
Universitat Politècnica de Catalunya
Universitat Politècnica de Catalunya
2 Projects, page 1 of 1
assignment_turned_in Project2016 - 2023Partners:Bristol City Council, National Inst of Info & Comm Tech (NICT), BBC, Imagination Technologies (United Kingdom), Universitat Politècnica de Catalunya +74 partnersBristol City Council,National Inst of Info & Comm Tech (NICT),BBC,Imagination Technologies (United Kingdom),Universitat Politècnica de Catalunya,SETsquared Partnership,National Instruments (United Kingdom),mVCE,ADVA AG Optical Networking,Imagination Technologies (United Kingdom),BAE Systems (Sweden),BBC,BAE Systems (United Kingdom),TRTUK,ADVA Optical Networking (Germany),GCHQ,University of Bristol,Innovate UK,Rohde & Schwarz (United Kingdom),SETsquared Partnership,Centre of Res and Develop in telecoms,u-blox UK ltd.,BAE Systems (Sweden),Technical University of Catalonia,Technology Strategy Board (Innovate UK),Centre for Research and Development in Telecommunications (Brazil),BT Group,Toshiba Electronics (U K) Ltd,Bristol City Council,Osaka University,Osaka University,Agilent Technologies (United Kingdom),NEC Telecom MODUS Ltd,BT Group,BAE Systems (UK),Her Majesty's Government Communications Centre,West of England Local Enterprise Partner,Rohde & Schwarz (United Kingdom),British Broadcasting Corporation (United Kingdom),GCHQ,Innovate UK,National Inst of Info & Comm Tech (NICT),Imagination Technologies Ltd UK,University of Bristol,u-blox UK Ltd,Toshiba Electronics (UK) Ltd,Chemring Technology Solutions (United Kingdom),NEC Telecom MODUS Ltd,HMG,Nvidia (United Kingdom),Agilent Technologies (United Kingdom),NMI (National Microelectronics Inst),NMI,Thales (United Kingdom),Centre of Res and Develop in telecoms,nVIDIA UK,Telefónica (Spain),British Broadcasting Corporation - BBC,RMRL,Bristol City Council,nVIDIA UK,Ofcom,TRTUK,NATIONAL INSTRUMENTS CORPORATION(UK) LIMITED,Ofcom,NEC Telecom MODUS Ltd,Telefonica S.A,Thales Research and Technology UK Ltd,Agilent Technologies (United Kingdom),RMRL,u-blox UK ltd.,West of England Local Enterprise Partner,BT Group (United Kingdom),Virtual Centre of Excellence In Mobile and Personal Communications,Technology Strategy Board,NMI,Mobile VCE,NATIONAL INSTRUMENTS CORPORATION(UK) LIMITED,National Institute of Information and Communications TechnologyFunder: UK Research and Innovation Project Code: EP/L016656/1Funder Contribution: 3,078,570 GBPWe are living through a revolution, as electronic communications become ever more ubiquitous in our daily lives. The use of mobile and smart phone technology is becoming increasingly universal, with applications beyond voice communications including access to social and business data, entertainment through live and more immersive video streaming and distributed processing and storage of information through high performance data centres and the cloud. All of this needs to be achieved with high levels of reliability, flexibility and at low cost, and solutions need to integrate developments in theoretical algorithms, optimization of software and ongoing advances in hardware performance. These trends will continue to shape our future. By 2020 it is predicted that the number of network-connected devices will reach 1000 times the world's population: there will be 7 trillion connected devices for 7 billion people. This will result in 1.3 zettabytes of global internet traffic by 2016 (with over 80% of this being due to video), requiring a 27% increase in energy consumption by telecommunications networks. The UK's excellence in communications has been a focal point for inward investment for many years - already this sector has a value of £82Bn a year to the UK economy (~5.7% GDP). However this strength is threatened by an age imbalance in the workforce and a shortage of highly skilled researchers. Our CDT will bridge this skills gap, by training the next generation of researchers, who can ensure that the UK remains at the heart of the worldwide communications industry, providing a much needed growth dividend for our economy. It will be guided by the commercial imperatives from our industry partners, and motivated by application drivers in future cities, transport, e-health, homeland security and entertainment. The expansion of the UK internet business is fuelled by innovative product development in optical transport mechanisms, wireless enabled technologies and efficient data representations. It is thus essential that communications practitioners of the future have an overall system perspective, bridging the gaps between hardware and software, wireless and wired communications, and application drivers and network constraints. While communications technology is the enabler, it is humans that are the producers, consumers and beneficiaries in terms of its broader applications. Our programme will thus focus on the challenges within and the interactions between the key domains of People, Power and Performance. Over three cohorts, the new CDT will build on Bristol's core expertise in Efficient Systems and Enabling Technologies to engineer novel solutions, offering enhanced performance, lower cost and reduced environmental impact. We will train our students in the mathematical fundamentals which underpin modern communication systems and deliver both human and technological solutions for the communication systems landscape of the future. In summary, Future Communications 2 will produce a new type of PhD graduate: one who is intellectually leading, creative, mathematically rigorous and who understands the commercial implications of his or her work - people who are the future technical leaders in the sector.
All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=ukri________::9772d80c7c34a9b2b1530800823fc809&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eumore_vert All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=ukri________::9772d80c7c34a9b2b1530800823fc809&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euassignment_turned_in Project2020 - 2025Partners:LR IMEA, DNV GL Energy, University of Leuven, Offshore Renewable Energy Catapult, NAFEMS Ltd +92 partnersLR IMEA,DNV GL Energy,University of Leuven,Offshore Renewable Energy Catapult,NAFEMS Ltd,NREL,Plymouth University,Ramboll (Denmark),Swansea University,BUTE,Ramboll Group,NUIM,Cardiff University,UPC,Center for Scientific Research and Higher Education at Ensenada,Itasca Consultants (Germany),Austral University of Chile,JBA Consulting,General Lighthouse Authorities,ESI Group (UK),University of Bristol,University of Oxford,Southern University of Chile,SCU,Cranfield University,Brunel University,MeyGen Ltd,Wave Venture Ltd,Cardiff University,UCL,Budapest University of Technology,University of Western Australia,AIRBUS OPERATIONS LIMITED,Cardiff University,HKU,AAU,University of Surrey,DPU,Universitat Politècnica de Catalunya,Airbus Operations Limited,MeyGen Ltd,Brunel University London,Carnegie Clean Energy,UK Association for Computational Mechani,UCD,Carnegie Clean Energy,OFFSHORE RENEWABLE ENERGY CATAPULT,Sichuan University,DNV GL Energy,JBA Consulting,University of Surrey,University of Cambridge,MeyGen Ltd,University of Cambridge,UC,General Lighthouse Authorities,Dalian University of Technology,Kyoto University,UK Association for Computational Mechani,NREL,UNIVERSITY OF CAMBRIDGE,Offshore Renewable Energy Catapult,UWA,Budapest University of Technology,DPU,NIKU,Universidade de Vigo,Universidade de Vigo,Universidade de Vigo,SCU,Wave Venture Ltd,National Renewable Energy Laboratory,Polytechnic University of Catalonia,Aalborg University,Swansea University,Cranfield University,KU Leuven,TUHH,NAFEMS Ltd,University of Bristol,Brunel University London,University of Salford,Lloyd's Register Foundation,Airbus (United Kingdom),University of Manchester,CARDIFF UNIVERSITY,University of Cantabria,Jeremy Benn Associates (United Kingdom),Itasca Consultants GmbH,CRANFIELD UNIVERSITY,LR IMEA,HKU,UC,The University of Manchester,University of Leuven,ESI Group (UK),CICESEFunder: UK Research and Innovation Project Code: EP/T026782/1Funder Contribution: 312,511 GBPThe proposed new CCP-WSI+ builds on the impact generated by the Collaborative Computational Project in Wave Structure Interaction (CCP-WSI) and extends it to connect together previously separate communities in computational fluid dynamics (CFD) and computational structural mechanics (CSM). The new CCP-WSI+ collaboration builds on the NWT, will accelerate the development of Fully Coupled Wave Structure Interaction (FCWSI) modelling suitable for dealing with the latest challenges in offshore and coastal engineering. Since being established in 2015, CCP-WSI has provided strategic leadership for the WSI community, and has been successful in generating impact in: Strategy setting, Contributions to knowledge, and Strategic software development and support. The existing CCP-WSI network has identified priorities for WSI code development through industry focus group workshops; it has advanced understanding of the applicability and reliability of WSI through an internationally recognised Blind Test series; and supported collaborative code development. Acceleration of the offshore renewable energy sector and protection of coastal communities are strategic priorities for the UK and involve complex WSI challenges. Designers need computational tools that can deal with complex environmental load conditions and complex structures with confidence in their reliability and appropriate use. Computational tools are essential for design and assessment within these priority areas and there is a need for continued support of their development, appropriate utilisation and implementation to take advantage of recent advances in HPC architecture. Both the CFD and CSM communities have similar challenges in needing computationally efficient code development suitable for simulations of design cases of greater and greater complexity and scale. Many different codes are available commercially and are developed in academia, but there remains considerable uncertainty in the reliability of their use in different applications and of independent qualitative measures of the quality of a simulation. One of the novelties of this CCP is that in addition to considering the interface between fluids and structures from a computational perspective, we propose to bring together the two UK expert communities who are leading developments in those respective fields. The motivation is to develop FCWSI software, which couples the best in class CFD tools with the most recent innovations in computational solid mechanics. Due to the complexity of both fields, this would not be achievable without interdisciplinary collaboration and co-design of FCWSI software. The CCP-WSI+ will bring the CFD and CSM communities together through a series of networking events and industry workshops designed to share good practice and exchange advances across disciplines and to develop the roadmap for the next generation of FCWSI tools. Training and workshops will support the co-creation of code coupling methodologies and libraries to support the range of CFD codes used in an open source environment for community use and to aid parallel implementation. The CCP-WSI+ will carry out a software audit on WSI codes and the data repository and website will be extended and enhanced with database visualisation and archiving to allow for contributions from the expanded community. Code developments will be supported through provision and management of the code repository, user support and training in software engineering and best practice for coupling and parallelisation. By bringing together two communities of researchers who are independently investigating new computational methods for fluids and structures, we believe we will be able to co-design the next generation of FCWSI tools with realism both in the flow physics and the structural response, and in this way, will unlock new complex applications in ocean and coastal engineering
All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=ukri________::137b8f9910925f9cc53ce84dd6db0d31&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eumore_vert All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=ukri________::137b8f9910925f9cc53ce84dd6db0d31&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eu