Coordinatore | UNIVERSITY OF NEWCASTLE UPON TYNE
Organization address
address: School of Computing Science Newcastle University contact info |
Nazionalità Coordinatore | United Kingdom [UK] |
Totale costo | 8˙148˙533 € |
EC contributo | 6˙000˙000 € |
Programma | FP7-ICT
Specific Programme "Cooperation": Information and communication technologies |
Code Call | FP7-ICT-2011-7 |
Funding Scheme | CP |
Anno di inizio | 2011 |
Periodo (anno-mese-giorno) | 2011-10-01 - 2014-09-30 |
# | ||||
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1 |
UNIVERSITY OF NEWCASTLE UPON TYNE
Organization address
address: School of Computing Science Newcastle University contact info |
UK (Newcastle upon Tyne) | coordinator | 0.00 |
2 |
AARHUS UNIVERSITET
Organization address
address: Nordre Ringgade 1 contact info |
DK (AARHUS C) | participant | 0.00 |
3 |
ATEGO SYSTEMS LIMITED
Organization address
address: SUITE 701 EAGLE TOWER, MONTPELLIER DRIVE contact info |
UK (CHELTENHAM) | participant | 0.00 |
4 |
BANG & OLUFSEN AS
Organization address
address: PETER BANGS VEJ 15 contact info |
DK (STRUER) | participant | 0.00 |
5 |
INSIEL - INFORMATICA PER IL SISTEMA DEGLI ENTI LOCALI S.P.A.
Organization address
address: VIA SAN FRANCESCO D'ASSISI 43 contact info |
IT (TRIESTE) | participant | 0.00 |
6 |
UNIVERSIDADE FEDERAL DE PERNAMBUCO
Organization address
address: AVENIDA PROFESSOR MORAES REGO - CIDADE UNIVERSITARIA 1235 contact info |
BR (RECIFE) | participant | 0.00 |
7 |
UNIVERSITAET BREMEN
Organization address
address: Bibliothekstrasse 1 contact info |
DE (BREMEN) | participant | 0.00 |
8 |
UNIVERSITY OF YORK
Organization address
address: HESLINGTON HALL contact info |
UK (YORK) | participant | 0.00 |
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The design of innovative products and services that take advantage of Systems of Systems (SoS) technology is in its infancy. It is hampered by the complexity caused by the heterogeneity and independence of SoS constituent systems and the difficulty of communication between diverse stakeholders. The state of the art in SoS engineering lacks models and tools that help developers to make trade-off decisions during design and evolution, and assist in working out and recording precise contracts between constituents and the global SoS. This leads to sub-optimal design and expensive rework during integration and in service.nCOMPASS will augment existing industry tools and practice with an underlying modelling language in which SoS architectures and contracts can be expressed. A formal semantic foundation – the first to be developed specifically for SoS engineering – will enable this language to support analysis of global SoS properties. The language and methods will be supported by an open, extendible tools platform with integrated prototype plug-ins for model construction, dynamic analysis by simulation and test automation, static analysis by model-checking and proof, and links to an established architectural modelling language (SysML). These strengthened foundations and tools will support enhanced methods guidelines that help users embed this new technology in industrial SoS practice.nTechnical advances in COMPASS are focussed on industry needs evaluated through substantial industry-led case studies in three diverse and complementary areas. These will be augmented by challenge problems solicited from a range of SoS stakeholders and developer organisations through a special interest group. The open platform, tools plug-ins, semantics, development guidelines, industry case study experience and challenge problems will ensure that COMPASS's outputs can be readily exploited by SoS developers and stakeholders as well as in future research and development.