GMPLS OSPF-TE Extensions in support of Flexible-Grid in DWDM Networks

Slides:



Advertisements
Similar presentations
CCAMP WG, IETF 80th, Prague, Czech Republic draft-gonzalezdedios-subwavelength-framework-00 Framework for GMPLS and path computation support of sub-wavelength.
Advertisements

Flexible Grid Label Format in Wavelength Switched Optical Network
Page th IETF – Stockholm, Sweden, July 2009 WSON Signal Characteristics and Network Element Compatibility Constraints for GMPLS Greg
CCAMP WG, IETF 76th, Hiroshima, Japan draft-zhang-ccamp-gmpls-evolving-g txt Fatai Zhang Guoying Zhang Sergio Belotti Daniele Ceccarelli GMPLS Signaling.
RSVP-TE Extensions for SRLG Configuration of FA
OSPF-TE extensions for GMPLS Control of Evolving G.709 OTN draft-ceccarelli-ccamp-gmpls-ospf-g709-02/03 CCAMP WG, IETF 78 th Maastricht.
OSPF Extensions in Support of RWA in WSONs CCAMP WG, IETF 76th, Hiroshima, Japan draft-zhang-ccamp-rwa-wson-routing-ospf-02.txt Fatai Zhang
PCEP extensions for GMPLS
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.
OSPF Extensions in support of O-E-O pools in GMPLS controlled all-optical networks draft-peloso-ccamp-wson-ospf-oeo-01 Pierre Peloso, Julien Meuric, Giovanni.
CCAMP WG, IETF 78th, Maastricht, Netherlands draft-agraz-ccamp-wson-impairment-ospf-00.txt Fernando Agraz Yabin Ye
Page th IETF – Anaheim, California, March 2010 Signaling Extensions for Wavelength Switched Optical Networks draft-bernstein-ccamp-wson-signaling-06.txt.
OSPF-TE extensions for GMPLS Control of Evolutive G.709 OTN
Requirement and protocol for WSON and non-WSON interoperability CCAMP WG, IETF 81th, Quebec City, Canada draft-shimazaki-ccamp-wson-interoperability-00.
OSPF-TE extensions for GMPLS Control of Evolving G.709 OTN draft-ietf-ccamp-gmpls-ospf-g709v3-00 CCAMP WG, IETF 82 nd Taipei.
Page th IETF – Vancouver, December 2007 Framework for GMPLS and PCE Control of Wavelength Switched Optical Networks (WSON) & RWA Information for.
82 nd IETF – Taipei, Taiwan, November 2011 GMPLS OSPF Enhancement for Signal and Network Element Compatibility for Wavelength Switched Optical Networks.
82 nd IETF – Taipei, Taiwan, November 2011 PCEP Extension for WSON Routing and Wavelength Assignment Young Lee (Huawei) Ramon Casellas (CTTC) Fatai Zhang.
CCAMP WG, IETF 76th, Hiroshima, Japan draft-zhang-ccamp-gmpls-g709-framework-00.txt Fatai Zhang Dan Li Jianrui.
Standardisation Activities on Felxigrid – ECOC 2013 – London, September Standardisation Activities on Flexigrid Adrian Farrel - Old Dog Consulting.
Information model for G.709 Optical Transport Network (OTN) draft-bccg-ccamp-otn-g709-info-model-01 CCAMP WG, IETF 78 th Maastricht.
OSPF-TE extensions for GMPLS Control of Evolving G.709 OTN draft-ceccarelli-ccamp-gmpls-ospf-g CCAMP WG, IETF 79 th Beijing.
OSPF-TE extensions for GMPLS Control of Evolving G.709 OTN draft-ceccarelli-ccamp-gmpls-ospf-g CCAMP WG, IETF 81 th Quebec City.
CCAMP WG, IETF 79th, Beijing, China draft-zhang-ccamp-gmpls-evolving-g txt GMPLS Signaling Extensions for the Evolving G.709 OTN Control Fatai Zhang.
1 Framework for GMPLS based control of Flexi-grid DWDM networks draft-ogrcetal-ccamp-flexi-grid-fwk-02 CCAMP WG, IETF 86 Oscar González de Dios, Telefónica.
OSPF extensions for supporting spectrum sub-band allocation draft-wang-ccamp-flexigrid-wavelength-range-ospf-02 Qilei Wang Xihua.
Generalized Label for Super-Channel Assignment on Flexible Grid Iftekhar Hussain Abinder Dhillon
OSPF-TE Extensions for Flex-grid Abinder Dhillon Iftekhar Hussain
82 nd IETF – Taipei, Taiwan, November 2011 Extensions to Path Computation Element Communication Protocol (PCEP) for Hierarchical Path Computation Elements.
Evaluation of Possible IGP Extensions for WSON CCAMP WG, IETF 70th Vancouver, Canada draft-li-ccamp-wson-igp-eval-00.txt Dan Li Jianhua.
Page th IETF – Vancouver, December 2007 Signaling Extensions for Wavelength Switched Optical Networks Greg
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.
CCAMP WG, IETF 75th, Stockholm, Sweden draft-zhang-ccamp-gmpls-evolving-g txt Fatai Zhang Guoying
2015/12/261 Lambda Labels Lambda Labels draft-otani-ccamp-gmpls-lambda-labels-01 Tomohiro Otani (KDDI R&D Labs) Hongxiang Guo (KDDI R&D Labs) Keiji Miyazaki.
79th IETF – Beijing, November 2010 OSPF Enhancement for Signal and Network Element Compatibility for Wavelength Switched Optical Networks Young
1 Framework for GMPLS based control of Flexi-grid DWDM networks draft-ogrcetal-ccamp-flexi-grid-fwk-02 CCAMP WG meeting, IETF 87 Oscar González de Dios,
PCEP extensions for GMPLS CCAMP WG, IETF 79th, Beijing, China draft-ietf-pce-gmpls-pcep-extensions-01 Cyril Margaria Nokia Siemens Networks Oscar González.
Giovanni Martinelli, Cisco (*) Gabriele Galimberti, Cisco
SNMP MIBs to manage G parameters
GMPLS Signaling Extensions for G
Service Provider Requirements for Ethernet Control with GMPLS
CCAMP Working Group Status
Framework for GMPLS based control of Flexi-grid DWDM networks draft-ogrcetal-ccamp-flexi-grid-fwk-01 CCAMP WG, IETF 85 Oscar González de Dios, Telefónica.
77th IETF – Anaheim, California, March 2010
ASON routing implementation and testing ASON routing extensions
IETF 97th CCAMP Working Group Online Agenda and Slides at:
Applicability of GMPLS and PCE to Wavelength Switched Optical Networks
CCAMP WG Meeting IETF 58 - Minneapolis - Nov’03
GMPLS Signaling Extensions for the Evolving G.709 OTN Control
OSPF Link Information Model for WSON
Protection & Restoration Design Team - CCAMP WG
OSPF Enhancement for Signal and Network Element Compatibility for Wavelength Switched Optical Networks
Guard Bands requirements for GMPLS controlled optical networks
OSPF Extensions for ASON Routing draft-ietf-ccamp-gmpls-ason-routing-ospf-03.txt IETF67 - Prague - Mar’07 Dimitri.
Explicitly advertising the TE protocols enabled on links in OSPF
PLR Designation in RSVP-TE FRR
Iftekhar Hussain (Presenter),
Explicitly advertising the TE protocols enabled on links in ISIS
YANG data model for Flexi-Grid Optical Networks
GMPLS Routing and Signaling Framework for Flexible Ethernet (FlexE) draft-izh-ccamp-flexe-fwk-03 Authors Iftekhar Hussain Radha.
draft-ggalimbe-ccamp-flexigrid-carrier-label-02
CCAMP Working Group IETF 102 Montreal
YANG data model for Flexi-Grid Optical Networks
Y. Lee, D. Dhody, X. Zhang, A. Guo (Huawei)
RSVP-TE Extension for Beyond 100G Signal Types in G
FlexE Design Team Presenter: Mach
Signaling Extensions for Wavelength Switched Networks
YANG data model for Flexi-Grid Optical Networks
PCEP extensions for GMPLS
Giovanni Martinelli, Julien Meuric, Pierre Peloso
Presentation transcript:

GMPLS OSPF-TE Extensions in support of Flexible-Grid in DWDM Networks CCAMP WG, IETF 82nd, Taipei, Taiwan draft-zhang-ccamp-flexible-grid-ospf-ext-00.txt Fatai Zhang (zhangfatai@huawei.com) Xiaobing Zi (zixiaobing@huawei.com) Ramon Casellas (ramon.casellas@cttc.es) O. Gonzalez de Dios (ogondio@tid.es) D. Ceccarelli (daniele.ceccarelli@ericsson.com)

Objective Defines OSPF-TE extensions in support of GMPLS control for Flexible-Grid

What information to be advertised? WSON related information (except wavelength availability) (See [draft-ietf-ccamp-rwa-info-13]) (old) Node info: Connectivity Matrix, Signal Compatibility (FEC Type, Modulation Type, Resource Pool…) (old) Link info: Administrative Group, SRLG, Link Protection Type, TE Metric, Port Restrictions… (new) Available Frequency Ranges of each link (Link information) This is the significant difference between WSON(fixed grid) and flexi-grid. See next slide. This draft focuses on this information.

Compared to WSON … -4 -3 -2 -1 1 2 3 4 ... … -9 -8 -7 -6 -5 -4 -3 -2 193.1 THz … -4 -3 -2 -1 1 2 3 4 ... DWDM link 50 GHz fixed Channel Spacing λ-4 λ-3 λ-2 λ-1 λ0 λ1 λ2 λ3 WSON (Fixed Grid): each wavelength has a pre-defined central frequency and all the wavelengths occupy the same frequency range (channel spacing)(one of 12.5GHz,25GHz, 50GHz, 100GHz). All the wavelengths in the DWDM links can be identified uniquely and the status (available or not) of the wavelengths can be advertised. … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 ... DWDM link Flexible Grid Flexi-LSP1: Frequency Slot 1 (37.5 GHz width) Flexi-LSP2: Frequency Slot 2 (50 GHz width) Flexi-Grid: the slot width of the wavelengths are flexible on a flexible-grid DWDM link (ie. the slot width is uncertain before a frequency slot is allocated), so the available frequency ranges instead of the specific "wavelengths" should be advertised

Available Frequency Ranges 193.1 THz … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 ... DWDM link Available Frequency Range 1 Available Frequency Range 2 Used The available resource (ie., available frequency ranges) of each Flexi-Grid link MUST be advertised. Note: The frequency slots of the LSC flexi-LSPs on a fiber must not overlap with each other, so the frequency slots of the existing flexi-LSPs are unavailable frequency ranges for other flexi-LSPs.

Extensions The Available Labels Set sub-TLV defined in [GEN-OSPF] is re-used to advertise the available frequency ranges for the flexible-grid DWDM links. 0 1 2 3 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ |2 or 3 | Num Labels(not used) | Length | | Start Label | | End Label | Action=2,3 means inclusive or exclusive Available Labels Set sub-TLV (Inclusive/Exclusive Label Range) 0 1 2 3 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ |Grid | C.S. | Identifier | n | Label format defined in [flexible-grid-rsvp-te-ext] No “m”, because the value of “m” is uncertain before a frequency slot is allocated

Example 1: Exclusive … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 193.1 THz … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 ... DWDM link Unavailable Frequency Range 1 Unavailable Frequency Range 2 <Available Labels> sub-TLV: Exclusive Range 1: [Start label = 193.1 + (-8)*0.00625, End Label = 193.1 + (-2)*0.00625] Exclusive Range 2: [Start label = 193.1 + 0*0.00625, End Label = 193.1 + 8*0.00625] A frequency slot of a flexi-LSP is determined by the central frequency and slot width : Lowest frequency = (central frequency) - (slot width)/2 = (193.1 + n * 0.00625) - (0.0125 * m)/2 = (193.1 + (n - m) * 0.00625) THz; Highest frequency = (central frequency) + (slot width)/2 = (193.1 + n * 0.00625) + (0.0125 * m)/2 = (193.1 + (n + m) * 0.00625) THz;

Example 2: Inclusive … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 193.1 THz … -9 -8 -7 -6 -5 -4 -3 -2 -1 1 2 3 4 5 6 7 8 9 ... DWDM link Available Frequency Range 1 Available Frequency Range 2 <Available Labels> sub-TLV: Inclusive Range 1: [Start label = 193.1 + (-8)*0.00625, End Label = 193.1 + (-2)*0.00625] Inclusive Range 2: [Start label = 193.1 + 0*0.00625, End Label = 193.1 + 8*0.00625]

Open Discussions How to deal with bandwidth (bit rate in bps) per priority and other bandwidth sub-TLV(e.g., Unreserved Bandwidth, Maximum Bandwidth…)? It seems that the bandwidth in bps is meaningless in flex-grid (fixed-grid as well ?) The only resource is the available frequency ranges on each link Your opinions? Does it need to define a new switching type for flexi-grid(ie., different from WSON)? Not quite sure

Next Steps Coordinate with WSON work Refine it according to the feedback from the meeting or mailing list