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How UKLight was Built Dr. John S. Graham University of London Computer Centre.

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Presentation on theme: "How UKLight was Built Dr. John S. Graham University of London Computer Centre."— Presentation transcript:

1 How UKLight was Built Dr. John S. Graham University of London Computer Centre

2 SuperJANET4 North Wales MAN LeNSESWERN Kentish MAN NorMAN YHMAN EMMAN EastNet LMN South Wales MAN TVN MidMAN Northern Ireland NNW C&NL MAN GlasgowEdinburgh WarringtonLeeds ReadingLondon BristolPortsmouth EaStMAN UHI Network Clydenet AbMAN FaTMAN

3 UKLight Topology

4 CoreDirector and MetroDirector K2

5 CN3616

6 Hybrid Optical/Packet Networks IP EthernetHDLC 10 G LAN PHY10 G WAN PHY1 G PHY SDH (G.707) Optical Fibre GFP (G.7041) packetpacket o p ti c a l

7 Ethernet vs TDM FeatureEthernetSDH Guaranteed QOSNo (Packet Switched)Yes (Circuit Switched) Performance Monitoring CRC CountBER ProtectionNone (STP?)APS Fault LocationNoneAIS Access CostsLowHigh

8 Time Division Multiplexing A  Z:1 E  Z:1 E D C B A MUX E D C B A Z 13458 Z 762

9 SDH Network Elements Line TerminatingPath Terminating ADM STM-n DXC STM-n Terminal ADM STM-n PDH Ethernet ATM

10 SDH Model R R ADM DXC ADM Path Layer Connection Line Layer Section Layer

11 Basic SDH Frame Section Line PTR SPE 3 5 27091 Payload Capacity = 2340 Bytes = 149.76 Mb/s

12 Larger SDH Frames VC-4155 Mb/s 150 Mb/s VC-4-4622 Mb/s 600 Mb/s VC-4-4c622 Mb/s 600 Mb/s

13 Provisioning Example A D B E C F 3 - 5 7 9 10 -12 1 ??? STM-4 1 – 12(622 Mb/s)

14 Bandwidth Fragmentation VC-4 Drop Interface (Node F) Ring 268 Blocked! STM-1 STM-4

15 Virtual Concatenation (VCAT) VC-4 Drop Interface (Node F) Ring 268 STM-1 STM-4 VC-3-3v

16 The Magic of VCAT Protocol Client Rate Contiguous Concatenation Virtual Concatenation Ethernet10VC-320%VC-11-7v89% Fast Ethernet100VC-467%VC-3-2v99% Gigabit Ethernet1000VC-4-16c42%VC-4-7v95% ESCON160VC-4-4c26%VC-3-4v83% Fibre Channel 21700VC-4-16c71%VC-4-12v95% ATM25VC-350%VC-11-16c98%

17 GFP: Functional Model Source = IEEE Communications Magazine, May 2002

18 GFP: Frame Structure Source = IEEE Communications Magazine, May 2002

19 Ethernet  GFP  SDH Preamble SFD Destination Source Length/Type Data FCS Core Header Payload Header GFP Payload FCS Path Overhead PTR 1 2 Ethernet Frame GFP Frame SONET/SDH Frame

20 GFP: Frame Delineation PayloadPLIcHECPLIcHECPayload PLIcHECPayloadPLIcHECPayloadPLIcHEC PayloadPLIcHEC

21 GFP: Synchronization HuntPresync Sync cHEC Mismatch 2 nd cHEC Match cHEC Match No 2 nd cHEC Match cHEC Match No CHEC Match

22 International Lightpath Peering Peering at Ethernet Layer –Use non-blocking switch as a DXC –Multiple patch cords Peering at SDH Layer –Single physical connection

23 International Testbed HOPnets VIOLA Project (DFN) –http://www.viola-testbed.de/http://www.viola-testbed.de/ HOPI (Internet2) –http://networks.internet2.edu/hopi/http://networks.internet2.edu/hopi/


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