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Contention resolution and label switching in optical multiprotocol label switching networks
2005The last decade has witnessed an explosive growth in internet protocol, packet based traffic. Although long-haul fiber backbone networks provide capacities on the order of Tb/s, a bottleneck at the access network has arisen due to electronic domain signal processing.
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APLS: active protocol label switching
IEEE International Conference on Communications, 2003. ICC '03., 2004The current trend of increasing accessibility and reachability of the Internet has resulted in many new services at the application layer. The potential growth of services on the Internet is only restricted by the network technologies that realize the Internet.
William Lau, Sanjay K. Jha
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On loop control in multiprotocol label switching
Proceedings ITCC 2003. International Conference on Information Technology: Coding and Computing, 2004MPLS has been enhanced with the capability to precisely engineer traffic tunnels to avoid congestion and utilize all available bandwidth in an efficient manner. The distributed fashion of setting up the labels and formation of data tunnels for the assigned FEC (forwarding equivalence class) is a highly sophisticated mechanism, involving great dexterity
Vasu Jolly, Shahram Latifi
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Label switching and IP version 6
Proceedings 7th International Conference on Computer Communications and Networks (Cat. No.98EX226), 2002This paper discusses how the strict hierarchical address structure of IP version 6 and high levels of IP route aggregation will effect the operation of popular label switching techniques. We predict that the introduction of IP version 6 will cause significant problems with control driven label switching proposals such as MPLS and Tag Switching.
Paul Boustead +3 more
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MPLS+ : a scalable label switching network
GLOBECOM'01. IEEE Global Telecommunications Conference (Cat. No.01CH37270), 2002We introduce MPLS+, an extension to multiprotocol label switching (MPLS) that improves the scalability of MPLS networks by allowing any node on an MPLS path to send labeled packets to any downstream node, and not only to the one node at the end of the path.
Shai Benjamin, Izhak Rubin
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Label switching over IEEE802.15.4e networks
Transactions on Emerging Telecommunications Technologies, 2013ABSTRACTAn open issue still to be addressed in low‐power lossy networks (LLNs) is how the application requirements, the available transport services, the network layer routes, and the data link‐layer resources are mapped efficiently. This can be explained by the fact that, in most LLNs, link‐layer resources cannot be easily managed; this results in a ...
Antoni Morell +3 more
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2003
MPLS introduces connection orientation and packet switching in IP networks. IP datagrams are forwarded by MPLS routers along pre-established paths, based on a short label. This reduces the amount of routing computations, which are carried out only at the times of setting up new paths.
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MPLS introduces connection orientation and packet switching in IP networks. IP datagrams are forwarded by MPLS routers along pre-established paths, based on a short label. This reduces the amount of routing computations, which are carried out only at the times of setting up new paths.
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Designing multiprotocol label switching networks
IEEE Communications Magazine, 2001Multiprotocol label switching adds to the capabilities of IP networks in several ways. Despite new capabilities, MPLS technology has much in common with ordinary IP networks. In turn, the design process for MPLS networks has much in common with the design of any IP network.
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