2004Unpublished venueRequires access

GMPLS and IP+MPLS interworking technologies - routing and signaling

Daisaku Shimazaki, Eiji Oki, Kohei Shiomoto, Naoaki Yamanaka

Open publisher page 5 citations

Abstract

When nodes that support generalized multi-protocol label switching (GMPLS) are introduced into existing networks the GMPLS nodes co-exist with conventional Internet protocol (IP) and multi-protocol label switching (MPLS) (IP+MPLS) nodes that do not support GMPLS. In this case, the GMPLS nodes must interwork with IP+MPLS nodes. This paper proposes an architecture for GMPLS and IP+MPLS interworking based on extended routing and signaling. In the extended routing, information about some nodes and links in a GMPLS network emulates information that can be understood by IP+MPLS nodes. The emulated information is advertised to the IP+MPLS network. In the extended signaling, MPLS signaling packets are forwarded to the GMPLS data plane. An MPLS label switched path (LSP) is established through a GMPLS LSP tunnel. As a result, the IP+MPLS network can interwork with the GMPLS network without upgrading the IP+MPLS nodes. We developed GMPLS prototype nodes that support this interworking architecture and show interworking experimental results.

About this research paper

What this paper is about

When nodes that support generalized multi-protocol label switching (GMPLS) are introduced into existing networks the GMPLS nodes co-exist with conventional Internet protocol (IP) and multi-protocol label switching (MPLS) (IP+MPLS) nodes that do not support GMPLS. In this case, the GMPLS nodes must interwork with IP+MPLS nodes. This paper proposes an architecture for GMPLS and IP+MPLS interworking based on extended routing and signaling. In the extended routing, information about some nodes and links in a GMPLS network emulates information that can be understood by IP+MPLS nodes. The emulated information is advertised to the IP+MPLS network. In the extended signaling, MPLS signaling packets are forwarded to the GMPLS data plane. An MPLS label switched path (LSP) is established through a GMPLS LSP tunnel. As a result, the IP+MPLS network can interwork with the GMPLS network without upgrading the IP+MPLS nodes. We developed GMPLS prototype nodes that support this interworking architecture and show interworking experimental results.

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Available abstract

When nodes that support generalized multi-protocol label switching (GMPLS) are introduced into existing networks the GMPLS nodes co-exist with conventional Internet protocol (IP) and multi-protocol label switching (MPLS) (IP+MPLS) nodes that do not support GMPLS. In this case, the GMPLS nodes must interwork with IP+MPLS nodes. This paper proposes an architecture for GMPLS and IP+MPLS interworking based on extended routing and signaling. In the extended routing, information about some nodes and links in a GMPLS network emulates information that can be understood by IP+MPLS nodes. The emulated information is advertised to the IP+MPLS network. In the extended signaling, MPLS signaling packets are forwarded to the GMPLS data plane. An MPLS label switched path (LSP) is established through a GMPLS LSP tunnel. As a result, the IP+MPLS network can interwork with the GMPLS network without upgrading the IP+MPLS nodes. We developed GMPLS prototype nodes that support this interworking architecture and show interworking experimental results.

Key concepts: Multiprotocol Label Switching, Computer network, Label switching, Optical IP Switching, Virtual routing and forwarding, Computer science, Label Distribution Protocol, Automatically switched optical network

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