
Creative Systems Engineering CSE
Creative Systems Engineering CSE
6 Projects, page 1 of 2
Open Access Mandate for Publications and Research data assignment_turned_in Project2015 - 2018Partners:DFKI, Nextworks (Italy), UWS, University of Murcia, Complutense University of Madrid +7 partnersDFKI,Nextworks (Italy),UWS,University of Murcia,Complutense University of Madrid,Ubiwhere,PROEF,PT Inovação e Sistemas (Portugal),Creative Systems Engineering CSE,INNOROUTE,EURESCOM,ALVARION TECHNOLOGIES LTDFunder: European Commission Project Code: 671672Overall Budget: 6,866,500 EURFunder Contribution: 6,866,500 EURThe proposed SELFNET project will design and implement an autonomic network management framework to achieve self-organizing capabilities in managing network infrastructures by automatically detecting and mitigating a range of common network problems that are currently still being manually addressed by network operators, thereby significantly reducing operational costs and improving user experience. SELFNET explores a smart integration of state-of-the-art technologies in Software-Defined Networks (SDN), Network Function Virtualization (NFV), Self-Organizing Networks (SON), Cloud computing, Artificial intelligence, Quality of Experience (QoE) and Next-generation networking to provide a novel intelligent network management framework that is capable of assisting network operators in key management tasks: automated network monitoring by the automatic deployment of NFV applications to facilitate system-wide awareness of Health of Network metrics to have more direct and precise knowledge about the real status of the network; autonomic network maintenance by defining high-level tactical measures and enabling autonomic corrective and preventive actions against existing or potential network problems. SELFNET is driven by use cases designed to address major network management problems including Self-protection capabilities against distributed cyber-attacks, Self-healing capabilities against network failures, and Self-optimization to dynamically improve the performance of the network and the QoE of the users. SELFNET is designed within this economic and business context to substantially reduce operational costs of network operators by automating a significant number of current labour-intensive network management tasks. Therefore, SELFNET directly addresses the Strand Network Management challenge highlighted by the EC.
All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://www.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=corda__h2020::482fbb05f54bb5cd5f5e570eab709d67&type=result"></script>'); --> </script>
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications assignment_turned_in Project2015 - 2018Partners:VBB, EMT-PALMA, EUREVA, TU Berlin, UPV +10 partnersVBB,EMT-PALMA,EUREVA,TU Berlin,UPV,VMZ BERLIN,Senatsverwaltung für Mobilität, Verkehr, Klimaschutz und Umwelt,ETRA INVESTIGACION Y DESARROLLO SA,FLUGHAFEN BERLIN BRANDENBURG GMBH,Creative Systems Engineering CSE,AJUNTAMENT DE PALMA,EURESCOM,ENAIRE,LUT,SENSTADTFunder: European Commission Project Code: 635885Overall Budget: 4,682,900 EURFunder Contribution: 4,682,900 EURDORA project is aiming at design and establishment of an integrated information system that helps passengers to optimise travel time from an origin of the travel to the airplane at the departing airport as well as from the arrival airport to the final destination. With it, the DORA integrated information system, which will be created within the project together with necessary software platforms and end user applications, is aiming at reduction of overall time needed for a typical European air travel including necessary time needed for transport to and from the airports. To ensure this, the DORA system will provide mobile, seamless, and time optimised route recommendations for the travels to the airport and time optimised routing within the airports, leading the passengers through terminals to the right security and departure gates. The DORA will integrate all necessary real time information on disruptions in the land transport environments and on incidents in the airport terminals to provide the fastest route alternatives, ensuring the accessibility of airport and airplane at any time in accordance with individual passengers’ requirements. The DORA system will be designed in a generic way, to ensure that it can be widely adopted independently on passengers and airports locations. In the project, the DORA system will be implemented and tested in realistic environments involving cities of Berlin and Palma di Mallorca as well corresponding airports in both cities with involvement of at least 500 real end users – passengers – in the trials. To support the passengers’ route optimisation, the DORA project will investigate and design technologies for recognition of waiting queues and indoor location services in airports, which will be integrated into the DORA system and tested within the project trials.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications assignment_turned_in Project2017 - 2020Partners:Efacec Energia, IBM ISRAEL, Creative Systems Engineering CSE, EURESCOM, CIT INFINITE DESIGNATED ACTIVITY COMPANY +12 partnersEfacec Energia,IBM ISRAEL,Creative Systems Engineering CSE,EURESCOM,CIT INFINITE DESIGNATED ACTIVITY COMPANY,Nextworks (Italy),Orange (France),EISI,UPC,UWS,RedZinc (Ireland),PT Inovação e Sistemas (Portugal),CIT,ORANGE ROMANIA SA,HELLENIC TELECOMMUNICATIONS ORGANIZATION SA,EURECOM,ERICSSON TELECOMUNICAZIONIFunder: European Commission Project Code: 761913Overall Budget: 7,979,030 EURFunder Contribution: 7,979,030 EUR5G use cases are so diverse and challenging that the 5G networks must be customisable for the broad range of individual scenarios. 5G network providers are keen to offer “networks as a service” where logical network slices are created and allocated to use cases flexibly and efficiently in a multi-operator environment. SliceNet will create and demonstrate the tools and mechanisms to achieve this ambition. Specifically, SliceNet will design, prototype and demonstrate an innovative, verticals-oriented, QoE-driven 5G network slicing framework. It will use cognitive network management, control and orchestration techniques for the provision and operation of end-to-end slicing across multi-operator domains in 5G networks. SliceNet will systematically tackle a range of the involved outstanding issues and thus directly addresses the key challenges in Strand 3 “Software Network” in this call ICT-07-2017. The integrated SliceNet framework will be demonstrated in three representative vertical use cases: Smart Grid, eHealth and Smart City, to highlight the achievements, innovations, and impacts. SliceNet support the unique perspectives and requirements on 5G networks of different players: For 5G verticals businesses, SliceNet offers an innovative one-stop shop solution to meet diverging and demanding service requirements. SliceNet enables the verticals to plug and play their use cases with bespoke control to employ 5G slices in a scalable, cost-efficient way via novel mySlice and Scalable Slicing as a Service functions and a one-stop API. For 5G service providers and users, SliceNet provides unprecedented guaranteed service quality by agile cognitive QoE-optimisation of service creation and delivery. For 5G network operators, SliceNet presents an integrated FCAPS (Fault, Configuration, Accounting, Performance, Security) framework for truly end-to-end management, control and orchestration of slices by secured, interoperable, and reliable operations across multi-operator domains.
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2010 - 2013Partners:HSG, Telefonica Research and Development, LETI, University of Surrey, Siemens (Germany) +15 partnersHSG,Telefonica Research and Development,LETI,University of Surrey,Siemens (Germany),VDI/VDE INNOVATION + TECHNIK GMBH,SAP AG,University of Würzburg,Creative Systems Engineering CSE,A-LBELL,NXP (Germany),IBM RESEARCH GMBH,NXP,CFR,FHG,Alcatel-Lucent (France),TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,HITACHI EUROPE LIMITED,Sapienza University of Rome,NECFunder: European Commission Project Code: 257521All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://www.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=corda_______::6b6101e58573c937cb9c7f25da346afc&type=result"></script>'); --> </script>
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For further information contact us at helpdesk@openaire.euassignment_turned_in Project2011 - 2014Partners:PT Inovação e Sistemas (Portugal), UCL, TP, HUJI, ÉTS +26 partnersPT Inovação e Sistemas (Portugal),UCL,TP,HUJI,ÉTS,WUT,CNIT,NICTA,DT,WIT,FHG,TUM,ETHZ,BUTE,UniPi,UPMC,ELTE,EURESCOM,UPC,University of Murcia,NTUA,University of Patras,IMINDS,University Of Thessaly,INRIA,CSIRO,NTNU,UAM,TU Berlin,Creative Systems Engineering CSE,COSMOTEFunder: European Commission Project Code: 287581All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://www.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=corda_______::1d40a42e70050578fabcf96536160505&type=result"></script>'); --> </script>
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