• Title/Summary/Keyword: openflow implementation

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Mobile Oriented Future Internet (MOFI): OpenFlow-based Implementation and Testbed Experimentation over KOREN (모바일 중심 미래 인터넷: OpenFlow 기반 구현 및 KOREN 테스트베드 실험)

  • Kim, Ji-In;Jung, Heeyoung;Koh, Seok-Joo
    • Journal of KIISE:Information Networking
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    • v.41 no.4
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    • pp.167-176
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    • 2014
  • In this paper, we discuss the implementation and experimentations of a new future Internet architecture for mobile-oriented environments, named Mobile Oriented Future Internet (MOFI). The MOFI architecture is featured by the host identifier and local locator for identifier-locator separation, Query-First Data Delivery (QFDD), and Distributed Mapping System (DMS) for identifier-locator mapping control. In the existing study on MOFI, we examined the intra-domain mobility control, the implementation of MOFI over Linux platform, and the performance analysis over the small-scale testbed. In this paper, we describe how to implement the MOFI architecture for inter-domain mobility control by using the OpenFlow and Click Modular Router platform. From the experimentations over the KOREN testbed, we can see that the MOFI scheme can give better performance than the existing Proxy Mobile IP scheme.

NetFPGA-based Scheduler Implementation and its Performance Evaluation for QoS of Virtualized Network Resources on the Future Internet Testbed (미래인터넷 테스트베드 가상화 자원의 QoS를 위한 NetFPGA 기반 스케쥴러 구현 및 성능 평가)

  • Min, Seok-Hong;Jung, Whoi-Jin;Kim, Byung-Chul;Lee, Jae-Yong
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.48 no.8
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    • pp.42-50
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    • 2011
  • Recently, research activities on the future internet are being actively performed in foreign and domestic. In domestic, ETRI and 4 universities are focused on implementation of a testbed for research on the future internet named as 'FiRST(Future Internet Research for Sustainable Testbed)'. In the 'FiRST' project, 4 universities are performing a project in collaboration named as 'FiRST@PC' project that is for an implementation of the testbed using the programmable platform-based openflow switches. Currently, the research on the virtualization of the testbed is being performed that has a purpose for supporting an isolated network to individual researcher. In this paper, we implemented a traffic scheduler for providing QoS by using the programmable platform that performs a hardware-based packet processing and we are implemented a testbed using that traffic scheduler. We perform a performance evaluation of the traffic scheduler on the testbed. As a result, we show that the hardware-based NetFPGA scheduler can provide reliable and stable QoS to virtualized networks of the Future Internet Testbed.