FIA Budapest 18 th May 2011 Management and Future Networks Filling in the Standardisation Gap!!! FIA Budapest 18 th May 2011 Alex Galis University College.

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Presentation transcript:

FIA Budapest 18 th May 2011 Management and Future Networks Filling in the Standardisation Gap!!! FIA Budapest 18 th May 2011 Alex Galis University College London

FIA Budapest 18 th May Future Internet – What are the Standardisation Questions? 2. Some progress in ITU-T 3. Concluding Remarks on Future Internet Model Contents

FIA Budapest 18 th May 2011  What is Future Internet and how it differs from Current Internet?  What are the design objectives for Future Internet?  What are the key architectural components and systems  Interactions, interfacing, distribution, interoperations, deployment, evolution/adaptation, programmability? Future Internet Standardisation Questions  What to standardize?  Look for ‘Golden Nugget’ technologies  Choosing the right standards body  Look for critical mass and existing impact  Open specifications needed for an open cross ‐ sector infrastructure, with open interfaces to enable new applications

FIA Budapest 18 th May Future Internet – What are the Standardization Questions? 2. Some progress in ITU-T 3. Concluding Remarks on Future Internet Model Contents

FIA Budapest 18 th May 2011  ITU-T FG FN - Focus Group Future Networks Period: July 2009 – March 2011 Objective: document results that would enable development of Recommendations for future networks Results:  ITU-T Recommendation Y.3001 “ Future Networks- Objectives and Design Goals”  FNs Vision Document + 3 Supporting Technologies With contribution - concepts & references from FIA MANA & FP7 projects: AutoI, RESERVOIR, 4WARD, Univerself ITU-T Chairman: Takashi Egawa (NEC, Japan) Morita Naotaka (NTT, Japan) Vice-Chairman: Hyoung Jun Kim (ETRI, Korea) Vice-Chairman: Alex Galis (University College London, UK)

FIA Budapest 18 th May 2011 Future networks ITU-T started pre- standardisation activities with identification of FNs requirements –new application areas (e.g., IoT, cloud, smart grid)  Introduction of new network architectures; call this Future Networks ITU is not R&D body. Direction is find by analysing existing activities (Asia, EU, USA) Produced document Future Networks: Objectives and Design Goals is first “guidance” – ITU-T Recommendation Y.3001 FN - Appropriate timeframe for prototyping and phased deployment is Next phase is to find the best answers on requirements. 6

FIA Budapest 18 th May 2011 Future Networks (FNs): A future network is a network which is able to provide revolutionary services, capabilities, and facilities that are hard to provide using existing network technologies. A future network is either:  new component network or an enhancement to an existing one;  federation of new component networks or federation of new and existing component networks. ITU-T FG FN - Vision document fundamental issues that are neglected in designing today’s networks as ‘objectives’, capabilities that should be supported by future networks as ‘design goals’, ideas and research topics of future networks that are important and may be relevant to future ITU-T standardization as ‘promising technologies’. Network for/of Individual Network for/of Society Network for/on Earth Definition - Future networks 7

FIA Budapest 18 th May 2011 Future Networks - Four Objectives Environment awareness –FNs should be environmental friendly. Service awareness –FNs should provide services that are customized with the appropriate functions to meet the needs of applications and users. Data awareness –FNs should have architecture that is optimized to handling enormous amount of data in a distributed environment. Social-economic awareness –FNs should have social-economic incentives to reduce barriers to entry for the various participants of telecommunication sector. FUTURE NETORKS ENVIRONMENTAWARENESS SERVICE AWARENESS DATAAWARENESSSOCIAL-ECONOMICAWARENESS FUTURE NETORKS 8

FIA Budapest 18 th May 2011 Future Networks - 12 Future Networks - 12 Design Goals ① (Service Diversity) FNs should accommodate a wide variety of traffic and support diversified services ② (Functional Flexibility) FNs should have flexibility to support and sustain new services derived from future user demands ③ (Virtualization of resources) FNs should support virtualization so that a single resource can be used concurrently by multiple virtual resources. ④ (Data Access) FNs should support isolation and abstraction FNs should have mechanisms for retrieving data in a timely manner regardless of its location. ⑤ (Energy Consumption) FNs should have device, system, and network level technologies to improve power efficiency and to satisfy customer’s requests with minimum traffic ⑥ (Service Universalization)FNs should facilitate and accelerate provision of convergent facilities in differing areas such as towns or the countryside, developed or developing countries 9

FIA Budapest 18 th May 2011 FNs - 12 FNs - 12 Design Goals (Cont.) ⑦ (Economic Incentives) FNs should be designed to provide sustainable competition environment to various participants in ecosystem of ICT by providing proper economic incentives ⑧ (Network Management) FNs should be able to operate, maintain and provision efficiently the increasing number of services and entities. ⑨ (Mobility) FNs should be designed and implemented to provide mobility that facilitates high levels of reliability, availability and quality of service in an environment where a huge number of nodes can dynamically move across the heterogeneous networks. ⑩ (Optimization) FNs should provide sufficient performance by optimizing capacity of network equipments based on service requirement and user demand. 11(Identification) FNs should provide a new identification structure that can effectively support mobility and data access in a scalable manner. 12(Reliability and Security)FNs should support extremely high- reliability services 10

FIA Budapest 18 th May Service Diversity 2. Functional Flexibility 3. Virtuallization /resources 4. Data Access 5. Energy Consumption 6. Service Universalization 7. Economic Incentives 8. Network Management 9. Mobility 10. Optimization 11. Identification 12. Reliability & Security 11 ENVIRONMENT AWARENESS SERVICE AWARENESS DATA AWARENESS SOCIAL- ECONOMIC AWARENESS Future Networks : Objectives Vs. Design Goals 11

FIA Budapest 18 th May 2011 Future Networks : Objectives Vs. Design Goals

FIA Budapest 18 th May 2011 Technologies - achieving the design goals Virtualization of Resources (Network Virtualization) Enables creation of logically isolated network partitions over shared physical network infrastructures so that multiple heterogeneous virtual networks can simultaneously coexist over the shared infrastructures; it allows the aggregation of multiple resources and makes the aggregated resources appear as a single resource Data/Content-oriented Networking (Data Access) Energy-saving of Networks (Energy Consumption) Forward traffic with less power Control device/system operation for traffic dynamics Satisfy customer requests with minimum traffic In-system Network Management (Network Management) Distributed Mobile Networking (Mobility) Network Optimization (Optimization) Device / System / Network level optimization (Path optimization, Network topology optimization, Accommodation point optimization) 13

FIA Budapest 18 th May 2011 Filling in the Standardization Gap Project Level - EC FP7 SO1.1 Call 5 UniverSelf UniverSelf FP7 Project Standardization Plans Definition ETSI, ITU-T,..

FIA Budapest 18 th May Future Internet – What are the Standardisation Questions? 2. Some progress in ITU-T 3. Concluding Remarks on Future Internet Model Contents

FIA Budapest 18 th May 2011 Towards a new Network Model  Current Internet = Network of Interconnected uncoordinated networks – “infrastructure where intelligence is located at the edges”  Simple network layer ;Services are realised at the end-hosts  KISS Principle : “Keep it Simple, Stupid” ( i.e. today optimisation is tomorrow’s bottleneck) source: D. Isenberg

FIA Budapest 18 th May 2011 Towards a new Network Model  Future Internet/Networks = Unlike the original Internet infrastructure set of standards, which merely focus on technical connectivity, routing, and naming, the scope of the Future Internet recommendations, standards, and guidelines should encompass all levels of interfaces for Services, Manageability and Technical Resources (networking, computation, storage, control)  Infrastructure where the intelligence is embedded and enabled Software Defined Networks  Substitute KISS principle with KII principle : “Keep it intelligent” ( i.e. today fundamental is tomorrow’s secondary) source A. Galis