Objective
Superfluidity is “a state in which matter behaves like a fluid with zero viscosity”. Our project aims at achieving superfluidity in the network: the ability to instantiate services on-the-fly, run them anywhere in the network (core, aggregation, edge) and shift them transparently to different locations.
The SUPERFLUIDITY project tackles crucial shortcomings in today’s networks: long provisioning times, with wasteful over-provisioning used to meet variable demand; reliance on rigid and cost-ineffective hardware devices; daunting complexity emerging from three forms of heterogeneity: heterogeneous traffic and sources; heterogeneous services and needs; and heterogeneous access technologies, with multi-vendor network components.
The SUPERFLUIDITY solution is based on: a decomposition of network components and services into elementary and reusable primitives; a native, converged cloud-based architecture; the virtualization of radio and network processing tasks; platform-independent abstractions, permitting reuse of network functions across heterogeneous hardware platforms, while catering to the vendors’ need for closed platforms/implementations; and high performance software optimizations along with leveraging of hardware accelerators.
As a result, the 5G network will benefit from: i) location-independence: network services deployable in heterogeneous networks; ii) time-independence: near instantaneous deployment and migration of services; iii) scale-independence: transparent service scalability; and iv) hardware-independence: development and deployment of services with high performance irrespective of the underlying hardware.
Through these properties, SUPERFLUIDITY will provide a converged cloud-based 5G concept that will enable innovative use cases in the mobile edge, empower new business models, and reduce investment and operational costs.
The SUPERFLUIDITY consortium gathers an impressive and uncommon blend of Telco and IT players that can make its vision a reality.
Fields of science
Not validated
Not validated
- engineering and technologymechanical engineeringvehicle engineeringautomotive engineeringautonomous vehicles
- engineering and technologyelectrical engineering, electronic engineering, information engineeringinformation engineeringtelecommunicationstelecommunications networksmobile network5G
- natural sciencescomputer and information sciencesartificial intelligencecomputer visionfacial recognition
- natural sciencescomputer and information sciencessoftwaresoftware applicationsvirtual reality
- engineering and technologyelectrical engineering, electronic engineering, information engineeringelectronic engineeringcontrol systemshome automation
Programme(s)
Funding Scheme
RIA - Research and Innovation actionCoordinator
43124 Parma
Italy
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Participants (19)
91300 Massy
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Legal entity other than a subcontractor which is affiliated or legally linked to a participant. The entity carries out work under the conditions laid down in the Grant Agreement, supplies goods or provides services for the action, but did not sign the Grant Agreement. A third party abides by the rules applicable to its related participant under the Grant Agreement with regard to eligibility of costs and control of expenditure.
91300 Massy
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4464321 Kfar Saba
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E1 8EE London
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265 04 KATO KASTRITSI PATRAS
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Participation ended
91800 BOUSSY SAINT-ANTOINE
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The organization defined itself as SME (small and medium-sized enterprise) at the time the Grant Agreement was signed.
W23 Leixlip
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Participation ended
HA4 6QE London
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E1 6QL Gibraltar
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The organization defined itself as SME (small and medium-sized enterprise) at the time the Grant Agreement was signed.
3810 106 Aveiro
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4350108 RA ANANA
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28015 Madrid
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The organization defined itself as SME (small and medium-sized enterprise) at the time the Grant Agreement was signed.
28050 Madrid
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1072AB AMSTERDAM
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The organization defined itself as SME (small and medium-sized enterprise) at the time the Grant Agreement was signed.
84105 Beer Sheva
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4000 Liege
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01069 Dresden
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060042 Bucharest
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69115 Heidelberg
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