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An Integrated Measurement Framework (IMF) for Enabling GENI Substrate Measurement and Control

An Integrated Measurement Framework (IMF) for Enabling GENI Substrate Measurement and Control. NO: 1718. I. Baldine, B. Bathula, K. Bergman, C. Chen, R. Dutta, C. P. Lai, G. Rouskas, A. Wang , M. S. Wang. Experimenter access to measurement.

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An Integrated Measurement Framework (IMF) for Enabling GENI Substrate Measurement and Control

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  1. An Integrated Measurement Framework (IMF) for Enabling GENI Substrate Measurement and Control NO: 1718 I. Baldine, B. Bathula, K. Bergman, C. Chen, R. Dutta, C. P. Lai, G. Rouskas, A. Wang, M. S. Wang

  2. Experimenter access to measurement IMF provides architectural capability to integrate measurement framework (secondarily, shared substrate) Collaborate with ERM, BEN/ORCA, LEARN. • HW developed: the netFPAG-controlled SOA; the script-controlled attenuator • SW developed: (1) SILO runs in BEN, and services are developed; (2) Measurement published through XMPP; • HW-SW interaction finished: xmlrpc, XMPP • Live demo with video stream Spiral 2 Status – successful demo of IMF cross-layer milestone Spiral 3 Plan • Use ORCA framework to set up the experiment • Ontology for measurement, and explore measurement roles in resource presentation

  3. Experimenter access to measurement Architectural Support for Integration of Measurements port power base line SILO-controlled port power

  4. Experimenter access to measurement Spiral 2 Experiment Status • Highly collaborated with ERM, LEARN, ORCA/BEN • A very general approach (both SILO and Measurement pubsub Module), so we expect that once we complete integration into ORCA, other Cluster D experiments or outside experiments will be able to port it seamlessly. Spiral 3 Plan • Fully integrated with ORCA; • Multiple aggregates - Integrating into other control frameworks is also something we want to do, but probably not before Year 3 of our project.

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