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Journal articles on the topic 'MPLS Traffic Engineering'

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1

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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2

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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3

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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4

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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5

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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7

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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8

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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9

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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10

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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11

Faisal, Mohammed, Jia Uddin, and Shimul Shil. "Performance of VoIP Networks Using MPLS Traffic Engineering." Advanced Materials Research 457-458 (January 2012): 927–30. http://dx.doi.org/10.4028/www.scientific.net/amr.457-458.927.

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The implementation of Voice over Internet Protocol (VoIP) technology is on the increase because of its ability to enhance operating efficiency and reduce infrastructure cost. Voice and data packets traverse over IP networks with fixed maximum capacity. But susceptibility to traffic congestion which results in delay and packet losses is still a major challenge of VoIP technology. Multiprotocol Label Switching Protocol (MPLS) with Traffic Engineering (TE) is an approved standard technology that has the capabilities to minimize network congestion and improve network performance by reducing delay
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12

Mustapha, Oba Zubair, Muhammad Ali, Yim Fun Hu, and Raed A. Abd-Alhameed. "Service-aware LSP selection with fuzzy based packet scheduling scheme for non-real time traffics." International Journal of Informatics and Communication Technology (IJ-ICT) 10, no. 2 (2021): 126. http://dx.doi.org/10.11591/ijict.v10i2.pp126-139.

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An essential solution is available in Multi-protocol label switching (MPLS), which solve the problems faced by present-day networks: speed, scalability, quality-of-service (QoS) management, and traffic engineering. This paper is an extension of work on Fuzzy based Packet Scheduling Algorithm (FPSA) combined with Packets Processing Algorithm (PPA) in an Internet Protocol/Multi-Protocol Label Switching (IP/MPLS) networks. This will make provision for an intelligent service to the Label Switched Path (LSP) in MPLS networks. Several research work have been proposed on the MPLS Traffic Engineering.
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13

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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14

Melad, Mohammed, Muhammed Musbah, and Khalil Almiqasbi. "Evaluating Segment Routing Technology for MPLS-based Network." E3S Web of Conferences 469 (2023): 00075. http://dx.doi.org/10.1051/e3sconf/202346900075.

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Multi-protocol label switching (MPLS) has proved its strength for large network traffic since it emerged. However, due to increasing demands on network services and for a massive traffic that continually growing, Segment Routing was developed and introduced to overcome the limitation in load balancing and scalability of current MPLS. This paper examines the effectiveness of the SR technique for MPLS-based networks with Traffic Engineering (TE) via experimental work where an implementation of basic SR scenarios is emulated and tested for some comparison criteria. These criteria were based on pa
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15

A., Giorgetti, Sgambelluri A., Paolucci F., Cugini F., and Castoldi P. "Segment routing for effective recovery and multi-domain traffic engineering." IEEE/OSA Journal of Optical Communications and Networking 9, no. 2 (2017): A223 — A232. https://doi.org/10.1364/JOCN.9.00A223.

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Segment routing is an emerging traffic engineering technique relying on Multi-protocol Label-Switched (MPLS) label stacking to steer traffic using the source-routing paradigm. Traffic flows are enforced through a given path by applying a specifically designed stack of labels (i.e., the segment list). Each packet is then forwarded along the shortest path toward the network element represented by the top label. Unlike traditional MPLS networks, segment routing maintains a per-flow state only at the ingress node; no signaling protocol is required to establish new flows or change the routing of ac
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16

RamaDevi, Y., B. Ramadasu, and B. H. Raj Gopal. "Traffic Engineering through MPLS in Service Provider Networks." International Journal of Computer Applications 72, no. 11 (2013): 1–6. http://dx.doi.org/10.5120/12535-8916.

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17

Faisal, Mohammed, Jia Uddin, and Shimul Shil. "Performance of VoIP Networks Using MPLS Traffic Engineering." Advanced Materials Research 457-458 (January 2012): 927–30. http://dx.doi.org/10.4028/scientific5/amr.457-458.927.

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18

Syabani, Dwi Nur, LUCIA NUGRAHENI HARNANINGRUM, and Rikie Kartadie. "IMPLEMENTASI TRAFFIC ENGINEERING UNTUK OPTIMALISASI JARINGAN MPLS INTERCITY." JIKO (Jurnal Informatika dan Komputer) 8, no. 2 (2024): 427. http://dx.doi.org/10.26798/jiko.v8i2.1306.

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19

Ghanwani, A., B. Jamoussi, D. Fedyk, P. Ashwood-Smith, Li Li, and N. Feldman. "Traffic engineering standards in IP-networks using MPLS." IEEE Communications Magazine 37, no. 12 (1999): 49–53. http://dx.doi.org/10.1109/35.809384.

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20

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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21

Awais Salman Qazi and Waqas Ahmad. "Performance Comparison of Real-Time Video Conferencing In MPLS and IP Networking Environment." Lahore Garrison University Research Journal of Computer Science and Information Technology 2, no. 3 (2018): 7–9. http://dx.doi.org/10.54692/lgurjcsit.2018.020347.

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Modern techniques in networking have evolved a diverse range of opportunities to resolve the challenging task of traffic engineering. With a principle focus on video conferencing that has gained popularity worldwide, we contrive to optimize video traffic by using Multiprotocol Label Switching (MPLS) rather than conventional Internet Protocol (IP) networks. MPLS can be a promising technology for real-time applications with low network delays and efficient utilization of network resources. To substantiate this, in this paper we model certain scenarios of both IP and MPLS networks using Optimized
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22

Rizkiana, Salsa, Doan Perdana, and Ridha Negara. "IMPLEMENTASI DAN ANALISA PERFORMANSI LAYANAN VPN PADA JARINGAN MPLS-TE MENGGUNAKAN PROTOKOL BGP DENGAN METODE QOS INTSERV." Jurnal Elektro dan Telekomunikasi Terapan 4, no. 2 (2017): 532. http://dx.doi.org/10.25124/jett.v4i2.1092.

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Fitur Traffic Engineering pada MPLS dapat melakukan perpindahan pada link trafik yang mengalami congestion, sehingga link dapat dipindahkan pada link yang kosong. Teknologi MPLS VPN-TE menjadi solusi untuk meningkatkan keamanan dan pemilihan rute terbaik dalam suatu jaringan. Integrated Service merupakan salah satu model QoS untuk masalah pengontrolan bandwidth end-to-end pada suatu jaringan yang diperlukan oleh teknologi MPLS VPN-TE untuk kestabilan jaringan. Open IMS Core merupakan server layanan multimedia yang digunakan pada teknologi MPLS VPN-TE dengan mempertimbangkan Quality Of Service
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23

Frianto, Dody, and Desi Ramayanti. "ANALISIS PERBANDINGAN LABEL DISTRIBUTION PROTOCOL (LDP) DAN TRAFFIC ENGINEERING (TE) PADA JARINGAN BACKBONE MPLS DI PT IFORTE SOLUSI INFOTEK." JATI (Jurnal Mahasiswa Teknik Informatika) 8, no. 4 (2024): 7787–94. http://dx.doi.org/10.36040/jati.v8i4.10449.

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Multi-Protocol Label Switching (MPLS) adalah teknologi untuk jaringan backbone yang memadukan kecepatan switching layer 2 dengan kemampuan routing layer 3. Penelitian ini mengevaluasi MPLS LDP dan MPLS TE yang digunakan oleh iForte untuk meningkatkan efisiensi pengalihan lalu lintas, pengendalian bandwidth, dan prioritas layanan. MPLS LDP menggunakan oleh Routing Information Base (RIB) untuk distribusi label berdasarkan cost terendah antar node, sementara MPLS TE mengelola dengan LSP berdasarkan kriteria khusus seperti performansi, efisiensi bandwidth, dan Quality of Service (QoS). Hasil pengu
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24

Kashif, R. Khawaja, M. Khaldi Hulaiyel, I. Shukri Majed, H. Mutairi Baraka, and Nasser Al-Khaldi Fahad. "The Usage of MPLS in Voice over IP Network." International Journal of Engineering Research and Reviews 10, no. 3 (2022): 6–10. https://doi.org/10.5281/zenodo.6985144.

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<strong>Abstract:</strong> The article focused on the usage of Multiprotocol Label Switching (MPLS) over VOIP network. One of the features that MPLS has is Traffic Engineering (TE) which can help overcome potential pot holes in the network or to circumvent sub-optimal paths, especially in a network consisting of a diverse geographical terrain. The prevalence of MPLS IP VPN networks make them the de facto transport for inter-connecting IMS based VoIP devices. Inevitably, this creates the need for a fundamental set of guidelines, which can ensure that the quality of service for real time traffic
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25

Ashour, Mohamed, and Tho Le-Ngoc. "Delay-margin based traffic engineering for MPLS-DiffServ networks." Journal of Communications and Networks 10, no. 3 (2008): 351–61. http://dx.doi.org/10.1109/jcn.2008.6388356.

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26

Foteinos, Vassilis, Kostas Tsagkaris, Pierre Peloso, Laurent Ciavaglia, and Panagiotis Demestichas. "Operator-Friendly Traffic Engineering in IP/MPLS Core Networks." IEEE Transactions on Network and Service Management 11, no. 3 (2014): 333–49. http://dx.doi.org/10.1109/tnsm.2014.2346085.

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27

Awduche, Daniel O., and Bijan Jabbari. "Internet traffic engineering using multi-protocol label switching (MPLS)." Computer Networks 40, no. 1 (2002): 111–29. http://dx.doi.org/10.1016/s1389-1286(02)00269-4.

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28

Restrepo, Carlos Mario, Octavio José Salcedo-Parra, and Juan Manuel Sánchez-Céspedes. "Traffic model for the interconnection of networks and operators using MPLS-TE." Revista Facultad de Ingeniería 26, no. 44 (2017): 85. http://dx.doi.org/10.19053/01211129.v26.n44.2017.5774.

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In this paper, the main features of MPLS Traffic Engineering are presented to illustrate how telecommunication service providers use them to create interconnections between each other in order to offer telecom services satisfying QoS commitments. Based on previous traffic models, a new model, which deals with traffic queue balancing for different Classes of Service, and for a provider using another provider´s network is presented. The model output shows that carrying another operator’s traffic may increase delays in an undesirable manner, forcing the carrier to increase the serving rate of LSR
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29

Ariyanti, Dwi, and Unan Yusmaniar Oktiawati. "Analisis Perbandingan Performa Traffic Engineering Dengan Resource Reservation Protocol (RSVP) dan Segment Routing." Teknika 8, no. 2 (2019): 86–91. http://dx.doi.org/10.34148/teknika.v8i2.176.

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Kualitas koneksi khususnya pada backbone menjadi tantangan Internet Service Provider (ISP). MPLS berkerja di layer 2,5 OSI yang mampu mempercepat pengiriman paket pada jaringan backbone. MPLS melekatkan label pada paket yang dikirimkan. Salah satu layanan dari MPLS adalah traffic engineering yang dibuat dengan protokol RSVP. Terdapat protokol baru untuk memberi label pada paket dan mendukung traffic engineering, yaitu Segment Routing. Penelitian ini menganalisis perbandingan performa traffic engineering dengan RSVP dan Segment Routing. Baik pada penerapan RSVP maupun Segment Routing dibuat tun
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30

Nedyalkov, Ivan. "Performance comparison between virtual MPLS IP network and real IP network without MPLS." International journal of electrical and computer engineering systems 12, no. 2 (2021): 83–90. http://dx.doi.org/10.32985/ijeces.12.2.3.

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In this paper an IP based network consisting of two separate IP networks - a virtual one, running MPLS and an experimental IP network, connected to the virtual one, have been studied. VoIP traffic is exchanged between the two networks. Both networks are connected to the Internet and exchange traffic with it. The virtual network is created by using GNS3. The purpose of this paper is to show a comparison in the performance between the two IP networks. In addition, mathematical distributions and approximations have been made to be used to further evaluate the performance of the two networks. The
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31

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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32

Pratiwi, Rosania, and Unan Yusmaniar Oktiawati. "Analisis QoS pada Imlementasi MPLS Traffic Engineering-Diffserv untuk Layanan Video Streaming." Journal of Internet and Software Engineering 4, no. 2 (2023): 34–38. http://dx.doi.org/10.22146/jise.v4i2.8241.

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Perkembangan penggunaan internet di Indonesia saat ini mengalami peningkatan yang sangat pesat. Dilihat dari peningkatan jumlah pengguna internet tersebut maka secara tidak langsung fitur dan layanan yang disediakan turut berkembang. Salah satu fitur tersebut adalah layanan video dan audio. Layanan video dan audio termasuk dalam layanan multimedia streaming. Pertukaran informasi yang begitu cepat dan beragam menjadi alasan bahwa jenis file video lebih banyak dinikmati karena sudah mengandung informasi gambar bergerak dan audio. Namun terdapat beberapa permasalahan yang mempengaruhi performansi
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33

Afees Olanrewaju Akinade, Peter Adeyemo Adepoju, Adebimpe Bolatito Ige, Adeoye Idowu Afolabi, and Olukunle Oladipupo Amoo. "Advancing segment routing technology: A new model for scalable and low-latency IP/MPLS backbone optimization." Open Access Research Journal of Science and Technology 5, no. 2 (2022): 077–95. https://doi.org/10.53022/oarjst.2022.5.2.0056.

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Segment Routing (SR) is emerging as a transformative technology for optimizing IP/MPLS backbone networks, addressing critical challenges of scalability, latency, and operational efficiency. Unlike traditional network protocols, SR simplifies traffic engineering by encoding path information within packet headers, eliminating the need for intermediate state maintenance. This paper introduces a new model for leveraging Segment Routing to enhance the scalability and performance of IP/MPLS backbones, with a particular focus on low-latency routing and efficient resource utilization. The proposed mod
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34

Mohammad, Alhihi, Reza Khosravi Mohammad, Attar Hani, and Samour Mohammad. "Determining the Optimum Number of Paths for Realization of Multi-path Routing in MPLS-TE Networks." TELKOMNIKA Telecommunication, Computing, Electronics and Control 15, no. 4 (2017): 1701–9. https://doi.org/10.12928/TELKOMNIKA.v15i4.6597.

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Multi-Protocol Label Switching for Traffic Engineering (MPLS-TE) technology is an intelligent and advanced tool for handling traffic through the core networks and implementing new services based on virtual transport. Since MPLS-TE combines channel and network layer mechanisms, network administrators can optimally integrate and allocate the traffic loads while maintaining the speed of technologies such as Asynchronous Transfer Mode (ATM) technology. In this paper, the problem of the developed algorithm of multi-path routing which allows us to determine the optimum number of independent shortest
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35

Ammal, R. Ananthalakshmi, Sajimon PC, and Vinodchandra SS. "Termite inspired algorithm for traffic engineering in hybrid software defined networks." PeerJ Computer Science 6 (August 17, 2020): e283. http://dx.doi.org/10.7717/peerj-cs.283.

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In the era of Internet of Things and 5G networks, handling real time network traffic with the required Quality of Services and optimal utilization of network resources is a challenging task. Traffic Engineering provides mechanisms to guide network traffic to improve utilization of network resources and meet requirements of the network Quality of Service (QoS). Traditional networks use IP based and Multi-Protocol Label Switching (MPLS) based Traffic Engineering mechanisms. Software Defined Networking (SDN) have characteristics useful for solving traffic scheduling and management. Currently the
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36

Ismail, Nanang, Eki Ahmad Zaki, and Muhamad Arghifary. "Interoperability and Reliability of Multiplatform MPLS VPN: Comparison of Traffic Engineering with RSVP-TE Protocol and LDP Protocol." CommIT (Communication and Information Technology) Journal 11, no. 2 (2017): 57. http://dx.doi.org/10.21512/commit.v11i2.2105.

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One of the alternatives to overcome network scalability problem and maintaining reliability is using MPLS VPN network. In reallity, the current network is already using a multiplatform of several different hardware vendors, i.e., Cisco and Juniper platforms. This paper discusses the comparison of the simulation results to see interoperability of multiplatform MPLS VPN andreliability through traffic engineering using RSVP-TE and LDP protocols. Both the RSVP and LDP protocols are tested on a stable network and in a recovery mode,as well as non-load conditions and with additional traffic load. Th
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37

NISHA, R., and BHANU N. USHA. "IMPLEMENTATION OF TRAFFIC ENGINEERING TECHNIQUE IN MPLS NETWORK USING RSVP." i-manager’s Journal on Wireless Communication Networks 7, no. 1 (2018): 12. http://dx.doi.org/10.26634/jwcn.7.1.15000.

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ZHENG, Zhi-Mei. "Study of Minimum Interference Routing Algorithm for MPLS Traffic Engineering." Journal of Software 17, no. 4 (2006): 814. http://dx.doi.org/10.1360/jos170814.

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39

Francois, Frederic, Ning Wang, Klaus Moessner, Stylianos Georgoulas, and Ricardo de Oliveira Schmidt. "Leveraging MPLS Backup Paths for Distributed Energy-Aware Traffic Engineering." IEEE Transactions on Network and Service Management 11, no. 2 (2014): 235–49. http://dx.doi.org/10.1109/tnsm.2014.2321839.

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40

Bosco, A., A. Botta, G. Conte, P. Iovanna, R. Sabella, and S. Salsano. "Internet like control for MPLS based traffic engineering: performance evaluation." Performance Evaluation 59, no. 2-3 (2005): 121–36. http://dx.doi.org/10.1016/j.peva.2004.07.010.

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41

Banerjee, Gargi, and Deepinder Sidhu. "Comparative analysis of path computation techniques for MPLS traffic engineering." Computer Networks 40, no. 1 (2002): 149–65. http://dx.doi.org/10.1016/s1389-1286(02)00270-0.

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42

Hsu, Wu-Hsiao, Yuh-Pyng Shieh, and Jenhui Chen. "Multiple path selection algorithm for DiffServ-aware MPLS traffic engineering." Computer Communications 33, no. 13 (2010): 1557–65. http://dx.doi.org/10.1016/j.comcom.2010.04.015.

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43

Naraghi-Pour, Mort, and Vinay Desai. "Loop-free traffic engineering with path protection in MPLS VPNs." Computer Networks 52, no. 12 (2008): 2360–72. http://dx.doi.org/10.1016/j.comnet.2008.04.015.

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44

Țurcanu, Dinu. "QUALITY OF SERVICES IN MPLS NETWORKS." Journal of Engineering Science XXVII (3) (September 15, 2020): 102–10. https://doi.org/10.5281/zenodo.3949674.

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As traffic networks have become increasingly complex, there has been a need to migrate from circuits to packet-based networks. MPLS is a promising solution for the growing number of applications that require different QoS treatments that share the same core network. This paper elucidates the role and objectives of QoS, general aspects of service quality in MPLS networks, implementation of MPLS TE network and its integration with IntServ and DiffServ, MPLS QoS applications on MPLS VPNs, as well as MPLS-TP integration with SDN, analyzing the advantages and challenges conditioned by their integra
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45

Arifin, R. Muhammad. "Method And Implementation of MPLS Tunnel Selection On Nokia Metro-E Devices." JAICT 6, no. 1 (2021): 50. http://dx.doi.org/10.32497/jaict.v6i1.2632.

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&lt;p class="AbstractL-MAG"&gt;Tunneling is an interconnection solution between local networks separated by remote over a public IP. The current issue does not have proper guidelines for using tunneling techniques. Tunneling selection is generally only based on the beliefs and experience of network management operators or following SOP. The brand of tunneling device is widely used by telecommunication operators in Indonesia (especially P. Java) is Nokia. In this study, implementation, testing and analysis of MPLS techniques on Nokia devices to produce recommendations when to use MPLS tunnels a
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46

M. Al-Quzwini, Mahmoud, and Sarmad K. Ibrahim. "Performance Evaluation of Traffic Engineering Signal Protocols in IPV6 MPLS Networks." Communications and Network 04, no. 04 (2012): 298–305. http://dx.doi.org/10.4236/cn.2012.44035.

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TAMURA, Hitomi, Kenji KAWAHARA, and Yuji OIE. "Analysis of Two-Phase Path Management Scheme for MPLS Traffic Engineering." IEICE Transactions on Communications E92-B, no. 1 (2009): 59–67. http://dx.doi.org/10.1587/transcom.e92.b.59.

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Susueno, Hendra Bayu, Imam Tri Wibowo, Siti Ummi Masruroh, Dewi Khairani, and I’im Umamil Khoiri. "Analisis Routing Protocol Is-Is Dengan MPLS Traffic Engineering Menggunakan GNS3." Jurnal Ilmiah FIFO 13, no. 1 (2021): 32. http://dx.doi.org/10.22441/fifo.2021.v13i1.004.

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In the digital era is , the internet becomes a necessity . the increasing number of internet usage by various parties encourages ISPs to improve their service quality . To overcome the problem the IETF has introduced a service Multiprotcol . MPLS-TE allows for schemes TE where the tip router of the label switched path (LSP) can calculate the many routes efficiently through the network to the router tip of the tail of the LSP. TE consists of three steps principal that is the size , model, and control . MPLS-TE allows for schemes TE where the tip router of the label switched path (LSP) can calcu
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Lim, S. H., M. H. Yaacob, K. K. Phang, and T. C. Ling. "Traffic engineering enhancement to QoS-OSPF in DiffServ and MPLS networks." IEE Proceedings - Communications 151, no. 1 (2004): 101. http://dx.doi.org/10.1049/ip-com:20040335.

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Awduche, D., and Y. Rekhter. "Multiprotocol lambda switching: combining MPLS traffic engineering control with optical crossconnects." IEEE Communications Magazine 39, no. 3 (2001): 111–16. http://dx.doi.org/10.1109/35.910598.

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