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...
- 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
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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 |
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http://purl.org/coar/access_right/c_abf2 |
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Copyright (c) 2018 ITECKNE http://purl.org/coar/access_right/c_abf2 |
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Universidad Santo Tomás. Seccional Bucaramanga |
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Universidad Santo Tomás |
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Repositorio Universidad Santo Tomás |
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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 |