A Framework for Management and Control of Optical Interfaces supporting G.698.2 draft-kunze-g-698-2-management-control-framework-00 Ruediger Kunze Manuel.

Slides:



Advertisements
Similar presentations
Achieving Seamless IP Optical Network Integration OIF Interoperability Update Amy Wang, Avici Systems.
Advertisements

Geneva, 27 May 2010 Types and Characteristics of Packet Transport Network (PTN) Equipment (Draft Recommendation - G.ptneq) Jia He and Hilmar Hofmann G.ptneq.
CCAMP WG, IETF 80th, Prague, Czech Republic draft-gonzalezdedios-subwavelength-framework-00 Framework for GMPLS and path computation support of sub-wavelength.
LS293 - Request for G-ACh channel codepoint to support traditional transport environment and: draft-tsb-mpls-tp-ach-ptn Presented by: Malcolm Betts
Page th IETF – Stockholm, Sweden, July 2009 WSON Signal Characteristics and Network Element Compatibility Constraints for GMPLS Greg
ITU-T/OIF Report IETF 76 – Hiroshima – Nov09 L. Ong (Ciena) Thanks to Malcolm Betts & Kam Lam for ITU- T slides.
Page th IETF – Stockholm, July 2009 A Framework for the Control and Measurement of Wavelength Switched Optical Networks (WSON) with Impairments.
IETF 77, Maastricht, Netherlands, July 25-30, 2010Page - 1 Information Modele Electro-Optical Multi- Layer G.709 network draft-xie-ccamp-multi-elec-opt-network-ext-req-00.
1 Introducing the Specifications of the Metro Ethernet Forum.
G : DCM Signaling Mechanism Using GMPLS RSVP-TE ITU-T Workshop on IP-Optical, Chitose, Japan 7/11/2002 Dimitrios Pendarakis, Tellium, Inc. ITU-T.
Optical Control Plane Activities in IETF and OIF L. Ong 9 July 2002 L. Ong 9 July 2002
The IETF Needs You! IETF Standards Participation Invitation to the Middle East Moustafa Kattan, Cisco, Osama.
LMP G parameters draft-dharinigert-ccamp-g lmp-09.txt Gabriele Galimberti Cisco Systems Zafar Ali Cisco Systems Ruediger KunzeDeutsche Telekom.
Page th IETF – Orlando, FL, March 2013 Information Model for Impaired Optical Path Validation Greg BernsteinGrotto Networking Young Lee Huawei Xian.
Extension to the Link Management Protocol (LMP/DWDM - rfc4209) for Dense Wavelength Division Multiplexing (DWDM) Optical Line Systems draft-dharinigert-ccamp-g lmp-05.txt.
Abstraction and Control of Transport Networks (ACTN) BoF
Extension to LDP-VPLS for Ethernet Broadcast and Multicast draft-delord-l2vpn-ldp-vpls-broadcast-exten-03 Presenter: Zhihua Liu, China Telecom IETF79,
A Framework for Management and Control of Optical Interfaces supporting G draft-kunze-g management-control-framework-02 March rd IETF.
78 IETF, Maastricht, Netherlands
Valentino Cavalli Workshop, Bad Nauheim, June Ways and means of seeing the light Technical opportunities and problems of optical networking.
Framework for Black Link Management and Control draft-kunze-black-link-management-framework-00 Ruediger KunzeDeutsche Telekom March th IETF Prague1.
Intorduction to Lumentis
OPTICALINTERNETWORKINGFORUM OIF Technical Committee and Its Activities Joe Berthold, Ciena, Technical Committee Chair.
NEMO Requirements and Mailing List Discussions/Conclusions T.J. Kniveton - Nokia Pascal Thubert - Cisco IETF 54 – July 14, 2002 Yokohama, Japan.
SNMP MIBs to manage G parameters for Dense Wavelength Division Multiplexing (DWDM) Optical Line Systems draft-galikunze-ccamp-g snmp-mib-06.txt.
1 Path-decoupled signaling - towards a BOF in SF NSIS working group context Path-decoupled signalling - definition –Path-oriented.
Page rd IETF – Minneapolis, MN, November 2008 A Framework for the Control and Measurement of Wavelength Switched Optical Networks (WSON) with Impairments.
OSPF-TE Extensions for WSON-specific Network Element Constraints draft-peloso-ccamp-wson-ospf-oeo-02 Giovanni Martinelli, Julien Meuric, Pierre Peloso.
OIF NNI: The Roadmap to Non- Disruptive Control Plane Interoperability Dimitrios Pendarakis
Page th IETF – San Francisco, CA, March 2009 A Framework for the Control and Measurement of Wavelength Switched Optical Networks (WSON) with Impairments.
Models to manage G parameters 1.draft-galikunze-ccamp-g snmp-mib-09.txt 2.draft-dharinigert-ccamp-g lmp-08.txt 3.draft-dharini-netmod-g yang-01.txt.
Contribution Number: oif Working Group: Architecture & Signaling Title: Project proposal for interworking of G RFC 3473 network domains.
1 Recommendations Now that 40 GbE has been adopted as part of the 802.3ba Task Force, there is a need to consider inter-switch links applications at 40.
Extension to the Link Management Protocol (LMP/DWDM - rfc4209) for Dense Wavelength Division Multiplexing (DWDM) Optical Line Systems draft-dharinigert-ccamp-g lmp-02.txt.
Framework for G.709 Optical Transport Network (OTN) draft-ietf-ccamp-gmpls-g709-framework-05 CCAMP WG, IETF 82 nd Taipei.
Base Specification for Multicast in BGP/MPLS VPNs draft-raggarwa-l3vpn-2547-mvpn-00.txt Rahul Aggarwal Juniper Networks.
Page th IETF – Chicago, July 2007 Applicability of GMPLS and PCE to Wavelength Switched Optical Networks Greg
1 MPLS Architectural Considerations for a Transport Profile ITU-T - IETF Joint Working Team Dave Ward, Malcolm Betts, ed. April 16, 2008.
1 The Features of the IoT and Some Extension Considerations China Communications Standards Association Subin Shen 21th meeting CJK.
SNMP MIBs to manage G parameters draft-galikunze-ccamp-g snmp-mib-00.txt Former draft-galimbe-kunze-g snmp-mib-02.txt Gabriele Galimberti.
Extension to the Link Management Protocol (LMP/DWDM - rfc4209) for Dense Wavelength Division Multiplexing (DWDM) Optical Line Systems draft-dharinigert-ccamp-g lmp-07.txt.
79th IETF – Beijing, November 2010 OSPF Enhancement for Signal and Network Element Compatibility for Wavelength Switched Optical Networks Young
SNMP MIBs to manage Black Links networks draft-galimbe-kunze-black-link-mib-00.txt Gabriele Galimberti Cisco Ruediger KunzeDeutsche Telekom March 2011.
Mutually Exclusive Link Group (MELG) draft-beeram-ccamp-melg-01.txt Vishnu Pavan Beeram (Ed), John Drake, Gert Grammel [Juniper Networks] Igor Bryskin.
Framework for DWDM interface Management and Control draft-kdkgall-ccamp-dwdm-if-mng-ctrl-fwk-01 Ruediger KunzeDeutsche Telekom Gabriele Galimberti Cisco.
ITU Liaison on T-MPLS Stewart Bryant
CCAMP Working Group Online Agenda and Slides at: Data tracker:
Problem Statement Controlling pre-standard coherent Optical Interfaces
SNMP MIBs to manage G parameters
draft-dharinigert-ccamp-g lmp-10
SNMP MIBs to manage G parameters
Applicability of GMPLS and PCE to Wavelength Switched Optical Networks
IETF 78th Maastricht, Netherlands, July 2010
73rd IETF – Minneapolis, MN, November 2008
draft-dharini-ccamp-dwdm-if-param-yang-00
OSPF Enhancement for Signal and Network Element Compatibility for Wavelength Switched Optical Networks
Presented by Fabio Bigi Workshop Coordinator
draft-dharinigert-ccamp-dwdm-if-lmp-06
The University of Adelaide, School of Computer Science
Zhenbin Li, Shunwan Zhuang Huawei Technologies
Framework for DWDM interface Management and Control
A YANG model to manage the optical interface parameters for an external transponder in a WDM network draft-dharini-ccamp-dwdm-if-param-yang-01
Framework for DWDM interface Management and Control
YANG data model for Flexi-Grid Optical Networks
The University of Adelaide, School of Computer Science
draft-dharinigert-ccamp-dwdm-if-lmp-07
János Farkas, Balázs Varga, Rodney Cummings, Jiang Yuanlong
YANG data model for Flexi-Grid Optical Networks
Giovanni Martinelli, Julien Meuric, Pierre Peloso
draft-ggalimbe-ccamp-flex-if-lmp-07
Presentation transcript:

A Framework for Management and Control of Optical Interfaces supporting G draft-kunze-g management-control-framework-00 Ruediger Kunze Manuel Paul Deutsche Telekom July st IETF Quebec1

Motivation Define a Framework for the Control and Management of Optical Interfaces according to the Black Link approach – Develop Enhancements for Control & Management to leverage the Black Link approach in carrier networks in large-scale – Use Case: Improved Interworking between third party systems e.g. Router DWDM Router – Support Status-Quo as well as future network management and control concepts – Black Link according to ITU-T G provides options to deploy Optical Interfaces in a WDM network – currently defined up to 10G – being extended by ITU-T for 40G, 100G and beyond – primarily intended for metro applications (i.e. up to 600km reach)

Recap: G in a colored Nutshell Black Link: The Black Link approach [ITU-T G.698.2] allows supporting an optical transmitter/receiver pair of one or different vendors to inject an Optical Channel (OCh) and transfer it over a DWDM network composed of amplifiers and add-drop multiplexers from a different vendor. Therefore the standard defines the ingress and egress parameters at the reference points Ss and Rs. G provides an optical interface specifications towards the realization of transversely compatible dense wavelength division multiplexing (DWDM) systems primarily intended for metro applications which include optical amplifiers." => towards "multivendor DWDM optical transmission networks"

Document Scope and Perspective Solutions for Control and Management of Optical Interfaces – Operational Scenarios and Uses Cases – Requirements for Black Link deployments Interoperable Control and Management Solutions required – Supporting multivendor transverse interoperability DWDM networking – Considering just one optical network operator (i.e. one administrative domain) – Data Plane under consideration is well-defined and standardized (ITU-T G.698.2) – IETF work focuses on the control and management aspects for the optical interface / optical system (excluding active optical components) WSON work is complementary Alignment with work going forward in ITU-T

Solution initially in Focus Tp – Transponder (eliminated) EMS – Element Management System NMS – Network Management System Optimized interconnection of client nodes to the optical transport network, being all in the same administrative domain (intra-domain)

Current Status & Modifications Presented first time at the last meeting in Prague Feedback from the WG chairs – Renaming the document – Base management and control extensions on existing ITU-T standards Work introduced to and discussed with ITU-T Addressed the feedback from the working group and from ITU-T

ITU-T Discussion Results Black Link contributions for the recent ITU-T Chicago interim – General proposal to progress BL work in ITU-T Q9, Q12, Q14 of SG15; beyond optical specifications being in the works by Q6 – Equipment Functions, Architecture & Features of Black Links (Q9, Q12) – Protocol neutral Black Link Management models (Q14) Black Link will be subject of next SG15 Plenary Coordination Meeting Clarifications from ITU-T discussions for the IETF activities – Documents at IETF will focus on the management and control of optical interfaces based on existing ITU-T standards (ITU-T G.698.2) – Management of the WDM network part of Black Links is out of scope

Next Steps Proposal to home/base this work in CCAMP, along with related Black Link work at ITU-T Feedback from Operators and Vendors invited – Requirements – Use cases and deployment scenarios Progress work on Use Cases and Requirements Corresponding MIB document in progress