FEDERATED TEST-BEDS FOR LARGE SCALE INFRASTRUCTURE EXPERIMENTS.

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FEDERATED TEST-BEDS FOR LARGE SCALE INFRASTRUCTURE EXPERIMENTS

Total costs requested to EC:1 499K € Total costs requested to NICT:150M ¥ Duration (36 months): – Project resources:302 PM (person months) European Partners:Japanese Partners: PSNC (coord.)AIST (coord.) NXWKDDI i2CAT EICT iMinds SURFNet PL BE NL DE IT ES JP

Federation of SDN Testbeds To increase mutual benefits of European and Japanese researchers by creating more complex environments for specialized research and experiments To create new opportunities for experiments due to geographical dispersion of testbeds Joint Europe-Japan experiments (selected) A Follow the Moon | Sun Model – green energy in Data Centers –Research question. How can we move the compute workflow to the nearest & greenest power available in a federation? Pre-processing and delivery of nearly real-time [satellite] data to geographically distant locations –Research question. Can we reduce the size of data to be delivered across the transit network and elaborate at the geographically distributed research centers to improve the overall performance? Data Mobility Service by SDN Technologies - Inter-Cloud use case –Research question. Can the cloud system monitor the performance and move data „closer to the remote location”?

Prices of renewable energy strongly depend on the availability of wind and solar energy Cooling is reported to amount up to 50% of the total energy bill of data centres – large data centre providers have started to place infrastructure in formerly unusual places such as Iceland and Finland low environmental temperatures for cooling – Similar projects considered in desert areas the amount of solar energy available may even make up for the additional cooling required Follow the [Moon|Sun] Internet usage curves are following a similar daily pattern everywhere in the world there is a natural potential to shift the load of data centres to places in the world where it is currently night but also:

1.To minimize the total cost of operation for a virtual data centre while maintaining an acceptable end-user experience –mainly determined by the energy costs, but also: CPU/RAM usage and bandwidth costs 2.To regulate the usage of resources in a data centre –to shape the consumption according to the availability (time and place) of renewable energy sources Follow the [Moon|Sun]

Workload migration between data centres in a federation  automatic use of the most environmentally-friendly and (energy) efficient data centre available –Complete migration the workload is moved to the more efficient data centre entirely and the consumers’ traffic is rerouted –Delegation The less efficient data centre handes the consumers’ requests and delegates the actual processing to the more efficient data centre Both scenarios express strong requirements: –for establishing dynamic, on-demand end-to-end connections between the data centres –the use of SDN mechanisms for (re-)routing of the consumers’ traffic, the traffic within the data centres and between them –When the workload is moved from one data centre to another, compute resources need to be provisioned. Follow the [Moon|Sun]

Architecure Six project use cases have been identified and described (September 2013) FELIX architecture has been released (February 2014) Implementation Prototype implementations of the architectural framework are expected by Q12015 Experimental validation FELIX experiments and implementation of project use cases will start from Q

Poznan Supercomputing and Networking Center Poland Nextworks Italy European Center for Information and Communication Technologies Gmbh Germany Fundacio Privada i2CAT, Internet I Innovacio Digital A Catalunya Spain SURFnet bv Netherlands KDDI Japan National Institute of Advanced Industrial Science and Technology Japan iMinds VZW Belgium