Preparing Resource Aggregations for FIRST Future Internet Testbed - 1 - Feb. 11 th, 2010 eFIT - Future Internet Testbed APAN Sydney Meeting Dr. JongWon.

Slides:



Advertisements
Similar presentations
All Rights Reserved © Alcatel-Lucent 2009 Enhancing Dynamic Cloud-based Services using Network Virtualization F. Hao, T.V. Lakshman, Sarit Mukherjee, H.
Advertisements

Enabling GENI Connections Quilt GENI Workshop Heidi Picher Dempsey July 22, 2010.
The Instageni Initiative
Engineering Patrick Crowley, John DeHart, Mart Haitjema, Fred Kuhns, Jyoti Parwatikar, Ritun Patney, Jon Turner, Charlie Wiseman, Mike Wilson, Ken Wong,
An Overview of Software-Defined Network Presenter: Xitao Wen.
Flow Space Virtualization on Shared Physical OpenFlow Networks Hiroaki Yamanaka, Shuji Ishii, Eiji Kawai (NICT), Masayoshi Shimamura, Katsuyoshi Iida (TITECH),
Traffic Management - OpenFlow Switch on the NetFPGA platform Chun-Jen Chung( ) SriramGopinath( )
1 In VINI Veritas: Realistic and Controlled Network Experimentation Jennifer Rexford with Andy Bavier, Nick Feamster, Mark Huang, and Larry Peterson
Virtualization: An End or a Means? Larry Peterson Princeton University
ETRI FI Projects & HiMang Taesang Choi ETRI.
Embedded Transport Acceleration Intel Xeon Processor as a Packet Processing Engine Abhishek Mitra Professor: Dr. Bhuyan.
An Overview of Software-Defined Network
Router Architectures An overview of router architectures.
Jennifer Rexford Princeton University MW 11:00am-12:20pm SDN Software Stack COS 597E: Software Defined Networking.
Router Architectures An overview of router architectures.
An Overview of Software-Defined Network Presenter: Xitao Wen.
Virtualized FPGA accelerators in Cloud Computing Systems
Sponsored by the National Science Foundation A Virtual Computer Networking Lab Mike Zink, Max Ott, Jeannie Albrecht GEC 23, June 16 th 2015.
OpenFlow/Software Defined Networks 1. Exec Summary OpenFlow/SDN enables innovations within – Enterprise, backbone, & data center networks – Represents.
Networking Virtualization Using FPGAs Russell Tessier, Deepak Unnikrishnan, Dong Yin, and Lixin Gao Reconfigurable Computing Group Department of Electrical.
Aug 20 th, 2002 Sigcomm Education Workshop 1 Teaching tools for a network infrastructure teaching lab The Virtual Router and NetFPGA Sigcomm Education.
OpenFlow: Enabling Technology Transfer to Networking Industry Nikhil Handigol Nikhil Handigol Cisco Nerd.
Specialized Packet Forwarding Hardware Feature Specialized Packet Forwarding Hardware Operating System Operating System Operating System Operating System.
An Experimental Testbed for Building Service-Based Media Applications (Outline of paper draft to be submitted in TridentCom 2010 as testbed practices.
Broadband Communication Lab. Asymmetric Path Detection in BGP Routing 29 January, 2004 Eun Mi, Park Korea Univ. Dept. of Electronics and Computer Engineering.
Brent Salisbury CCIE#11972 Network Architect University of Kentucky 9/22/ OpenStack & OpenFlow Demo.
Sponsored by the National Science Foundation Tutorial: An Introduction to OpenFlow using POX GENI Engineering Conference 20 June 2014.
DongHoon Yi 2005/ 1/ 26 Networked Media Laboratory Dept. of Information & Communications Gwang-Ju Institute of Science & Technology.
Boosting Event Building Performance Using Infiniband FDR for CMS Upgrade Andrew Forrest – CERN (PH/CMD) Technology and Instrumentation in Particle Physics.
Traffic Management - OpenFlow Switch on the NetFPGA platform Chun-Jen Chung( ) Sriram Gopinath( )
SDN Dev Group, Week 2 Aaron GemberAditya Akella University of Wisconsin-Madison 1 Wisconsin Testbed; Design Considerations.
Presented by: Sanketh Beerabbi University of Central Florida COP Cloud Computing.
VICCI: Programmable Cloud Computing Research Testbed Andy Bavier Princeton University November 3, 2011.
The Singapore Advanced Research & Education Network.
NETWORKING COMPONENTS AN OVERVIEW OF COMMONLY USED HARDWARE Christopher Johnson LTEC 4550.
Cesar Marcondes (UFSCar) FIBRE Open Workshop Salvador, 26/ FIBRE Architecture.
D EPT. OF I NFO. & C OMM., KJIST Access Grid with High Quality DV Video JongWon Kim, Ph.D. 17 th APAN Meeting /JointTech WS Jan. 29 th, 2004 Networked.
ANF Overlay Multicast Working Group Activity Joonbok Lee Computer Science Dept., KAIST
APAN-KR Overlay Multicast Working Group Activity Joonbok Lee Computer Science Dept., KAIST
Individual Summer Plan Namgon Kim Networked Media Laboratory Dept. of Information & Communications Gwangju Institute of Science & Technology (GIST)
Local-Area-Network (LAN) Architecture Department of Computer Science Southern Illinois University Edwardsville Fall, 2013 Dr. Hiroshi Fujinoki
1.  Infrastructure status  Up to 60G backbone for testing network equipment capability  10~60G backbone is deployed nationwide (6 Pops)  About 60.
Sponsored by the National Science Foundation Tutorial: OpenFlow in GENI with Instrumentation and Monitoring Divya Bhat Shufeng Huang Niky Riga GENI Project.
NetOpen Networking Service: Software-defined Networking Service on Programmable Network Substrates Namgon Kim and JongWon Kim Networked Computing Systems.
CS 4396 Computer Networks Lab Router Architectures.
Sponsored by the National Science Foundation 1 GEC16, March 21, 2013 Are you ready for the tutorial? 1.Did you do the pre-work? A.Are you able to login.
1 | © 2015 Infinera Open SDN in Metro P-OTS Networks Sten Nordell CTO Metro Business Group
SOFTWARE DEFINED NETWORKING/OPENFLOW: A PATH TO PROGRAMMABLE NETWORKS April 23, 2012 © Brocade Communications Systems, Inc.
Sponsored by the National Science Foundation A Virtual Computer Networking Lab Mike Zink, Jim Kurose, Max Ott, Jeannie Albrecht NSF Workshop on GENI in.
OpenFlow MPLS and the Open Source Label Switched Router Department of Computer Science and Information Engineering, National Cheng Kung University, Tainan,
Data Grid Plane Network Grid Plane Dynamic Optical Network Lambda OGSI-ification Network Resource Service Data Transfer Service Generic Data-Intensive.
Sponsored by the National Science Foundation A Virtual Computer Networking Lab Mike Zink, Max Ott, Jeannie Albrecht GEC 20, March 24 th 2015.
Software Defined Networking and OpenFlow Geddings Barrineau Ryan Izard.
E Virtual Machines Lecture 5 Network Virtualization Scott Devine VMware, Inc.
Grant agreement no: TNC2014, Dublin. Why do we need Hardware Abstracion Layer (HAL)? What is HAL? How HAL is validated? Architecture of the HAL.
ROD Activities at Dresden Andreas Glatte, Andreas Meyer, Andy Kielburg-Jeka, Arno Straessner LAr Electronics Upgrade Meeting – LAr Week September 2009.
Active Distributed & Dynamic Optical Network Access Systems Next Generation Access Network Łukasz Podleski (PSNC) Work in the ADDONAS project is financially.
Atrium Router Project Proposal Subhas Mondal, Manoj Nair, Subhash Singh.
An open source user space fast path TCP/IP stack and more…
Network Virtualization Ben Pfaff Nicira Networks, Inc.
SDN controllers App Network elements has two components: OpenFlow client, forwarding hardware with flow tables. The SDN controller must implement the network.
Supercharged PlanetLab Platform, Control Overview
GGF15 – Grids and Network Virtualization
Preparing Resource Aggregations for FIRST Future Internet Testbed
Informational Tutorial
NSF cloud Chameleon: Phase 2 Networking
Supercharged PlanetLab Platform, Control Overview
Reprogrammable packet processing pipeline
NetFPGA - an open network development platform
An Introduction to Software Defined Networking and OpenFlow
Presentation transcript:

Preparing Resource Aggregations for FIRST Future Internet Testbed Feb. 11 th, 2010 eFIT - Future Internet Testbed APAN Sydney Meeting Dr. JongWon Kim Networked Media Lab., Dept. of Information and Communications Gwangju Institute of Science and Technology

FIRST (Future Internet Research for Sustainable Testbed) Project Overview 2 Development of the core technology and virtualized Programmable platform for Future Internet  Period : March 2009 ~ February 2014 (5 years)  Institutions: ETRI and 5 universities Project Goal Research on the core technologies for FI platform realization - programmability, network virtualization and control framework Development of the FI platform for domestic and Int’l experimental infrastructure - for Network architecture researchers and Service architecture researcher - mid-range ATCA platform and PC-based platform

Resource Aggregations for FIRST Development of the core technology and virtualized Programmable platform for Future Internet PC-based NetOpen RA & MediaX RA ATCA-based NP RA Router Substrate H/W (ATCA based) Virtualization S/W (Xen extension) Privileged VMVM … NP Control Framework (ProtoGENI-compatible) VM Data Transport Mux NP Memory Storage Control plane 3 CPU 2 1

Future Internet Platform Development in ETRI Future Internet Research for Sustainable Testbed

Overall Architecture 5 Router Substrate H/W (ATCA based) Virtualization S/W (Xen extension) Privileged VMVM … NP Control Framework (ProtoGENI-compatible) VM Data Transport Mux NP Memory Storage Control plane 3 CPU 2 1 Control Framework - International Federation - APIs ▪ Clearinghouse APIs ▪ Slice APIs ▪ Node Manager APIs - Resource Negotiation Virtualization - Number of Max VMs - Resource Isolation - Scale-up Virtualization - Sliver Migration Substrate - Resource Specification - Resource Allocation - Resource Monitoring

Hardware Platform 6 CPU Boards Octeon NP based Line Cards 10 GbE Switch High-end FPGA pool (future) ATCA Chassis Backplane - Intel Xeon dual core - Dual 1GbE Ethernet Controller - 2 x 10/100/1000 Base-T - 16-slot 10 GbE and 100/1000 Base-T fabric switch - More than 100 Gbps of external connectivity - Non-blocking Layer 2 switching - Dual Octeon NP x 10GbE, 10x1GbE COTS blades – ATCA Octeon Network Processor for Packet Processing PC Servers with NetFPGA (future) Optical Lambda Switch (future)

7 Open Platform Substrate Architecture Model

8 GEC7 (Salt Lake City, Nov. 2009)

Service-Oriented Testbed for Future Internet Future Internet Research for Sustainable Testbed

Experimental Media-Oriented Service Composition

NetOpen (NetFPGA/OpenFlow) RA (v0.1) OpenFlow Controller Experimenter UI Experimenter ENVI KOREN/KREONET CNU POSTECH GIST IP Network NetFPGA/OpenFlow Switch OpenFlow Switch MAC in IP Tunnel End host Capsulator OpenFlow-enabled network FlowVisor OpenFlow stack NOX Core Threading, IO NOX Core Threading, IO User-defined Routing User-defined Routing LAVI NOX

MediaX RA (v0.1)

OpenCFOMX NetOpen RA & MediaX RA Platform Overview

Implementation of colored items is in progress. OMX (Open Media eXperiment for service composition) Toolkit

Agent-based Implementation for experiment control (service configuration, service composition, and service monitoring) with user interfaces for experimenter Currently being implemented to work with OMF control framework – Monitoring with OML to monitor node performance (using Sigar API for CPU/memory and NIC) OMX Toolkit – Progress

Other Openflow Efforts for Future Internet Testbed

Seoul Daejeon Deagu Busan Gwangju Suwon Fukuoka (Japan) Controller VLAN on KOREN OpenFlow Switch (Linux PC) NOX OpenFlow Controller OpenFlow-enabled Network of KOREN (KOREN OpenFlow Working Group) Chungnam Nat. Univ. 6 switches are deployed on KOREN OpenFlow switches are connected using VLAN links through Ethernet Switches of KOREN

OpenFlow Switch OpenFlow Controller Agent Server OpenFlow Switch OpenFlow Controller Agent OpenFlow Switch Setup Commands Add/Drop Flow Table Entry Web I/F Network Monitor Path Request Path Control System Developing Openflow-based Path Control OpenFlow Network can be monitored using the weather-map application of web server OpenFlow paths can be set up through web server

Seoul Daejeon Deagu Busan Gwangju Suwon Controller VLAN on KOREN OpenFlow Switch (Linux PC) NOX OpenFlow Controller TJB TJB Broadcasting Company Japan OpenFlow Network Sapporo Studio Asahi Broadcasting Cooperation (ABC) at Osaka, Japan Sapporo Japan Server Data Transmission An Experiment of OpenFlow-enabled Network (Feb Sapporo Snow Festival Video Transmission) A video clip of Sapporo snow festival is transmitted to TJB (Daejeon, KOREA) via ABC server (Osaka, JAPAN).

Thank you! Send Inquiry to Future Internet Research for Sustainable Testbed