[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
column

PhantomNet: Research Infrastructure for Mobile Networking, Cloud Computing and Software-Defined Networking

Published: 25 August 2015 Publication History

Abstract

The PhantomNet facility allows experimenters to combine mobile networking, cloud computing and software-defined networking in a single environment. It is an end-to-end testbed, meaning that it supports experiments not just with mobile end-user devices but also with a cellular core network that can be configured and extended with new technologies. This article introduces PhantomNet and presents a road map for its future development. The current PhantomNet prototype is available now at no cost to researchers and educational users.

References

[1]
OpenEPC. http://www.openepc.com/.
[2]
OpenLTE. http://openlte.sourceforge.net/.
[3]
Rishi Baldawa, Geoffrey Challen, Murat Demirbas, Jay Inamdar, Taeyeon K, Steven Y. Ko, Tevfik Kosar, Lokesh Mandvekar, and Chunming Qiao. Phonelab: A largescale participatory smartphone testbed. Poster at MobiCom, September 2011. Whitepaper: http://sensorlab.cs.dartmouth.edu/NSFPervasiveComputingAtScale/pdf/1569392923.pdf
[4]
Junguk Cho, Binh Nguyen, Arijit Banerjee, Robert Ricci, Jacobus Van der Merwe, and Kirk Webb. SMORE: Software-defined networking mobile offloading architecture. In Proceedings of the 4th Workshop on All Things Cellular, pages 21--26, August 2014.
[5]
Eduardo Cuervo, Peter Gilbert, Bi Wu, and Landon P. Cox. Crowdlab: An architecture forvolunteer mobile testbeds. In Proceedings of the 3rd International Conference on Communication Systems & Networks, January 2011.
[6]
Eraldo Damosso and Luis Correia, editors. Digital Mobile Radio Towards Future Generation Systems. European Co-operation in the field of Scientific and Technical Research, 1996.
[7]
Flux Research Group. PhantomNet -- Mobility Testbed. https://www.phantomnet.org/.
[8]
Xin Jin, Li Erran Li, Laurent Vanbever, and Jennifer Rexford. Softcell: Scalable and flexible cellular core network architecture. In Proceedings of the 9th ACM Conference on Emerging Networking Experiments and Technologies, pages 163--174, December 2013.
[9]
D. Johnson, T. Stack, R. Fish, D. M. Flickinger, L. Stoller, R. Ricci, and J. Lepreau. Mobile Emulab: A robotic wireless and sensor network testbed. In Proceedings of the 25th IEEE International Conference on Computer Communications, April 2006.
[10]
MobileCommunicationsDepartmentat EURECOM.OpenAirInterface. http://www.openairinterface.org/.
[11]
D. Raychaudhuri. MobilityFirst: A robust and trustworthy mobility-centric architecture for the future inter- net. PIMRC Keynote, 2011. http:// mobilityfirst.winlab.rutgers.edu/documents/ PIMRC_ keynote_MF_911.pdf.
[12]
D. Raychaudhuri, M. Ott, and I. Seskar. Orbit radio grid tested for evaluation of nextgeneration wireless network protocols. In Proceedings of the 1st International Conference on Testbeds and Research Infrastructures for the Development of Networks and Communities, February 2005.
[13]
Ivan Seskar, Kiran Nagaraja, Sam Nelson, and Dipankar Raychaudhuri. MobilityFirst future internet architecture project. In Proceedings of the 7th Asian Internet Engineering Conference, December 2011.
[14]
Hamed Soroush, Nilanjan Banerjee, Aruna Balasubramanian, Mark D. Corner, Brian Neil Levine, and Brian Lynn. Dome: a diverse outdoor mobile testbed. In Proceedings of the 1st ACM International Workshop on Hot Topics of Planet- Scale Mobility Measurements, June 2009.
[15]
Brian White, Jay Lepreau, Leigh Stoller, Robert Ricci, Shashi Guruprasad, Mac Newbold, Mike Hibler, Chad Barb, and Abhijeet Joglekar. An Integrated Experimental Environment for Distributed Systems and Networks. In Proceedings of the 5th Symposium on Operating Systems Design and Implementation, December 2002.

Cited By

View all
  • (2024)Dynamic RFI Management in Radio Astronomy Using Pseudonymetry2024 United States National Committee of URSI National Radio Science Meeting (USNC-URSI NRSM)10.23919/USNC-URSINRSM60317.2024.10464513(282-283)Online publication date: 9-Jan-2024
  • (2023)Toward Addressing Training Data Scarcity Challenge in Emerging Radio Access Networks: A Survey and FrameworkIEEE Communications Surveys & Tutorials10.1109/COMST.2023.327141925:3(1954-1990)Online publication date: 1-Jul-2023
  • (2022)Investigating Handover Behavior with 5G and Beyond TurboRAN Testbed2022 Seventh International Conference On Mobile And Secure Services (MobiSecServ)10.1109/MobiSecServ50855.2022.9727204(1-6)Online publication date: 26-Feb-2022
  • Show More Cited By

Recommendations

Comments

Please enable JavaScript to view thecomments powered by Disqus.

Information & Contributors

Information

Published In

cover image GetMobile: Mobile Computing and Communications
GetMobile: Mobile Computing and Communications  Volume 19, Issue 2
April 2015
33 pages
ISSN:2375-0529
EISSN:2375-0537
DOI:10.1145/2817761
Issue’s Table of Contents

Publisher

Association for Computing Machinery

New York, NY, United States

Publication History

Published: 25 August 2015
Published in SIGMOBILE-GETMOBILE Volume 19, Issue 2

Check for updates

Qualifiers

  • Column

Contributors

Other Metrics

Bibliometrics & Citations

Bibliometrics

Article Metrics

  • Downloads (Last 12 months)5
  • Downloads (Last 6 weeks)0
Reflects downloads up to 11 Dec 2024

Other Metrics

Citations

Cited By

View all
  • (2024)Dynamic RFI Management in Radio Astronomy Using Pseudonymetry2024 United States National Committee of URSI National Radio Science Meeting (USNC-URSI NRSM)10.23919/USNC-URSINRSM60317.2024.10464513(282-283)Online publication date: 9-Jan-2024
  • (2023)Toward Addressing Training Data Scarcity Challenge in Emerging Radio Access Networks: A Survey and FrameworkIEEE Communications Surveys & Tutorials10.1109/COMST.2023.327141925:3(1954-1990)Online publication date: 1-Jul-2023
  • (2022)Investigating Handover Behavior with 5G and Beyond TurboRAN Testbed2022 Seventh International Conference On Mobile And Secure Services (MobiSecServ)10.1109/MobiSecServ50855.2022.9727204(1-6)Online publication date: 26-Feb-2022
  • (2022)Design Considerations and Deployment Challenges for TurboRAN 5G and Beyond TestbedIEEE Access10.1109/ACCESS.2022.316694710(39810-39824)Online publication date: 2022
  • (2022)A survey of longitudinal changes in cellular network architectureJournal of Network and Computer Applications10.1016/j.jnca.2022.103496207:COnline publication date: 1-Nov-2022
  • (2021) PowderComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2021.108281197:COnline publication date: 9-Oct-2021
  • (2020)POWDERProceedings of the 14th International Workshop on Wireless Network Testbeds, Experimental evaluation & Characterization10.1145/3411276.3412204(17-24)Online publication date: 21-Sep-2020
  • (2020)Low-cost wireless testbed for Internet of Things ad hoc networks prototyping and evaluation2020 IEEE 6th World Forum on Internet of Things (WF-IoT)10.1109/WF-IoT48130.2020.9221081(1-6)Online publication date: Jun-2020
  • (2020)Optimizing NFV Chain Deployment in Software-Defined Cellular CoreIEEE Journal on Selected Areas in Communications10.1109/JSAC.2019.295918038:2(248-262)Online publication date: Feb-2020
  • (2020)Legilimens: An Agile Transport for Background Traffic in Cellular Networks2020 IEEE 28th International Conference on Network Protocols (ICNP)10.1109/ICNP49622.2020.9259406(1-12)Online publication date: 13-Oct-2020
  • Show More Cited By

View Options

Login options

View options

PDF

View or Download as a PDF file.

PDF

eReader

View online with eReader.

eReader

Media

Figures

Other

Tables

Share

Share

Share this Publication link

Share on social media