEE, 2007./*ref*/Govil, J., Govil, J., “An Empirical Feasibility Study of 4G’s Key Technologies”, IEEE, 2008, pp. 267- 270./*ref*/Xiuhua, Q., Chuanhui, Q., Li, W., “A Study of Some Key Technologies of 4G System”, IEEE 2008./*ref*/Sgora, A., Vergados, D. D., “Handoff Prioritization and Decision Schemes in Wireless Cellular Networks: a Survey”, IEEE Communications Surveys & Tutorials, vol. 11, no. 4, fourth quarter 2009, pp.57-77./*ref*/Goyal, P., Saxena, S. K., “A Dynamic Decision Model for Vertical Handoffs across Heterogeneous Wireless Networks”, World Academy of Science, Engineering And Technology Volume 31, ISSN 1307-6884, Julio 2008, pp. 677-682./*ref*/Lott, M., Siebert, M., Bonjour, S., von Hugo, D., Weckerle, M., “Interworking of WLAN and 3G systems”, IEE Proc.-Commun., Vol. 151, No. 5, Octubre 2004, pp. 507-513./*ref*/Syuhadal, M. Z. A., Mahamod, I., Firuz, W. A. W. N. S., “Performance Evaluation of Vertical Handoff in Fourth Generation (4G) Networks Model”, 6th National Conference on Telecommunication Technologies e IEEE 2008 2nd Malaysia Conference on Photonics, 26-27 August, 2008, pp. 392-398./*ref*/Lee, J. H., Lee, S., K., Song, J. S., “An enhanced TCP for upward vertical handoff in integrated WLAN and cellular networks”, Int. J. Commun. Syst. 2008, pp. 901–921./*ref*/Ho, P., Wang, Y., Hou, F., “Shen, S., A Study on Vertical Handoff for Integrated WLAN and WWAN with Micro-Mobility Prediction”, IEEE, 2006./*ref*/Hasib, A., Fapojuwo, A.O., “Mobility model for heterogeneous wireless networks and its application in common radio resource management”, IET Commun., 2008, Vol. 2, No. 9, pp. 1186– 1195./*ref*/Chang, B., Chen, J., Hsieh C. Liang, Y., “Markov Decision Process-based Adaptive Vertical Handoff with RSS Prediction in Heterogeneous Wireless Networks”, WCNC, IEEE, 2009./*ref*/Stevens-Navarro, E., Lin, Y., “An MDP-Based Vertical Handoff Decision Algorithm for Heterogeneous Wireless Networks”, IEEE Transactions On Vehicular Technology, vol. 57, no. 2, Marzo 2008, pp. 1243-1254./*ref*/Sepúlveda, L. M., “Desarrollo de un algoritmo para handoff vertical entre redes IEEE802.16 WWAN y UMTS”, Tesis presentada a la Universidad Nacional de Colombia para optar al grado de Maestría en ingeniería de Telecomunicaciones, 2008./*ref*/Zeng, W., “Handover Decision Using Fuzzy MADM in Heterogeneous Networks”, In the Proc. 2004 IEEE Wireless Communications and Networking Conference (WCNC 04), vol. 2, Atlanta, Georgia, USA, Marzo 2004, pp. 653-658./*ref*/Sur, A., Sicker, D. C., “Multi Layer Rules Based Framework for Vertical Handoff: A novel approach to trigger Vertical Handoff in multihomed devices”, IEEE, 2005./*ref*/Lincken, S. J., “Vertical handover policies for common radio resource management”, International Journal of Communication Systems, March 15, 2005, pp. 528-543./*ref*/Wu, J., Yang, S., Hwang, B., “A terminal-controlled vertical handover decision scheme in IEEE 802.21-enabled heterogeneous wireless networks”, International Journal of Communication Systems, January 21, 2009, pp. 819-834./*ref*/Zhang, Y., Zhuang, W., Saleh, A., “Vertical Handoff between 802.11 and 802.16 Wireless Access Networks”, 2008./*ref*/Lee C. W., “A framework of handoffs in wireless overlay networks based on mobile IPv6”, IEEE JSAC, 23(11):2118-2128, November, 2005./*ref*/Koodli, R., “Fast Handovers for Mobile IPv6”, draft-ietf-mipship-fmipv6-rfc4068bis-02.txt, Julio 2007./*ref*/Makaya, C., Pierre, S., “Efficient Handoff Scheme for Heterogeneous IPv6-based Wireless Networks”, IEEE, 2007./*ref*/Estandar IEEE 802.21, 2008./*ref*/Liao, W. K., Chen, Y. C., “Supporting vertical handover between universal mobile telecommunications system and wireless LAN for real-time services”, IET Commun., 2008, 2, (1), pp. 75–8./*ref*/Yang, M., Cheon, K., Park, A., Kim, S., “3GEWLAN Vertical Handover Experience using Fast Mobile IPv6”, IEEE, 2008./*ref*/ETSI TR 101 957 v1.1.1 (2001-08): ‘Broadband Radio Access Networks (BRAN), HIPERLAN TYPE 2, Requirements and Architectures for Interworking between HIPERLAN/2 and 3rd Generation Cellular Systems’/*ref*/Shalini Punithavathani, D., Sankaranarayanan, K., “IPv4/IPv6 Transition Mechanisms”, European Journal of Scientific Research, ISSN 1450- 216X Vol.34 No.1 (2009), pp.110-124./*ref*/Hoque, K. Md. R., Haque, R. R., Hossain, Md. A., Farazi, M.S.F., Hossain, G., “Modeling and Performance of TCP in a MCCDMA System for 4G Communications”, IEEE, 2007./*ref*/Chan, A. C., Tsang, D. H., Gupta, S., “Impacts of Handoff on TCP Performance in Mobile Wireless Computing”, Conferencia Internacional IEEE sobre Comunicaciones Inalámbricas Personales realizada en Mumbai, India, entre el 17 y 19 de Diciembre de 1997, pp. 184-188./*ref*/Montavont, N., Noel, T., “Handover Management for Mobile Nodes in IPv6 Networks”, IEEE, 2002./*ref*/Casetti, C., Gerla, M., Mascolo, S., Sanadidi, M. Y., Wang, R., “TCP Westwood: end-to-end congestion control for wired/wireless networks. Wireless Networks”, 8(5):467–479, 2002./*ref*/Goff, T., Moronski, J., Phatak, D. S., Gupta, V., “Freeze-TCP: A true end-to-end TCP enhancement mechanism for mobile environments”, In Proc. IEEE INFOCOM, 2000./*ref*/Ludwig R., Katz, R. H., “The Eifel algorithm: Making TCP robust against spurious retransmissions”, ACM SIGCOMM Comput. Commun. Rev., 30(1):30–36, 2000./*ref*/Chouly, A., Brajal, A., Jourdan, S., “Orthogonal Multicarrier Techniques Applied to Direct Sequence Spread Spectrum CDMA Systems”,’ Proc. of IEEE GLOBECOM’93, Houston, TX, Noviembre 1993. pp. 1723–1728./*ref*/Chan, M. C., Ramjee, R., “Improving TCP/IP performance over third generation wireless networks”, In Proc. IEEE INFOCOM, Hong Kong, Mar. 2004./*ref*/Chan, M. C., Ramjee, R., “TCP/IP performance over 3G wireless links with rate and delay variation”, In Proc. ACM MOBICOM, Atlanta, USA, Sep. 2002./*ref*/Wang, N., Wang, Y., Chang, S., “A Fast Adaptive Congestion Control Scheme for Improving TCP Performance during Soft Vertical Handoff”, IEEE, 2007/*ref*/Chen, L., Yang, G., Sun, T., Sanadidi, M. Y., Gerla, G., “Enhancing QoS Support for Vertical Handoffs Using Implicit/Explicit Handoff Notifications”, 2nd Int’l Conf. on Quality of Service in Heterogeneous Wired/Wireless Networks (QShine’05), IEEE,2005.ITECKNE; Vol. 7, núm. 2 (2010); 191-1982339-34831692-1798Copyright (c) 2018 ITECKNEhttp://purl.org/coar/access_right/c_abf2Handover Vertical y convergencia hacia IP como factores clave del desarrollo de las redes 4Ginfo:eu-repo/semantics/articlehttp://purl.org/coar/version/c_970fb48d4fbd8a85http://purl.org/coar/resource_type/c_2df8fbb1Redes 4G, handoff vertical, Handover Vertical, IP Móvil.11634/8303oai:repository.usta.edu.co:11634/83032023-07-14 16:37:20.051metadata only accessRepositorio Universidad Santo Tomásnoreply@usta.edu.co