Academic literature on the topic 'MPLS Virtual Private Network'

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Journal articles on the topic "MPLS Virtual Private Network"

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Kennedy, Okokpujie, Shobayo Olamilekan, Noma-Osaghae Etinosa, Imhade Okokpujie, and Okoyeigbo Obinna. "Performance of MPLS-based Virtual Private Networks and Classic Virtual Private Networks Using Advanced Metrics." TELKOMNIKA Telecommunication, Computing, Electronics and Control 16, no. 5 (2018): 2073–81. https://doi.org/10.12928/TELKOMNIKA.v16i5.7326.

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Multiprotocol Label Switching (MPLS) is effective in managing and utilizing available network bandwidth. It has advanced security features and a lower time delay. The existing literature has covered the performance of MPLS-based networks in relation to conventional Internet Protocol (IP) networks. But, too few literatures exist on the performance of MPLS-based Virtual Private Networks (VPN) in relation to traditional VPN networks. In this paper, a comparison is made between the effectiveness of the MPLSVPN network and a classic VPN network using simulation studies done on OPNET® . The perf
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Saputra, Mochammed Erryandra, and Yuma Akbar. "Analisis Penggunaan Metode XConnect Main and Backup Link Berbasis VPN MPLS Layer 2 pada Jaringan Metro-Ethernet." Jurnal Indonesia : Manajemen Informatika dan Komunikasi 5, no. 3 (2024): 3170–80. http://dx.doi.org/10.35870/jimik.v5i3.1009.

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The rapid development of information and communication technology requires excellent scalability, which is crucial for network performance availability. MPLS is a technology that can be used for communication in high-speed backbone networks based on virtual private networks (VPN). MPLS provides solutions to various current computer network problems such as speed, scalability, quality of service (QoS), and network traffic management. This research aims to optimize the scalability of MPLS Layer 2 VPN-based network traffic by applying the xconnect main and backup method implemented in metro Ether
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Ogbu, M. N. C., E. Okpala, and C. O. Ezeagwu. "Simulation Analysis of Network Metrics on Virtual Private Network Through Multi-Protocol Label Switching." Journal of Computer Science Review and Engineering 7, no. 2 (2023): 1–13. https://doi.org/10.5281/zenodo.8245033.

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<em>Multi-Protocol Label Switching is one of the packet-switching technology that uses fixed-length identifier labels to transmit traffic efficiently. The three main services an MPLS supports are Quality of Service (QoS), Traffic Engineering (TE), and Virtual Private Network (VPN). The forwarding mechanism and scalability features of this technology make it more suitable for carrying out real-time application traffic. This paper evaluated the network performance metrics for time-sensitive (video, voice) and Best-effort traffic (FTP, email) in an MPLS-enabled network. The functionality of the M
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Prabhavati, Biradar, and T. L. Purushottama. "DESIGN OF TRAFFIC ENGINEERED MULTI-PROTOCOL LABEL SWITCHING-TRANSPORT PROFILE (MPLS-TP) FOR THE ENHANCEMENT OF QUALITY OF SERVICE." DESIGN OF TRAFFIC ENGINEERED MULTI-PROTOCOL LABEL SWITCHING-TRANSPORT PROFILE (MPLS-TP) FOR THE ENHANCEMENT OF QUALITY OF SERVICE 5, no. 4RACEEE (2017): 58–67. https://doi.org/10.5281/zenodo.580626.

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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
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Qian, Xuan Yu, Shi Min Liu, Cheng Zhou, and Xiao Juan Guan. "Research of Network Testing Based on MPLS L2VPN." Advanced Materials Research 791-793 (September 2013): 1695–98. http://dx.doi.org/10.4028/www.scientific.net/amr.791-793.1695.

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MPLS (Multi-Protocol Label Switching) VPN is based on MPLS technology and construct virtual private network (VPN) on backbone network, to provide users with safe, reliable, high-quality business technology VPN. MPLS L2VPN (Layer 2 VPN) is one type of solutions of MPLS VPN. The MPLS L2VPN technology, after years of researching and practicing, is becoming mature, and many RFCs and related drafts are published to standardize it. However, there is not much research of network test method on the MPLS L2VPN technology, this paper analyzes the various MPLS L2VPN solutions and make a reach on test met
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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 (2017): 58–67. http://dx.doi.org/10.29121/granthaalayah.v5.i4raceee.2017.3323.

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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
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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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Dewi, Sari, and Sulistiyah Sulistiyah. "Analisa Virtual Private Network (VPN) IP Multi Protocol Label Switching (MPLS) Untuk Jaringan Wide Area Network (WAN)." Journal of Information System, Applied, Management, Accounting and Research 6, no. 1 (2022): 16. http://dx.doi.org/10.52362/jisamar.v6i1.662.

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Teknologi jaringan saat ini berkembang pesat salah satunya teknologi VPN hal ini sangat berguna pada pertukaran data yang terjadi agar dapat berjalan dengan aman dan lancar, dengan harapan jaringan tersebut dapat meningkatkan kinerja dan performa perusahaan dalam mendukung proses bisnis yang dijalankan dimana harus tetap terhubung walaupun dengan jarak yang jauh antar pulau dan antar provinsi di seluruh indonesia. MPLS VPN menawarkan berbagai kehandalan dan kecepatan pengiriman paket data, hal ini lah yang mendorong banyak perusahaan yang memiliki kantor cabang untuk menggunakan teknologi ters
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Ibikunle, Frank, Segun Oloja, and Esi Philip O. "Campus Network Virtualization using Multiprotocol Label Switching Virtual Private Networks (MPLS-VPNs)." International Journal of Applied Information Systems 5, no. 8 (2013): 1–9. http://dx.doi.org/10.5120/ijais12-450569.

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Chou, Chun Tung. "Traffic engineering for MPLS-based virtual private networks." Computer Networks 44, no. 3 (2004): 319–33. http://dx.doi.org/10.1016/j.comnet.2003.10.001.

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Dissertations / Theses on the topic "MPLS Virtual Private Network"

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Ögren, Niklas. "Selecting/realization of Virtual Private Networks with Multiprotocol Label Switching or Virtual Local Area Networks." Thesis, KTH, Mikroelektronik och Informationsteknik, IMIT, 2002. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-93211.

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Many reports have been written about the techniques behind Virtual Private Networks (VPN) and Multi Protocol Label Switching (MPLS). They usually deal with the low level design of the software implementing a specific technique. The initial products are usually not mature enough to run in a large network or have to be adjusted in some way to fit. This report investigates the different ways of implementing strict layer 2 Virtual Private Networks in an existing nation-wide Gigabit Ethernet. The infrastructure in use, as well as the hardware, has to be used without major changes. Since 1998/1999,
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Castillo, Meza Joel Omar. "Migración e implementación hacia una red MPLS-VPN aplicado a una entidad empresarial en la ciudad de Lima." Bachelor's thesis, Universidad Ricardo Palma, 2015. http://cybertesis.urp.edu.pe/handle/urp/1278.

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En la presente tesina se realiza una descripción de la tecnología de Conmutación Multi-Protocolo mediante etiquetas usando una red privada virtual para la comunicación de una entidad empresarial. Se realizó una descripción de la tecnología MPLS con VPN mostrando sus cualidades, ventajas y desventajas, se promueve la esta tecnología a la red de comunicación de datos de la empresa tenga un performance y confidencialidad en los datos transmitidos, diseñando un esquema así como la infraestructura que podría ser usada en esta implementación, con características modulares las cuales permitirá a la e
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Machado, João Pedro Morais Damms. "Design and implementation of MPLS laboratorial scenarios." Master's thesis, Universidade de Aveiro, 2010. http://hdl.handle.net/10773/5612.

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Mestrado em Engenharia Electrónica e Telecomunicações<br>O Multiprotocol Label Switching (MPLS) é um mecanismo de transporte de dados, sob a forma de um protocolo agnóstico, com grande potencial de crescimento e adequação. Opera na “Camada 2.5” do modelo OSI e constitui um mecanismo de alto desempenho utilizado nas redes de núcleo para transportar dados de um nó da rede para outro. O sucesso do MPLS resulta do facto de permitir que a rede transporte todos os tipos de dados, desde tráfego IP a tráfego da camada de ligação de dados, devido ao encapsulamento dos pacotes dos diversos proto
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Солодкий, В. Б., та V. B. Solodkiy. "Дослідження віртуальних приватних мереж на основі технології MPLS". Thesis, Тернопільський національний технічний університет імені Івана Пулюя, 2015. http://elartu.tntu.edu.ua/handle/lib/20797.

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Дипломну роботу магістра присвячено аналізу та проектуванню віртуальних приватних мереж на базі технології MPLS. Зроблено загальний огляд принципів побудови сучасних глобальних мереж зв’язку, що застосовуються для організації VPN-мереж з встановленням та без встановлення з’єднання. Детально досліджено технологію MPLS VPN та її принципи роботи. Здійснено порівняння з іншими VPN-технологіями, встановлено переваги. Спроектовано модель мережі для міжобласного провайдера на базі технології IP/MPLS, яка підтримує віртуальні приватні мережі, а також забезпечує функції якості обслуговування. Здійсне
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Celestino, Pedro. "Private virtual network." Universidade de Taubaté, 2005. http://www.bdtd.unitau.br/tedesimplificado/tde_busca/arquivo.php?codArquivo=264.

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Along with the computers networks emerges the possibility of managing remotely the intelligent organizations although the safe change of information has become a problem to the institutions which transport structured data through nets of computers. One of the largest challenges is the search for safe and economically viable solutions. Protocols of safety, cryptographic algorithms, safe means of communication are essential items so that the information can travel in environmentals free of external interferences. One of the alternatives is the Virtual Private Networks. In this work, the main pro
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Samuelsson, Joakim, and Richard Sandsund. "Implementing a virtual private network." Thesis, KTH, Kommunikationssystem, CoS, 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-91933.

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Dagens företag vill ge anställda möjlighet att jobba hemifrån eller på resande fot. En vanlig lösning för att möjliggöra detta är virtual private network (VPN). VPN ger en användare tillgång till interna resurser på företaget från ett externt nät, exempelvis via Internet. Detta gör att användare kan komma åt de interna resurserna på ett säkert sätt. Vilken VPN-teknik är då att föredra för att få en så snabb, säker och pålitlig anslutning som möjligt? Detta examensarbete tar upp olika VPN-tekniker. Vi beskriver vanliga VPN-protokoll som L2TP, IPSec och PPTP. Hur användare autentiseras på ett sä
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Davis, Carlton R. "IPSec base virtual private network." Thesis, McGill University, 2000. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=33390.

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The Internet evolved from an experiential packet-switching network called the ARPANET. This network has grown exponentially since its conversion from an experimental to an operational network in 1975. However, the need for confidential and secure data channel has dissuaded many enterprises from using this ubiquitous public infrastructure. The IPSec protocol suite developed by the Internet Engineering Task Force (IETF) makes it possible to implement secure communication channels or virtual private network (VPN) over the Internet. Corporations can benefit from substantial financial savings by ut
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Norin, Anders, and Henrik Ohlsson. "VPN : Virtual Private Network i Windows 2000." Thesis, University West, Department of Informatics and Mathematics, 2002. http://urn.kb.se/resolve?urn=urn:nbn:se:hv:diva-483.

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Ikiz, Suheyla. "Performance Parameters Of Wireless Virtual Private Network." Master's thesis, METU, 2006. http://etd.lib.metu.edu.tr/upload/12607094/index.pdf.

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ABSTRACT PERFORMANCE PARAMETERS OF WIRELESS VIRTUAL PRIVATE NETWORK KZ, S&uuml<br>heyla Ms.c, Department of Information Systems Supervisor: Assoc. Prof. Dr. Nazife Baykal Co-Supervisor: Assist. Prof. Dr. Yusuf Murat Erten January 2006, 78 pages As the use of PC&rsquo<br>s and handheld devices increase, it expected that wireless communication would also grow. One of the major concerns in wireless communication is the security. Virtual Private Network (VPN) is the most secure solution that ensures three main aspect of security: authentication, accountability and encryption can use in wireless ne
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Liang, Huan. "Minimal cost design of virtual private network." Thesis, University of Ottawa (Canada), 2003. http://hdl.handle.net/10393/26513.

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VPN technology is an attractive cost-effective solution for the support of the networking needs of enterprises. In this work, we review current issues in the development of VPN technology. We then focus our research on minimal cost design, used by network-based IP VPN service providers. The interest in such solutions is generated by both customers seeking to reduce support costs and by Internet Service Providers (ISPs) seeking new revenue sources. Solving the cost minimization would allow ISPs to define and deploy new VPN services. In this thesis, Multicommodity Min-Cost Flows (MMCF) formulati
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Books on the topic "MPLS Virtual Private Network"

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Carmouche, James Henry. IPsec virtual private network fundamentals. Cisco Press, 2007.

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Carmouche, James Henry. IPsec virtual private network fundamentals. Cisco Press, 2007.

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(Corporation), NIIT, ed. Building a virtual private network. Premier Press, 2003.

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Tomsu, Peter. MPLS-based VPNs: Designing advanced virtual networks. Prentice Hall, 2002.

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Kosiur, David R. Building and managing virtual private networks. Wiley, 1998.

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Covill, Randall J. Implementing extranets: The Internet as a virtual private network. Digital Press, 1998.

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Ng, Walfrey. MIBlet approach to virtual private network management: Design, applications and implementation. National Library of Canada, 1999.

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Raud, Matthieu. A study of virtual private network technologies and analysis of the implementations. Oxford Brookes University, 2003.

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Frahim, Jazib. SSL and Remote Access VPNs: An introduction to designing and configuring SSL virtual private networks. Cisco Systems, 2008.

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Telecom Regulatory Authority of India., ed. Consultation paper on application of principle of non-discrimination in tariff schemes like CUG (closed user group), VPN (virtual private network), F&F (friends & family) etc. Telecom Regulatory Authority of India, 2004.

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Book chapters on the topic "MPLS Virtual Private Network"

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Lakshmi, M. L. S. N. S., and Naga Venkata Sai Sudheer Bandaru. "Configuring MPLS Cloud Providers with Virtual Private Network." In Lecture Notes in Electrical Engineering. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-2256-7_76.

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Bök, Patrick-Benjamin, Andreas Noack, Marcel Müller, and Daniel Behnke. "Virtual Private Network (VPN)." In Computernetze und Internet of Things. Springer Fachmedien Wiesbaden, 2020. http://dx.doi.org/10.1007/978-3-658-29409-0_11.

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Masuda, Mineyoshi, Yutaka Yoshimura, Toshiaki Tarui, Toni Shonai, and Mamoru Sugie. "VPDC: Virtual Private Data Center." In Integrated Network Management VIII. Springer US, 2003. http://dx.doi.org/10.1007/978-0-387-35674-7_47.

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Sinha, Sanjib. "Virtual Private Network or VPN." In Beginning Ethical Hacking with Python. Apress, 2016. http://dx.doi.org/10.1007/978-1-4842-2541-7_28.

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Prenn, Caroline, and Paul van Marcke. "Value-chain, virtual private network (VPN)." In Projektkompass eLogistik. Vieweg+Teubner Verlag, 2002. http://dx.doi.org/10.1007/978-3-322-84977-9_16.

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Cabianca, Dario. "Implementing Virtual Private Cloud Instances." In Google Cloud Platform (GCP) Professional Cloud Network Engineer Certification Companion. Apress, 2023. http://dx.doi.org/10.1007/978-1-4842-9354-6_3.

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Masti, Sarang Bharadwaj, Siva P. Meenakshi, and Serugudi V. Raghavan. "VNEMX: Virtual Network Embedding Test-Bed Using MPLS and Xen." In Wired/Wireless Internet Communication. Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-30630-3_1.

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Wang, Lina, Ge Yu, Guoren Wang, et al. "A Virtual Private Network for Virtual Enterprise Information Systems." In Web-Age Information Management. Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/3-540-45151-x_16.

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Gali, Alex, and Stefan Covaci. "Active Virtual Private Network Services on Demand." 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_14.

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Brehon, Yannick, Daniel Kofman, and Augusto Casaca. "Virtual Private Network to Spanning Tree Mapping." In NETWORKING 2007. Ad Hoc and Sensor Networks, Wireless Networks, Next Generation Internet. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-72606-7_60.

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Conference papers on the topic "MPLS Virtual Private Network"

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Saad, Muhammad, Waseem Ahmed, and Muhammad Mubashir Khan. "Design and Analysis of Quantum Safe Virtual Private Network." In 2024 4th International Conference on Innovations in Computer Science (ICONICS). IEEE, 2024. https://doi.org/10.1109/iconics64289.2024.10824365.

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Shim, Hyoungsub, Bongho Kang, Haejung Im, Duhyun Jeon, and Seok-min Kim. "Virtual Private Network (VPN) with Post-Quantum Cryptography (PQC)." In 2024 15th International Conference on Information and Communication Technology Convergence (ICTC). IEEE, 2024. https://doi.org/10.1109/ictc62082.2024.10827179.

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Garg, Mohan, S. Senthurya, Jagtej Singh, Anila Bajpai, Nakul S. Sharma, and K. Yuvaraj. "Investigating the Use of Virtual Private Networks on ATM Network Security." In 2024 15th International Conference on Computing Communication and Networking Technologies (ICCCNT). IEEE, 2024. http://dx.doi.org/10.1109/icccnt61001.2024.10724957.

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Wang, Xu, Dahua Zhang, Ziqing Lin, et al. "Research on Security Risk Assessment Model for Power 5G Virtual Private Network." In 2024 International Conference on Artificial Intelligence and Power Systems (AIPS). IEEE, 2024. http://dx.doi.org/10.1109/aips64124.2024.00100.

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Li, Jianxue, Baohao Chen, Yifeng Zhu, Chengyu Liu, and Guosheng Lu. "5G power virtual private network test service management platform resource scheduling and optimization algorithm." In International Conference on Optoelectronic Information and Communication Technology (OICT 2025), edited by Hai-Han Lu and Giuseppe Buja. SPIE, 2025. https://doi.org/10.1117/12.3070277.

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Li, Jianxue, Baohao Chen, Yifeng Zhu, Chengyu Liu, and Guosheng Lu. "5G power virtual private network test service management platform resource scheduling and optimization algorithm." In International Conference on Machine Vision and Deep Learning (MVDL 2025), edited by Chengzhong Xu and Dickson K. W. Chiu. SPIE, 2025. https://doi.org/10.1117/12.3072015.

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Zhang, Guoyi, Hailong Zhu, Junyi Xie, Jiaqi Hu, Yu Huang, and Tianyu Chen. "Research on Terminal Multi-Operator Network Access and Switching Control Technology Based on 5G Power Virtual Private Network." In 2024 IEEE 4th International Conference on Data Science and Computer Application (ICDSCA). IEEE, 2024. https://doi.org/10.1109/icdsca63855.2024.10859952.

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Bahnasse, Ayoub, Mohamed Talea, Abdelmajid Badri, and Fatima Ezzahraa Louhab. "New smart platform for automating MPLS virtual private network simulation." In 2018 International Conference on Advanced Communication Technologies and Networking (CommNet). IEEE, 2018. http://dx.doi.org/10.1109/commnet.2018.8360268.

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Lopez, Gustavo, and Eduardo Grampin. "Scalability testing of legacy MPLS-based Virtual Private Networks." In 2017 IEEE URUCON. IEEE, 2017. http://dx.doi.org/10.1109/urucon.2017.8171874.

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Yanfeng Zhu, Yibo Zhang, Chun Ying, and Wei Lu. "Queuing model based end-to-end performance evaluation for MPLS Virtual Private Networks." In 2009 IFIP/IEEE International Symposium on Integrated Network Management (IM). IEEE, 2009. http://dx.doi.org/10.1109/inm.2009.5188852.

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Reports on the topic "MPLS Virtual Private Network"

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Rosen, E., and Y. Rekhter. BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4364.

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Nadeau, T., and H. van, eds. MPLS/BGP Layer 3 Virtual Private Network (VPN) Management Information Base. RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4382.

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De, J., D. Ooms, M. Carugi, and F. Le. BGP-MPLS IP Virtual Private Network (VPN) Extension for IPv6 VPN. RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4659.

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Rosen, E. Applicability Statement for BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4365.

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Behringer, M. Analysis of the Security of BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4381.

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Rosen, E., P. Psenak, and P. Pillay-Esnault. OSPF as the Provider/Customer Edge Protocol for BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4577.

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Marques, P., R. Raszuk, K. Patel, K. Kumaki, and T. Yamagata. Internal BGP as the Provider/Customer Edge Protocol for BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2011. http://dx.doi.org/10.17487/rfc6368.

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Rosen, E., P. Psenak, and P. Pillay-Esnault. Using a Link State Advertisement (LSA) Options Bit to Prevent Looping in BGP/MPLS IP Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4576.

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Marques, P., R. Bonica, L. Fang, et al. Constrained Route Distribution for Border Gateway Protocol/MultiProtocol Label Switching (BGP/MPLS) Internet Protocol (IP) Virtual Private Networks (VPNs). RFC Editor, 2006. http://dx.doi.org/10.17487/rfc4684.

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Rekhter, Y., R. Bonica, and E. Rosen. Use of Provider Edge to Provider Edge (PE-PE) Generic Routing Encapsulation (GRE) or IP in BGP/MPLS IP Virtual Private Networks. RFC Editor, 2007. http://dx.doi.org/10.17487/rfc4797.

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