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Activities

  • NITOS Outdoor deployment consists of powerful nodes that feature multiple wireless interfaces and allow for experimentation with heterogeneous (Wi-Fi, WiMAX,

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  • The setup NITOS testbed is currently using is a fixed setup (employing no mobility between BSs) that does not require

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  • Towards the development of a remote accessible LTE testbed, where experimenters from all the word will be able to run

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  • NITOS facility provides remote access to OpenFlow switches (2 x Pronto 3290 , 2 x HP 3800 ), enabling the user to create

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  • NITlab developed a software defined radio (SDR) testbed that consists of 18 Universal Software Radio Peripheral (USRP) devices attached to

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  • NITOS is an Intelligent Transport System (ITS) compatible facility thanks to the implementation of the key components of the ITS

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  • NITOS cloud infrastructure is based on HP GEN8 blade servers and one HP DL380p GEN8 server. Cloud Infrastructure UTH Each blade server has

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NITOS

The Future Internet Facility

  • Outdoor Testbed

    Experiments under real world environment Read More
  • Indoor Testbed

    Experiments in RF isolated environment Read More
  • Office testbed

    Experiments in an office environment Read More
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Various Detection Techniques and Platforms for Monitoring Interference Condition in a Wireless Testbed

Authors: Wei Liu, Stratos Keranidis, Michael Mehari, Jono Vanhie-Van Gerwen, Stefan Bouckaert, Opher Yaron and Ingrid Moerman

Conference: LNCS of the Workshop in Measurement and Measurement Tools 2012, Aalborg, Denmark, May 2012

Abstract: Recently the constant growth of the wireless communication technology has caused a huge demand for experimental facilities. Hence many research institutes setup public accessible experimental facilities, known as testbeds. Compared to the facilities developed by individual researchers, a testbed typically offers more resources, more flexibilities. However, due to the fact that equipments are located remotely and experiments involve more complex scenarios, the required complexity for analysis is also higher. A deep insight on the underlying wireless environment of the testbed becomes necessary for comprehensive analysis. In this paper, we present a framework and associated techniques for monitoring the wireless environment in an OMF enabled testbed. The framework utilizes most common resources in the testbed, such as WIFI nodes, as well as some high-end software-defined radio platforms. Information from both physical layer and network layer are taken into account. Further more we explored the added value of distributed sensing system. The performance is mainly analyzed experimentally

Download paper: Keranidis_Monitoring_LNCS_2012_paper.pdf

 

What Our Experimenters Say

  • NITOS is a very reliable and well managed platform. The offered infrastructure and features are great. The management team is very supportive.

    Mustafa Al-Bado
    Postdoctoral researcher
    Insight centre, University College Cork (UCC)
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