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Статті в журналах з теми "MPLS-TP"

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Biradar, Prabhavati, and Purushottama T L. "DESIGN OF TRAFFIC ENGINEERED MULTI-PROTOCOL LABEL SWITCHING-TRANSPORT PROFILE (MPLS-TP) FOR THE ENHANCEMENT OF QUALITY OF SERVICE." International Journal of Research -GRANTHAALAYAH 5, no. 4RACEEE (April 30, 2017): 58–67. http://dx.doi.org/10.29121/granthaalayah.v5.i4raceee.2017.3323.

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Анотація:
Multiprotocol Label Switching (MPLS) is a switching technology. MPLS-TP is a progressive version of MPLS in the field of packet switched data network. MPLS-TP is a high-end technology which implements network methodologies in a transport layer. For managing virtual private network(VPN) services, MPLS is of developing enthusiasm to the service providers (SPs) and furthermore to VPN customers. MPLS-enabled routers allot a few labels to the packets, and in view of these allocated labels it produces sending decisions. The prime expectation after the MPLS technology is to eliminate the need of OSI model data link layered (layer-2) technology i.e. frame relay, Ethernet, asynchronous transfer mode (ATM). This paper gives data about the components of Multi-Protocol Label Switching (MPLS), correlation of MPLS with traditional Routing and Packet Switching, MPLS label format and MPLS operation.
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García, Lois Albert Espinel, Luis Fernando Martínez Pedraza, and Octavio Salcedo Parra. "ESTADO DEL ARTE MPLS-TP CONMUTACIÓN MULTIPROTOCOLO MEDIANTE ETIQUETAS - PERFIL DE TRANSPORTE." Redes de Ingeniería 4 (September 26, 2013): 49. http://dx.doi.org/10.14483/2248762x.6367.

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La creciente demanda en servicios de telecomunicaciones genera la necesidad de desarrollar diferentes modelos de red. En el año 2008, la UIT-T une sinergias con la IETF para desarrollar un protocolo llamado MPLS-TP cuya arquitectura representa el resultado la agregación de la eficiencia en el transporte de paquetes de IP/MPLS con la fiabilidad en el transporte de SONET/SDH. Este trabajo presenta un estado del arte de MPLS-TP donde se plasman los estudios actuales y avances relacionados con ésta tecnología: modelos de arquitectura óptica, modelos de protección en OAM. Además se presenta la estructura, funcionamiento y características que hacen de MPLS-TP una opción para las redes de transporte de siguiente generación. El material de apoyo para el desarrollo de este artículo ha sido obtenido de la base documental de recursos electrónicos con contenido científico de apoyo a la investigación de la Universidad Distrital Francisco José de Caldas.
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Suhaimy, N., W. S. H. M. W. Ahmad, N. A M. Radzi, F. Abdullah, M. Z. Jamaludin, and M. N. Zakaria. "Analysis of MPLS-TP Network for Different Applications." International Journal of Engineering & Technology 7, no. 4.35 (November 30, 2018): 892. http://dx.doi.org/10.14419/ijet.v7i4.35.26277.

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Анотація:
In the perspective of Multiprotocol Label Switching – Transport Profile (MPLS-TP) network, a reliable framework architecture or mechanism needs to be ascertained by comparing the results obtained through implementation of previously proposed scheme towards the network. This is important in order to implement an efficient system for different types of applications or services. Various results are reviewed and analyzed from the related works followed by detail discussions based on their proposed objectives. The analyses shown that most applications of MPLS-TP have been utilized for protection, followed by Operations, Administration and Maintenance (OAM), fairness and congestion control. This is due to the mission-critical operational service of protection which require us to meet the standard protection switching time of 50 ms.
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Pijanka, Marcin M., and Grzegorz W. Różański. "Mobile MPLS-TP – Support the mobility of terminal devices using OAM channel." International Journal of Electronics and Telecommunications 62, no. 3 (September 1, 2016): 215–23. http://dx.doi.org/10.1515/eletel-2016-0029.

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Abstract MPLS architecture for transport networks play the significant role in the development of next generation networks, in particular with regard to the guarantee of continuity of communications “end-to-end” through a variety of heterogeneous segments of the telecommunications network. The article presents the concept of Mobile MPLS-TP with the use of OAM channels to support the mobility of users and optimize “Handoff” procedure in a hierarchical network topology.
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SAKAMOTO, Kenichi, Yoshihiro ASHI, and Akihiko TAKASE. "Service-Transport Separated Network Architecture Using MPLS-TP Technologies." IEICE Transactions on Communications E95-B, no. 3 (2012): 752–54. http://dx.doi.org/10.1587/transcom.e95.b.752.

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Huifeng Bai, 白晖峰, 陆月明 Yueming Lu, and 纪越峰 Yuefeng Ji. "Fast restoration scheme for MPLS-TP enabled optical multicast." Chinese Optics Letters 8, no. 11 (2010): 1043–46. http://dx.doi.org/10.3788/col20100811.1043.

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Ryoo, Jeong-dong, Taesik Cheung, Daniel King, Adrian Farrel, and Huub van Helvoort. "MPLS-TP linear protection for ITU-T and IETF." IEEE Communications Magazine 52, no. 12 (December 2014): 16–21. http://dx.doi.org/10.1109/mcom.2014.6979981.

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Addeo, Christian, Giorgio Cazzaniga, Roberta Crescentini, and Fabio Valente. "On QoS mechanism profiling in MPLS-TP transport networks." Bell Labs Technical Journal 14, no. 4 (February 23, 2010): 227–41. http://dx.doi.org/10.1002/bltj.20413.

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Zongpeng Du, Zongpeng Du, Yueming Lu Yueming Lu, and Yuefeng Ji Yuefeng Ji. "Efficient label distribution mechanism for bidirectional paths in MPLS-TP networks." Chinese Optics Letters 10, no. 2 (2012): 020604–20607. http://dx.doi.org/10.3788/col201210.020604.

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Moon, Sungnam, and Namhi Kang. "Design and Implementation for Construction Method of Management Network in MPLS-TP Network." Journal of The Institute of Internet, Broadcasting and Communication 15, no. 3 (June 30, 2015): 59–65. http://dx.doi.org/10.7236/jiibc.2015.15.3.59.

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Дисертації з теми "MPLS-TP"

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Katsavos, Christos. "Multi Protocol Label Switching – Transport Profile (MPLS-TP) in OpMiGua hybrid network." Thesis, Norwegian University of Science and Technology, Department of Telematics, 2010. http://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-10901.

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Анотація:
This thesis presents the combination of MPLS-TP protocol with an integrated hybridnetwork, the Opmigua network. It is presented that the MPLS-TP protocol is applicableand follows all the requirements to be compatible with an Opmigua network. Differentnetwork scenarios, combining packet and circuit switching properties with MPLS-TPlabels, are presented. At the beginning of this thesis, are provided the characteristics and requirements of MPLS-TP protocol which the standardization of this is on going. Furthermore, it is explained how the MPLS-TP management and the forwarding plane work. Some references are also given not only to OAM mechanisms, but also to control plane that the MPLS-TP uses. We use both, global and local significance MPLS-TP labels for distinguishing theGuaranteed Service Traffic (GST) packets from Statistical Multiplexing (SM) packets.Using this method, we have concluded some results, as it concerns GST and SMtraffic. GST packets take a global significance label value until to reach the destination node. On the other hand, SM packets take local significance labels for each path into an Opmigua network which follow Optical Packet Switch (OPS) networks. We have proposed a new method for differentiation of packets from low to high priority using extension headers of Internet Protocol v6 either Destination Options Header(DOH) or MPLS-TP as an extension header. The result that we have derived is highand low priority packets are differentiated at ingress Opmigua network which GST packets take global significance MPLS-TP label following Optical Cross Connect (OXC) network and SM packets change per each Label Switched Path (LSP) local significance MPLS-TP labels until to reach the destination. Finally, two MPLS-TP path protection schemes, facility bypass and restoration usingdetours were combined with Opmigua network to provide failures for both, GuaranteedService Traffic (GST) packets and Statistical Multiplexing (SM) packets.
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Costa, Cláudio Roberto Ferreira. "Mecanismos para determinação de rotas de proteção em redes MPLS-TP com topologia em malha." Universidade de São Paulo, 2016. http://www.teses.usp.br/teses/disponiveis/3/3142/tde-28062016-090257/.

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Анотація:
As redes atuais de telecomunicações utilizam tecnologias de comutação de pacotes para integração de voz, dados, imagens e outros serviços. O tráfego nessas redes costuma ser feito por meio de tecnologias como o MPLS-TP e com regras heurísticas para a determinação dos melhores caminhos. O uso de boas regras afeta diretamente o desempenho e a segurança da operação. Este trabalho propõe o uso de simulação de baixo custo para prever o comportamento e avaliar regras de escolha de caminhos. Para isso, este trabalho avalia três métodos de seleção de caminhos de LSPs, combinados com duas heurísticas de recuperação, usados em redes MPLS-TP em malha com mecanismos de proteção em malha compartilhada. Os resultados das simulações medem o impacto dos métodos e heurísticas utilizados, demonstrando o quanto uma melhor seleção de caminhos pode contribuir para a redução do uso dos recursos da rede e do número máximo de LSPs afetados em caso de falhas na rede. Os resultados deste trabalho, bem como a técnica de análise proposta, almejam ser uma contribuição para a padronização de regras de seleção de LSPs em redes heterogêneas.
The telecommunications networks nowadays use packet-switching technologies for integration of voice, data, images and other services. The traffic on these networks is usually done through technologies such as MPLS-TP and with heuristic rules to determine the best paths. The use of good rules directly affect the performance and security of operation. This paper proposes the inexpensive use of simulation to predict the behavior and evaluate rules for choosing paths. For this, this study evaluates three methods of selection of LSPs paths, combined with two recovery heuristics, used in MPLS-TP mesh networks with shared mesh protection mechanisms. The results of the simulations measure the impact of the methods and heuristics used, demonstrating how much better path selection can contribute to reducing the use of network resources and the maximum number of LSPs affected in the event of network failures. These results and the proposed analysis technique yearn to be a contribution to the standardization of LSPs selection rules in heterogeneous networks.
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Маслак, Михайло Олексійович. "Транспортні мережі на основі технології MPLS, принципи, перспективи розвитку". Bachelor's thesis, КПІ ім. Ігоря Сікорського, 2021. https://ela.kpi.ua/handle/123456789/41589.

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Анотація:
Мета роботи – дослідження транспортних мереж на основі технології MPLS. Аналіз напрямків адаптації технології MPLS для досягнення відповідності вимогам транспортних мереж. У даній роботі розглядається транспортна мережа як невід’ємна частина телекомунікаційної системи, аналізуються технічні принципи функціювання мереж MPLS, проводиться огляд основних технічних принципів транспортних мереж MPLS TP та їх відмінностей від принципів MPLS, аналізується питання моніторингу і керування мережами MPLS TP та питання щодо напрямку подальшого розвитку мереж MPLS TP, зокрема, переходу до технології GMPLS.
The purpose of the work is to study transport networks based on MPLS technology. Analysis of directions of MPLS technology adaptation to achieve compliance with the requirements of transport networks. This paper considers transport network as an integral part of telecommunication system, analyzes technical principles of MPLS networks operation, reviews main technical principles of MPLS TP transport networks and their differences from MPLS principles, analyzes the issue of monitoring and management of MPLS TP networks and the direction of further development of MPLS TP networks, in particular, the transition to GMPLS technology.
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Henriques, Miguel Duarte. "Otimização do processo de comutação em redes de transporte." Master's thesis, Universidade de Aveiro, 2013. http://hdl.handle.net/10773/12691.

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Анотація:
Mestrado em Engenharia Eletrónica e Telecomunicações
No presente trabalho analisam-se os custos de implementação (CAPEX) de um nó inserido numa rede de transporte. São estudadas tecnologias de comutação de pacotes (MPLS-TP), tecnologias de comutação de circuitos (OTN) e tecnologias de comutação de canais óticos (ROADM). Com estas tecnologias são analisadas três arquiteturas para um nó, e, alterando o tráfego, comparam-se os benefícios e as limitações de cada arquitetura.
In the present work, the capital expenditure (CAPEX) related with the implementation of a node in a transport network is analyzed. Technologies with different kind of switching are studied, such as MPLS-TP (packet switching), OTN (circuit switching) and ROADM (optical switching). Three different architectures combining these technologies are considered and, by changing the traffic, a comparison is performed in order to identify the limitations and advantages of each one.
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Chen, Chun-Kuei, and 陳俊魁. "Dynamic Bandwidth Allocation with Fairness by Using Fuzzy Q-learning for MPLS-TP Ring." Thesis, 2011. http://ndltd.ncl.edu.tw/handle/77830864454709672159.

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Анотація:
碩士
國立交通大學
電機學院通訊與網路科技產業專班
100
The data-type traffic from mobile equipment grows rapidly day by day. While consumers want to pay less for mobile services, network operators must reduce their cost when scaling networks. Since the cost and media-usage efficiency advantages, Ethernet is extending from local area network to metropolitan area network. Beyond the attachment point as the transmitting medium, Ethernet services may operate over different kinds of packet transport networks (PTNs). MPLS-TP is one of the PTN standard. The MPLS-TP adopts all of the supporting QoS mechanisms already defined within the standards, and also brings the benefits of path-based, in-band OAM and protection mechanisms found in traditional transport technologies. This thesis is base on providing the fairness property of ring network as in previous related works. However, we make the total available bandwidth for fairness eligible traffic become dynamic in MPLT-TP ring, which is real in transport network. The fair rate scheme would be face with oscillation. So we adopt the fuzzy Q-learning algorithm in fair rate generator to enhance the performance of network. We find a signal which called rate difference take it as the reinforcement signal for fuzzy Q-learning. The simulation results reveal the purposed fuzzy Q-learning fair rate generator can make the MPLS-TP ring network with lower convergence time and higher utilization.
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Книги з теми "MPLS-TP"

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Carrier Ethernet: Pseudowires, MPLS-TP and VPLS. Hoboken, New Jersey: John Wiley & Sons, Inc., 2012.

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Toy, Mehmet. Networks and Services: Carrier Ethernet, PBT, MPLS-TP, and VPLS. Wiley & Sons, Incorporated, John, 2012.

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Toy, Mehmet. Networks and Services: Carrier Ethernet, PBT, MPLS-TP, and VPLS. Wiley & Sons, Incorporated, John, 2012.

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Costa, Cláudio Roberto Ferreira. Mecanismos para determinação de rotas de proteção em redes MPLS-TP com topologia em malha. Brazil Publishing, 2020. http://dx.doi.org/10.31012/978-65-5016-373-0.

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Частини книг з теми "MPLS-TP"

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Azizi, Mounir, Redouane Benaini, and Mouad Ben Mamoun. "MPLS-TP: OAM Discovery Mechanism." In Lecture Notes in Computer Science, 25–32. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-38227-7_7.

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Gumaste, Ashwin, Chirag Taunk, Sarvesh Bidkar, Deval Bhamare, and Tamal Das. "Using MPLS-TP for Data-Center Interconnection." In Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, 398–410. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-30376-0_27.

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"MPLS Transport Profile (MPLS-TP)." In MPLS-Enabled Applications, 509–29. Chichester, UK: John Wiley & Sons, Ltd, 2011. http://dx.doi.org/10.1002/9780470976173.ch17.

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"MPLS-TP (MPLS-Transport Profile)." In Networks and Services, 303–32. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2012. http://dx.doi.org/10.1002/9781118435960.ch13.

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Тези доповідей конференцій з теми "MPLS-TP"

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Malis, Andrew G. "MPLS-TP: Where Are We?" In National Fiber Optic Engineers Conference. Washington, D.C.: OSA, 2012. http://dx.doi.org/10.1364/nfoec.2012.ntu2e.6.

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Koike, Yoshinori. "MPLS-TP: Overview and status." In National Fiber Optic Engineers Conference. Washington, D.C.: OSA, 2013. http://dx.doi.org/10.1364/nfoec.2013.nw1f.1.

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Negi, Vishal, Umang Kumar, Tulika Pandey, and Ashwin Gumaste. "Building an MPLS-TP simulator." In 2012 17th European Conference on Networks and Optical Communications - (NOC 2012). IEEE, 2012. http://dx.doi.org/10.1109/noc.2012.6249949.

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Zhang, Jiang, Sarah Ruepp, Michael S. Berger, and Henrik Wessing. "Protection for MPLS-TP multicast services." In 2009 7th International Workshop on Design of Reliable Communication Networks (DRCN). IEEE, 2009. http://dx.doi.org/10.1109/drcn.2009.5339994.

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Yun, Xiang, and Zhong Wang. "Technique analysis of T-MPLS OAM and MPLS-TP OAM." In Photonics and Optoelectronics Meetings 2009, edited by Dieter Stefan Jäger, Hequan Wu, Shuisheng Jian, Desheng Jiang, Deming Liu, Weiwei Dong, Qizhen Sun, and Xiaochun Xiao. SPIE, 2009. http://dx.doi.org/10.1117/12.843167.

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Jain, Vivek, and Abhay S. Gandhi. "An Architecture for Implementation of IEEE1588v2 over MPLS/MPLS-TP Networks." In 2014 International Conference on Communication Systems and Network Technologies (CSNT). IEEE, 2014. http://dx.doi.org/10.1109/csnt.2014.51.

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Zhang, Huibin, Yongli Zhao, Dahai Han, Jie Zhang, and Jianchao Xing. "QoS sensitive routing in DiffServ MPLS-TP networks." In 2010 International Conference on Computer Application and System Modeling (ICCASM 2010). IEEE, 2010. http://dx.doi.org/10.1109/iccasm.2010.5620187.

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Xie, Wenjun, Shanguo Huang, and Wanyi Gu. "An improved ring protection method in MPLS-TP networks." In 2010 2nd IEEE International Conference on Network Infrastructure and Digital Content (IC-NIDC 2010). IEEE, 2010. http://dx.doi.org/10.1109/icnidc.2010.5657960.

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HUANG, Feng, Xiaobo YI, Hanzheng ZHANG, and Ping GONG. "Key requirements of packet transport network based on MPLS-TP." In Asia Communications and Photonics Conference and Exhibition. Washington, D.C.: OSA, 2009. http://dx.doi.org/10.1364/acp.2009.thff2.

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Dae-Ub Kim, Yeon-Cheol Ryoo, ByungChul Kim, and JaeYong Lee. "OAM and protection mechanisms for MPLS-TP packet transport networks." In 2014 12th International Conference on Optical Internet 2014 (COIN). IEEE, 2014. http://dx.doi.org/10.1109/coin.2014.6950605.

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Звіти організацій з теми "MPLS-TP"

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Bocci, M., G. Swallow, and E. Gray. MPLS Transport Profile (MPLS-TP) Identifiers. RFC Editor, September 2011. http://dx.doi.org/10.17487/rfc6370.

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Sprecher, N., and A. Farrel, eds. MPLS Transport Profile (MPLS-TP) Survivability Framework. RFC Editor, September 2011. http://dx.doi.org/10.17487/rfc6372.

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Bryant, S., E. Osborne, and N. Sprecher. MPLS Transport Profile (MPLS-TP) Linear Protection. Edited by Y. Weingarten and A. Fulignoli. RFC Editor, October 2011. http://dx.doi.org/10.17487/rfc6378.

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Fang, L., B. Niven-Jenkins, S. Mansfield, and R. Graveman, eds. MPLS Transport Profile (MPLS-TP) Security Framework. RFC Editor, April 2013. http://dx.doi.org/10.17487/rfc6941.

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Andersson, L., L. Berger, L. Fang, N. Bitar, and E. Gray, eds. MPLS Transport Profile (MPLS-TP) Control Plane Framework. RFC Editor, September 2011. http://dx.doi.org/10.17487/rfc6373.

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Villamizar, C. Use of Multipath with MPLS and MPLS Transport Profile (MPLS-TP). RFC Editor, March 2014. http://dx.doi.org/10.17487/rfc7190.

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Frost, D., S. Bryant, and M. Bocci. MPLS Transport Profile (MPLS-TP) Next-Hop Ethernet Addressing. RFC Editor, June 2014. http://dx.doi.org/10.17487/rfc7213.

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Winter, R., E. Gray, H. van Helvoort, and M. Betts. MPLS Transport Profile (MPLS-TP) Identifiers Following ITU-T Conventions. RFC Editor, May 2013. http://dx.doi.org/10.17487/rfc6923.

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Bitar, N., R. Zhang, M. Daikoku, and P. Pan. MPLS Transport Profile (MPLS-TP) Applicability: Use Cases and Design. Edited by L. Fang. RFC Editor, August 2013. http://dx.doi.org/10.17487/rfc6965.

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Weingarten, Y., S. Aldrin, P. Pan, J. Ryoo, and G. Mirsky. Requirements for MPLS Transport Profile (MPLS-TP) Shared Mesh Protection. RFC Editor, December 2014. http://dx.doi.org/10.17487/rfc7412.

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