Academic literature on the topic 'MPLS Traffic Engineering'

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Journal articles on the topic "MPLS Traffic Engineering"

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Swallow, G. "MPLS advantages for traffic engineering." IEEE Communications Magazine 37, no. 12 (1999): 54–57. http://dx.doi.org/10.1109/35.809385.

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Arshad, M. J., H. Ahmad, M. Samiullah, and A. Basit. "ISP-BASED MPLS VPN: OVERVIEW, TRAFFIC ENGINEERING SERVICES AND SOLUTIONS." Nucleus 51, no. 1 (2014): 117–24. https://doi.org/10.71330/thenucleus.2014.728.

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In recent years MPLS-Multiprotocol Label Switching enabled VPNs-Virtual Private Network have gained popularity as alternative to private WANs. MPLS-VPNs are more reliable, secure, scalable and cost effective than other candidate solutions. Traffic engineering (TE) is supported over MPLS, which allows network organizations to associate a LSP-Label Switched Path with the physical path they select. In this article, we present an implementation of traffic engineering over an Internet Service Prov ider (ISP)- based MPLS-VPN. We will start by defining the features, modes and preconditions for traffi
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Khan, Mohsin. "MPLS Traffic Engineering in ISP Network." International Journal of Computer Applications 59, no. 4 (2012): 23–32. http://dx.doi.org/10.5120/9536-3972.

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Zhou, Jin He, and Guo Min Xia. "Experimental Research on Diffserv-Aware MPLS Traffic Engineering." Applied Mechanics and Materials 263-266 (December 2012): 1858–63. http://dx.doi.org/10.4028/www.scientific.net/amm.263-266.1858.

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Diffserv-aware and Traffic Engineering combine the advantages of MPLS, Traffic Engineering (TE) and Differentiated Services (Diffserv, DS) to provide high performance and Quality of Service(QoS) in networks. We have designed three scenarios on Juniper Networks platforms to analyze the packet loss rate and delay for video, voice and data. The results show that MPLS DS-TE can improve the QoS for differentiated service effectively. The research has practical value for the development of DS-TE based on MPLS.
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Hussein, Hatim S. "Multipath Bandwidth Capacity Allocation and MPLS Internet Traffic Engineering." Journal of Advances in Computer Networks 3, no. 3 (2015): 239–42. http://dx.doi.org/10.7763/jacn.2015.v3.174.

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Toguyéni, Armand, and Ouajd Korbaa. "DiffServ Aware MPLS Traffic Engineering for ISP Networks: State of the Art and New Trends." Journal of Telecommunications and Information Technology, no. 1 (June 26, 2023): 5–13. http://dx.doi.org/10.26636/jtit.2009.1.907.

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In the recent ten years, with the development of new applications through Internet such as multimedia or networked control applications, users need more and more quality of service (QoS). However, the requested QoS is not the same depending on the application. Most of the new models to manage internet traffic are based on specific QoS criteria which should be optimized. This paper presents main multiprotocol label switching (MPLS) approaches such as MPLS adaptive traffic engineering (MATE), load distribution in MPLS (LDM) and load balancing over widest disjoints paths (LBWDP) that are new mode
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Xipeng Xiao, A. Hannan, B. Bailey, and L. M. Ni. "Traffic engineering with MPLS in the Internet." IEEE Network 14, no. 2 (2000): 28–33. http://dx.doi.org/10.1109/65.826369.

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Aukia, P., M. Kodialam, P. V. N. Koppol, T. V. Lakshman, H. Sarin, and B. Suter. "RATES: a server for MPLS traffic engineering." IEEE Network 14, no. 2 (2000): 34–41. http://dx.doi.org/10.1109/65.826370.

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Awduche, D. O. "MPLS and traffic engineering in IP networks." IEEE Communications Magazine 37, no. 12 (1999): 42–47. http://dx.doi.org/10.1109/35.809383.

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Stepanova, Irina V., and Knaj Nouma. "Analysis of the capabilities of MPLS technology for managing traffic in communication networks." T-Comm 16, no. 5 (2022): 63–68. http://dx.doi.org/10.36724/2072-8735-2022-16-5-63-68.

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To support a growing number of users and multiple classes of applications with different performance requirements and characteristics, service providers have been forced to adapt to new technologies. To improve traffic management and Internet service quality, the Internet Engineering Task Force (IETF) proposed MPLS technology to support several classes of latency-critical applications. Traditional IP networks use a hop-by-pop principle for transmitting traffic. This leads to aggregation of heterogeneous traffic on links in different parts of the network, which causes considerable possible grow
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Dissertations / Theses on the topic "MPLS Traffic Engineering"

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Rojanarowan, Jerapong. "MPLS-Based Best-Effort Traffic Engineering." Diss., Georgia Institute of Technology, 2005. http://hdl.handle.net/1853/7496.

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MPLS-Based Best-Effort Traffic Engineering Jerapong Rojanarowan 120 Pages Directed by Dr. Henry L. Owen The objective of this research is to develop a multipath traffic engineering framework for best-effort traffic in Multiprotocol Label Switching (MPLS) networks so as to deliver more equal shares of bandwidth to best-effort users as compared to the traditional shortest-path algorithm. The proposed framework is static and the input to the traffic engineering algorithm is restricted to network topology. Performance evaluation of this framework is conducted by simulation using ns-2 network
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Ikram, Imran. "Traffic Engineering with MPLS and QOS." Thesis, Blekinge Tekniska Högskola, Avdelningen för telekommunikationssystem, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-1217.

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In the modern era there exist applications that require very high resources and generate a tremendous amount of traffic so they require considerable amount of bandwidth and QOS to operate and perform correctly. MPLS is a new and a fast technology that offers much remuneration both in terms of providing trouble-free and efficient security together with the high speed of switching. MPLS not only guarantees quality of service of IP networks but in addition to provides scope for traffic engineering it offers many enhanced features of IP networks as it does not replace IP routing, but works along w
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Botha, Marlene. "Online traffic engineering for MPLS networks." Thesis, Stellenbosch : Stellenbosch University, 2004. http://hdl.handle.net/10019.1/50049.

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Thesis (MSc) -- Stellenbosch University, 2004.<br>ENGLISH ABSTRACT: The Internet is fast evolving into a commercial platform that carries a mixture of narrow- and broadband applications such as voice, video, and data. Users expect a certain level of guaranteed service from their service providers and consequently the need exists for efficient Internet traffic engineering to enable better Quality of Service (QoS) capabilities. Multi-protocol Label Switching (MPLS) is a label switching protocol that has emerged as an enabling technology to achieve efficient traffic engineering for QoS mana
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Phuvoravan, Surapich. "Fast timescale traffic engineering in MPLS networks." College Park, Md. : University of Maryland, 2004. http://hdl.handle.net/1903/229.

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Thesis (Ph. D.) -- University of Maryland, College Park, 2004.<br>Thesis research directed by: Electrical Engineering. Title from t.p. of PDF. Includes bibliographical references. Published by UMI Dissertation Services, Ann Arbor, Mich. Also available in paper.
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Guedrez, Rabah. "Enabling traffic engineering over segment routing." Thesis, Ecole nationale supérieure Mines-Télécom Atlantique Bretagne Pays de la Loire, 2018. http://www.theses.fr/2018IMTA0116/document.

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La majorité des grands opérateurs utilise la technologie MPLS pour gérer leur réseau via des protocoles de signalisation et de distributions de labels. Or, ces protocoles sont complexes à déployer, à maintenir et la résolution des pannes est souvent très difficile. L'IETF a initié la standardisation d'une architecture de routage par segments (Segment Routing) s'appuyant sur un plan de contrôle simple, léger, facile à gérer et instanciée sur MPLS ou IPv6. Cette architecture repose sur le concept de routage à la source, dans lequel l'en-tête des paquets transporte les indications du chemin à sui
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Butenweg, Stefan. "Reaktive verteilte Verkehrslenkungsverfahren für MPLS-Weitverkehrsnetze." [S.l. : s.n.], 2004. http://deposit.ddb.de/cgi-bin/dokserv?idn=973383437.

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Wanichworanant, Noppadol. "A traffic engineering approach employing genetic algorithms over MPLS networks." online access from Digital Dissertation Consortium access full-text, 2003. http://libweb.cityu.edu.hk/cgi-bin/er/db/ddcdiss.pl?3134009.

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Radhakrishna, Deekonda, and Jannu Keerthipramukh. "OPNET simulation of voice over MPLS With Considering Traffic Engineering." Thesis, Blekinge Tekniska Högskola, Sektionen för datavetenskap och kommunikation, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:bth-3434.

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Multiprotocol Label Switching (MPLS) is an emerging technology which ensures the reliable delivery of the Internet services with high transmission speed and lower delays. The key feature of MPLS is its Traffic Engineering (TE), which is used for effectively managing the networks for efficient utilization of network resources. Due to lower network delay, efficient forwarding mechanism, scalability and predictable performance of the services provided by MPLS technology makes it more suitable for implementing real-time applications such as voice and video. In this thesis performance of Voice over
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Anjali, Tricha. "DiffServ/MPLS Network Design and Management." Diss., Georgia Institute of Technology, 2004. http://hdl.handle.net/1853/5191.

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The MultiProtocol Label Switching (MPLS) framework is used in many networks to provide efficient load balancing which distributes the traffic for efficient Quality of Service (QoS) provisioning in the network. If the MPLS framework is combined with Differentiated Services (DiffServ) architecture, together they can provide aggregate-based service differentiation and QoS. The combined use of DiffServ and MPLS in a network is called DiffServ-aware Traffic Engineering (DS-TE). Such DiffServ-based MPLS networks demand development of efficient methods for QoS provisioning. In this thesis, an automat
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Barabas, Toni. "A Traffic Engineering Approach to Differentiated Multicast Services over MPLS Networks." Thesis, Université d'Ottawa / University of Ottawa, 2012. http://hdl.handle.net/10393/20739.

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Currently, a viable solution to provide multicast provision over a multiprotocol label switch with traffic engineering (MPLS-TE) domain is unavailable because of the missing link able to couple multicast traffic distribution with an MPLS-TE enabled network. This is due to the limited or less research investigation that was done in this area. Most of the investigation methods tackle the problem individually such as deploying internet protocol (IP) multicast in a plain network or MPLS domain but without considering a combination of both technologies that is aware of differentiated services requi
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Books on the topic "MPLS Traffic Engineering"

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Ajay, Simha, ed. Traffic engineering with MPLS. Cisco, 2002.

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Minei, Ina. MPLS-Enabled Applications. John Wiley & Sons, Ltd., 2006.

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Minei, Ina. MPLS-Enabled Applications. John Wiley & Sons, Ltd., 2008.

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Kohei, Shiomoto, and Oki Eiji 1969-, eds. GMPLS technologies: Broadband backbone networks and systems. Taylor & Francis, 2005.

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Osborne, Eric, and Ajay Simha. Traffic Engineering with MPLS. Pearson Education, Limited, 2002.

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Osborne, Eric, and Ajay Simha. Traffic Engineering with MPLS. Brand: Cisco Press, 2002.

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Black, Uyless N. Traffic Engineering in MPLS Networks. Pearson Education, Limited, 2020.

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Rizvi, Syed S. H., Naoaki Yamanaka, and Kohei Shiomoto. Gmpls Technologies: Broadband Backbone Networks and Systems. Optical Engineering. Taylor & Francis Group, 2006.

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Oki, Eiji, Naoaki Yamanaka, and Kohei Shiomoto. GMPLS Technologies: Broadband Backbone Networks and Systems (Optical Engineering). CRC, 2005.

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Oki, Eiji, Naoaki Yamanaka, and Kohei Shiomoto. GMPLS Technologies: Broadband Backbone Networks and Systems. Taylor & Francis Group, 2018.

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Book chapters on the topic "MPLS Traffic Engineering"

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Shirazipour, Meral, Samuel Pierre, and Yves Lemieux. "Inter-Domain Traffic Engineering Using Mpls." In Intelligence in Communication Systems. Springer US, 2005. http://dx.doi.org/10.1007/0-387-32015-6_5.

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Walkowiak, Krzysztof. "Survivable Online Routing for MPLS Traffic Engineering." In Quality of Service in the Emerging Networking Panorama. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-540-30193-6_29.

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Wang, Jianping, Stephen Patek, Haiyong Wang, and Jörg Liebeherr. "Traffic Engineering with AIMD in MPLS Networks." In Protocols for High Speed Networks. Springer Berlin Heidelberg, 2002. http://dx.doi.org/10.1007/3-540-47828-0_13.

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Athira, M., and R. G. Sangeetha. "Interdomain Traffic Engineering with BGP and MPLS VPN." In Lecture Notes in Electrical Engineering. Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-7293-2_12.

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Banerjee, Gargi, and Deepinder Sidhu. "Path Computation for Traffic Engineering in MPLS Networks." In Networking — ICN 2001. Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/3-540-47734-9_30.

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Szeto, W., R. Boutaba, and Y. Iraqi. "Dynamic Online Routing Algorithm for MPLS Traffic Engineering." In NETWORKING 2002: Networking Technologies, Services, and Protocols; Performance of Computer and Communication Networks; Mobile and Wireless Communications. Springer Berlin Heidelberg, 2002. http://dx.doi.org/10.1007/3-540-47906-6_76.

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Siradjev, Djakhongir, Ivan Gurin, and Young-Tak Kim. "Scalable DiffServ-over-MPLS Traffic Engineering with Per-flow Traffic Policing." In Management of Convergence Networks and Services. Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11876601_53.

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Iovanna, Paola, Maurizio Naldi, Roberto Sabella, and Cristiano Zema. "Multi-timescale Economics-Driven Traffic Management in MPLS Networks." In Network Performance Engineering. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-02742-0_6.

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Holness, Felicia, and Chris Phillips. "Congestion Control Mechanism for Traffic Engineering within MPLS Networks." In Next Generation Networks. Networks and Services for the Information Society. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/3-540-40019-2_22.

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Meng, Zhaowei, Jinshu Su, and Vittorio Manetti. "A New Precomputation Scheme for MPLS Traffic Engineering Routing." In Distributed Computing and Networking. Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11947950_44.

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Conference papers on the topic "MPLS Traffic Engineering"

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Nedhunuri, Manikanta Reddy, Harsha Vardhan Bonala, Hemanth Kumar Duvvuru, Sita Devi Bharatula, and Sasikumara G. "Implementing Traffic Engineering in MPLS Networks Using Resource Reservation Protocol." In 2024 International Conference on Smart Electronics and Communication Systems (ISENSE). IEEE, 2024. https://doi.org/10.1109/isense63713.2024.10872144.

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Lai, Wai Sum. "Traffic engineering for MPLS." In ITCom 2002: The Convergence of Information Technologies and Communications, edited by Robert D. van der Mei and Frank Huebner. SPIE, 2002. http://dx.doi.org/10.1117/12.473396.

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Chu, Hon-Wai, Chi-Chung Cheung, Kin-Hon Ho, and Ning Wang. "Green MPLS Traffic Engineering." In 2011 Australasian Telecommunication Networks and Applications Conference (ATNAC 2011). IEEE, 2011. http://dx.doi.org/10.1109/atnac.2011.6096644.

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Li, Xiaoping, Xiaoxing Lv, Luyang Liu, and Wenbo Mei. "DiffServ-aware MPLS traffic engineering." In 2010 3rd International Conference on Information Sciences and Interaction Sciences (ICIS). IEEE, 2010. http://dx.doi.org/10.1109/icicis.2010.5534700.

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Durresi, Arjan, Mimoza Durresi, and Fatos Xhafa. "MPLS Traffic Engineering in Satellite Networks." In First International Conference on Complex, Intelligent and Software Intensive Systems (CISIS'07). IEEE, 2007. http://dx.doi.org/10.1109/cisis.2007.39.

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Cherkaoui, Omar, Brenda MacGibbon, Michel Blais, and Ahmed Serhrouchni. "MPLS/VPN traffic engineering: SLA metrics." In ITCom 2001: International Symposium on the Convergence of IT and Communications, edited by Anura P. Jayasumana and V. Chandrasekar. SPIE, 2001. http://dx.doi.org/10.1117/12.434421.

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Porwal, Mahesh Kumar, Anjulata Yadav, and S. V. Charhate. "Traffic Analysis of MPLS and Non MPLS Network including MPLS Signaling Protocols and Traffic Distribution in OSPF and MPLS." In 2008 First International Conference on Emerging Trends in Engineering and Technology. IEEE, 2008. http://dx.doi.org/10.1109/icetet.2008.58.

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Taruk, Medi, Edy Budiman, Masna Wati, and Haviluddin. "OSPF Wireless Mesh with MPLS Traffic Engineering." In 2019 International Conference on Electrical, Electronics and Information Engineering (ICEEIE). IEEE, 2019. http://dx.doi.org/10.1109/iceeie47180.2019.8981478.

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Pathak, Abhinav, Ming Zhang, Y. Charlie Hu, Ratul Mahajan, and Dave Maltz. "Latency inflation with MPLS-based traffic engineering." In the 2011 ACM SIGCOMM conference. ACM Press, 2011. http://dx.doi.org/10.1145/2068816.2068859.

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Alam, M., P. Bethoju, and M. Song. "Study of traffic engineering capabilities of MPLS networks." In International Conference on Information Technology: Coding and Computing (ITCC'05) - Volume II. IEEE, 2005. http://dx.doi.org/10.1109/itcc.2005.264.

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Reports on the topic "MPLS Traffic Engineering"

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Meyer, M., ed. MPLS Traffic Engineering Soft Preemption. RFC Editor, 2010. http://dx.doi.org/10.17487/rfc5712.

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Osborne, E. Extended Administrative Groups in MPLS Traffic Engineering (MPLS-TE). RFC Editor, 2014. http://dx.doi.org/10.17487/rfc7308.

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Awduche, D., J. Malcolm, J. Agogbua, M. O'Dell, and J. McManus. Requirements for Traffic Engineering Over MPLS. RFC Editor, 1999. http://dx.doi.org/10.17487/rfc2702.

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Ali, Z., A. Zamfir, and J. Newton. Graceful Shutdown in MPLS and Generalized MPLS Traffic Engineering Networks. RFC Editor, 2010. http://dx.doi.org/10.17487/rfc5817.

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Boyle, J., V. Gill, A. Hannan, et al. Applicability Statement for Traffic Engineering with MPLS. RFC Editor, 2002. http://dx.doi.org/10.17487/rfc3346.

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Le, J. L., J. P. Vasseur, and J. Boyle, eds. Requirements for Inter-Area MPLS Traffic Engineering. RFC Editor, 2005. http://dx.doi.org/10.17487/rfc4105.

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Kompella, K., Y. Rekhter, and L. Berger. Link Bundling in MPLS Traffic Engineering (TE). RFC Editor, 2005. http://dx.doi.org/10.17487/rfc4201.

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Mahalingam, V., K. Sampath, S. Aldrin, and T. Nadeau. MPLS Transport Profile (MPLS-TP) Traffic Engineering (TE) Management Information Base (MIB). RFC Editor, 2015. http://dx.doi.org/10.17487/rfc7453.

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Ayyangar, A. Inter-Domain MPLS and GMPLS Traffic Engineering -- Resource Reservation Protocol-Traffic Engineering (RSVP-TE) Extensions. Edited by A. Farrel. RFC Editor, 2008. http://dx.doi.org/10.17487/rfc5151.

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Zhang, R., and J. P. Vasseur, eds. MPLS Inter-Autonomous System (AS) Traffic Engineering (TE) Requirements. RFC Editor, 2005. http://dx.doi.org/10.17487/rfc4216.

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