GMPLS and IP+MPLS interworking technologies - routing and signaling
Daisaku Shimazaki, Eiji Oki, Kohei Shiomoto, Naoaki Yamanaka
Abstract
Daisaku Shimazaki, Eiji Oki, Kohei Shiomoto, Naoaki Yamanaka
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.
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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