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Software-Defined Networking (SDN)×Border Gateway Protocol (BGP)×Multiprotocol Label Switching (MPLS)×
FagområdeTelekommunikationTelekommunikationTelekommunikation
FamilieProcess / pipelineProcess / pipelineProcess / pipeline
Oprindelsesår200819892001
OphavspersonNick McKeown et al.IETF Routing Protocols Working GroupIETF MPLS Working Group
Typeprogrammable network paradigmpath-vector routing protocollabel-based forwarding paradigm
Oprindelig kildeMcKeown, N., Anderson, T., Balakrishnan, H., et al. (2008). OpenFlow: enabling innovation in campus networks. ACM SIGCOMM Computer Communication Review, 38(2), 69-74. DOI ↗Rekhter, Y., Li, T., & Hares, S. (2006). A Border Gateway Protocol 4 (BGP-4). RFC 4271. link ↗Rosen, E. C., Viswanathan, A., & Callon, R. (2001). Multiprotocol Label Switching Architecture. RFC 3031. link ↗
Aliassernetwork virtualization, programmable networksexterior gateway protocol, inter-domain routinglabel switching, traffic engineering
Relaterede424
ResuméSoftware-Defined Networking (SDN) is a network architecture paradigm that decouples the control plane (routing decisions) from the data plane (packet forwarding). Introduced by McKeown et al. (2008) with OpenFlow, SDN enables network programmability by centralizing control logic in software-based controllers that direct forwarding behavior of simple programmable switches. SDN has transformed network operations, enabling rapid service deployment, traffic engineering, and cloud integration. It is now foundational in data centers and service provider networks.BGP is the de facto standard routing protocol for interconnecting autonomous systems (ASs) on the Internet. Since its introduction in 1989, BGP has scaled the Internet to millions of routers and trillions of destinations. BGP is path-vector-based, using a flexible policy system to control route propagation and selection. While BGP convergence can be slow and policies complex, it remains the only viable protocol for Internet-scale inter-domain routing.Multiprotocol Label Switching (MPLS) is a forwarding paradigm that prepends a short label to packets, enabling routers to make forwarding decisions based on the label rather than IP destination address. Introduced by IETF (2001), MPLS was designed to enable traffic engineering, VPN creation, and fast rerouting in IP networks. While MPLS complexity is high, it remains foundational in service provider backbones for traffic engineering and Quality of Service (QoS) provisioning.
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ScholarGateSammenlign metoder: Software-Defined Networking · BGP · MPLS. Hentet 2026-06-15 fra https://scholargate.app/da/compare