1 / 1

CRON: Cyber-infrastructure for Reconfigurable Optical Networks

CRON: Cyber-infrastructure for Reconfigurable Optical Networks PI: Seung-Jong Park, co-PI: Rajgopal Kannan GRA: Cheng Cui, Lin Xue, Mohammed Azad, P. Kondicoppa , and Chase Pierson Computer Science and Center for Computation & Technology. Introduction of CRON. Federation of CRON with GENI.

imaran
Download Presentation

CRON: Cyber-infrastructure for Reconfigurable Optical Networks

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. CRON: Cyber-infrastructure for Reconfigurable Optical Networks PI: Seung-Jong Park, co-PI: Rajgopal Kannan GRA: Cheng Cui, Lin Xue, Mohammed Azad, P. Kondicoppa, and Chase Pierson Computer Science and Center for Computation & Technology • Introduction of CRON Federation of CRON with GENI Experimental Results(Y-shape topology) • Aggregated throughput between flows reaching 9Gbps • What is CRON? • Experimental Networking Testbed for 10Gbps High Speed Networks • Motivation of CRON • Challenges of experimentation over 10Gpbs production networks • Scarce and expensive resources • Limited access for network researchers • Interference to other production level traffic • uncontrollable networking environments • Horizontal Federation CRON with ProtoGENI@BBN • Emulab-based Component Manager & Slice Authority • Receiving user credentials • Register a slice at the Clearinghouse@Utah • Resource reservation between component managers • Creating slivers • Exchanging RSpec • Internet2 connection between CRON and ProtoGENI@BBN • Creating a vlan with ION service of Internet2 • (LONI : www.loni.bato.dcn.internet2.edu) • CRON Infrastructure • Goal : Bridging the gap between physical Networks and large scale • scientific research • Objectives : (1) Developing virtually shared 10Gbps networking and • high-end computing resources and • (2) Enabling large scale scientific experiments to share • CRON without mutual interference • Vertical Federation CRON with OnTimeMeasure@OSU • Integrating the OnTimeMeasure sliver on CRON experiment slice • Real time data diagnosis from CRON experiment slice • Components • Hardwares • Cisco N5000 switch • with 48 X 10Gbps ports • High-end servers with 10GE NICs • 10Gbps hardware emulators • Softwares • Emulab-based interface & controller • 10Gbps software emulators • (optimized Dummynet & Netem) • Example Scenario • Y-shape Topology • 1 virtual router • (3X10Gbps NICs) • 3 X 10Gbps virtual links • (30ms delay) • 2 competing flows • Softwares • OS: Ubunto 64bit & FreeBSD 64bit • Measurement S/W : Nuttcp & iPerf • TCP variants: TCP Reno, HSTCP, Cubic , HTCP, etc. • Research Impact of CRON • Next generation networking and computing research • Distributed computing for large scale computational sciences(Physics, fluid dynamics, bioinformatics, etc.), Remote visualization

More Related