7,005 research outputs found

    Modeling Virtual Organization Architecture with the Virtual Organization Breeding Methodology

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    While Enterprise Architecture Modeling (EAM) methodologies become more and more popular, an EAM methodology tailored to the needs of virtual organizations (VO) is still to be developed. Among the most popular EAM methodologies, TOGAF has been chosen as the basis for a new EAM methodology taking into account characteristics of VOs presented in this paper. In this new methodology, referred as Virtual Organization Breeding Methodology (VOBM), concepts developed within the ECOLEAD project, e.g. the concept of Virtual Breeding Environment (VBE) or the VO creation schema, serve as fundamental elements for development of VOBM. VOBM is a generic methodology that should be adapted to a given VBE. VOBM defines the structure of VBE and VO architectures in a service-oriented environment, as well as an architecture development method for virtual organizations (ADM4VO). Finally, a preliminary set of tools and methods for VOBM is given in this paper.Comment: 9 pages, 4 figure

    An environment to support negotiation and contracting in collaborative networks

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    During the last years, manufacturing and service industries faced a global change in the production paradigm. They have to continuously adapt their operating principles in reaction to new business or collaboration opportunities, where a natural reaction is a shift to a new business paradigm with the creation of strategic alliances for product or services development, but also for innovative and emergent business services design. On one hand, the process of creating such alliances can be rather simple if organizations share the same geographical and cultural context. But on the other hand, considering different conditions, there might be a low success rate in the creation of successful consortia. One known reason for such low rate are the delays resulting from negotiations in the establishment of collaboration commitments, represented by contracts or agreements, which are crucial in the creation of such alliances. The collaborative networks discipline covers the study of networks of organizations specially when supported by computer networks. This thesis contributes with research in this field describing the creation process of virtual organizations, and proposing a negotiation support environment to help participants in the negotiation of the consortia creation process and in the co-design of new business services. A negotiation support environment is therefore proposed and described with its main requirements, adopted negotiation protocol, conceptual architecture, models, and software environment. To demonstrate the feasibility of the implementation of the proposed systems, a proof-ofconcept software prototype was implemented and tested using some specific scenarios. This thesis work has been validated adopting a methodology that includes: (i) validation in the research community; (ii) validation in a solar industry network; and (iii) validation by comparison analysis

    Cloud-based Virtual Organization Engineering

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    Nowadays we may notice that SOA arrived to its maturity stage and Cloud Computing brings the next paradigm-shift regarding the software delivery business model. In such a context, we consider that there is a need for frameworks to guide the creation, execution and management of virtual organizations (VO) based on services from different Clouds. This paper will introduce the main components of such a framework that will innovatively combine the principles of event-driven SOA, REST and ISO/IEC 42010:2007 multiple views and viewpoints in order to provide the required methodology for Cloud-based virtual organization (Cloud-VO) engi-neering. The framework will consider the resource concept found in software architectures like REST or RDF as the basic building block of Cloud-VO. and will make use of resources’ URIs to create the Cloud-VO’s resource allocation matrix. While the matrix is used to declare activity-resources relationships, the resource catalogue concept will be introduced as a way to describe the resource in one place, using as many viewpoints as needed, and then to reuse that description for the creation or simulation of different VOs

    A collaborative platform for an ambient assisted living ecosystem

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    The population ageing is a global trend that affects almost all countries in the world. The global share of people with 60 years or over is expected to reach 21.6% by 2050. The social and economic impact of this tendency is huge, creating new challenges to healthcare and social support services. Furthermore, population ageing is linked to an increased number of people with physical limitations together with the isolation of persons. The Ambient Assisted Living paradigm seeks to answer to some of this challenges through the integration of innovative technologies, products, systems and services. Aiming the development of an ecosystem of products and services for Ambient Assisted Living, the AAL4ALL project was created joining more than thirty research, academic and industry partners. During the AAL4ALL project a 3-layered model of services ecosystem was adopted for the conceptual architecture. This work presents a collaborative platform as a contribution to the top layer of the conceptual architecture - AAL Ecosystem.O envelhecimento da população é uma tendência global que afeta quase todos os países no mundo. A nível mundial, a percentagem de pessoas com mais de 60 anos deve atingir os 21,6% até 2050. Os impactos sociais e económicos desta tendência são enormes, criando novos desafios aos serviços de saúde e de assistência social. Além disso, o envelhecimento populacional significa um aumento do número de pessoas com limitações físicas bem como o seu isolamento. O paradigma de Ambient Assisted Living procura responder a alguns destes desafios através da integração de tecnologias, produtos, sistemas e serviços inovadores. Com o objetivo de desenvolver um ecossistema de produtos e serviços de Ambient Assisted Living, o projeto AAL4ALL foi criado reunindo mais de trinta parceiros das áreas académica, de investigação e indústria. Durante o projeto AAL4ALL, um modelo de ecossistema de serviços de 3 camadas foi adotado para a arquitetura conceptual. Este trabalho apresenta uma plataforma colaborativa como contributo para a camada superior da arquitetura conceptual – Ecossistema AAL

    Towards the development of the framework for inter sensing enterprise architecture

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    [EN] Inter-enterprise architecture (IEA) is a new concept that seeks to apply the tools and methodologies of enterprise architecture (EA) in a collaborative context, in order to model collaborative organizations in an inclusive manner. According to the main enterprise architectures proposed to this point, an EA should be conformed at least for a framework, a methodology and a modelling language. Sensing enterprise (SE) is an attribute of an enterprise or a network that allows it to react to business stimuli originating on the Internet. These fields have come into focus recently, and there is not evidence of the use of IEA for modelling a SE, while finding an interesting gap to work on. Thus, this paper proposes an initial framework for inter sensing enterprise architecture (FISEA), which seeks to classify, organize, store and communicate, at the conceptual level, all the elements for inter-sensing enterprise architectures and their relationships, ensuring their consistency and integrity. This FISEA provides a clear idea about the elements and views that create collaborative network and their inter-relationships, based on the support of Future Internet.This work was supported by the European Commission FP7 UNITE Project, through its Secondment Programme and the Universitat Politecnica de Valencia ADENPRO-PJP project (ref. SP20120703).Vargas, A.; Cuenca, L.; Boza, A.; Sacala, I.; Moisescu, M. (2016). Towards the development of the framework for inter sensing enterprise architecture. Journal of Intelligent Manufacturing. 27(1):55-72. https://doi.org/10.1007/s10845-014-0901-zS5572271Adaba, G., Rusu, L., & Mekawy, M. (2010). Business-IT alignment in trade facilitation: A case study. In organizational, business, and technological aspects of the knowledge society. Communications in Computer and Information. Science, 44(112), 146–154.Afsarmanesh, H., & Msanjila, S. (2008). Inter-organizational trust in VBEs. In L. Camarinha-Matos, H. Afsarmanesh, & M. Ollus (Eds.), Methods and tools for collaborative networked organizations (pp. 91–118). New York: Springer.Afsarmanesh, H., Camarinha-Matos, L., & Ermilova, E. (2008). VBE reference framework. In L. Camarinha-Matos, H. Afsarmanesh, & M. Ollus (Eds.), Methods and tools for collaborative networked organizations (pp. 35–68). New York: Springer.Arango, M., Londoño, J., & Zapata, J. (2010). Arquitectura empresarial- Una visión general. Revista Ingenierías Universidad de Medellín, 9(16), 101–111.Audy, J., Lehoux, N., & D’Amours, S. (2012). A framework for an efficient implementation of logistics collaborations. International Transactions in Operational Research, 19(5), 633–657.Boza, A., Cuenca, L., Poler, R., Michaelides, Z., & Systems, Enterprise Information. (2014). The interoperability force in the ERP field. Enterprise Information Systems,. doi: 10.1080/17517575.2013.866697Camarinha-Matos, L., & Afsarmanesh, H. (2005). Collaborative networks: A new scientific discipline. Journal of Intelligent Manufacturing, 16(4–5), 439–452.Camarinha-Matos, L., & Afsarmanesh, H. (2008). Collaborative networks: Reference modeling. New York: Springer.Camarinha-Matos, L., Afsarmanesh, H., & Ollus, M. (2008). ECOLEAD and CNO base concepts. In L. M. Camarinha-Matos, H. Afsarmanesh, & M. Ollus (Eds.), Methods and tools for collaborative networked organizations (pp. 35–68). New York: Springer.Chalmeta, R., & Grangel, R. (2003). ARDIN extension for virtual enterprise integration. The Journal of Systems and Software, 67(3), 141–152.Chen, D., Vallespir, B., & Doumeingts, G. (1997). GRAI integrated methodology and its mapping onto generic enterprise reference architecture and methodology. Computers in Industry, 33(2), 387–394.Choi, Y., Kang, D., Chae, H., & Kim, K. (2008). An enterprise architecture framework for collaboration of virtual enterprise chains. The International Journal of Advanced Manufacturing Technology, 35(11–12), 1065–1078.CIMOSA Asociation. (1996). CIMOSA Primer on key concepts, purpose and business value.Council of Supply Chain Management Professionals CSCMP. (2010). CSCMP. Glosary of terms. from http://cscmp.org/resources-research/glossary-terms . Accessed 9 February 2013Coutinho, C., Cretan, A., Ferreira, C., Ghodous, P., & Jardim-Goncalves, R. (2014). Service-based negotiation for advanced collaboration in enterprise networks. Journal of Intelligent Manufacturing,. doi: 10.1007/s10845-013-0857-4Cuenca, L. (2009). Marco arquitectónico para la propuesta IE-GIP. Extensión de la arquitectura CIMOSA. Aplicación a una empresa del sector cerámico. Tesis Doctoral Universidad Politecnica de Valencia.Cuenca, L., Boza, A., & Ortiz, A. (2011). An enterprise engineering approach for the alignment of business and information technology strategy. International Journal of Computer Integrated Manufacturing, 24(11), 974–992.Cuenca, L., Ortiz, A., & Boza, A. (2005). Arquitectura de Empresa. Visión General. Gijón: IX Congreso de Ingeniería de Organización.Dong, X., Liu, Q., & Yin, D. (2008). Business performance, business strategy, and information system strategic alignment: An empirical study on Chinese firms. Tsinghua Science and Technology, 13(3), 348–354.Ermilova, E., & Afsarmanesh, H. (2007). Modeling and management of profiles and competencies in VBEs. Journal of Intelligent Manufacturing, 18(5), 561–586.Estimali, H., Gardesh, H., & Sikari, S. (2010). Validating ITIL maturity to strategic business-IT alignment. In 2nd International conference on computer technology and development (ICCTD 2010).European Commission European Society and Media. (2007). Dygital Business Ecosystems. In F. Nachira, P. Dini, A. Nicolai, M. Le Louarn, & L. Rivera (Eds.). http://www.digital-ecosystems.org/book/ . Luxembourg: Office for Official Publications of the European Communities. Accessed 15 October 2012Executive Branch of the U.S. Federal Government. (2012). A Common Approach to Federal Enterprise Architecture. The White House. http://www.whitehouse.gov/sites/default/files/omb/assets/egov_docs/common_approach_to_federal_ea.pdf . Accessed 13 August 2013Franco, R., Gomez, P., Ortiz, A., & Navarro, R. (2012). Integrated approach for interoperability in collaborative networs and service-based ecosystems. In R. Poler, G. Doumeingts, B. Katzy, & R. Chalmeta (Eds.), Enterpise interoperability V (pp. 329–339). London: Springer.Force, I. F. I. P.-I. F. A. C. Task. (1998). GERAM: Generalised enterprise reference architecture and methodology. International Federation for Information Processing, 1(2), 30.Future Internet Enterprise Systems (FInES) Cluster. (2012). FInES Research Roadmap 2025. From http://cordis.europa.eu/fp7/ict/enet/documents/fines-research-roadmap-v30_en.pdf . Accessed 13 October 2013Henderson, J., & Venkatraman, N. (1993). Strategic alignment: Leveraging information technology for transforming organizations. IBM Systems Journal, 32(1), 472–484.Hu, Q., & Huang, D. (2006). Using the balanced scorecard to achieve sustained IT-business alignment: A case study. Communications of the Association for Information Systems, 17, 181–204.ISO 15704. (2000). Industrial automation systems–Requirements for enterprise-reference architectures and methodologies.ISO/CEN 19439. (2006). Enterprise integration–Framework for enterprise modelling.Kilger, C., Reuter, B., & Stadtler, H. (2008). Collaborative planning. In H. Stadtler & C. Kilger (Eds.), Supply chain management and advanced planning-concepts, models software and case studies (pp. 263–284). Berlin, Heidelberg: Springer.Kosanke, K., Vernadat, F., & Zelm, M. (1999). CIMOSA: Enterprise engineering and integration. Computers in Industry, 40(2), 83– 97.Lankhorst, M. (2009). Enterprise architecture at work: Modelling, communication and analysis. New York: Springer.Luftman, J. (2004). Assessing business-IT alignment maturity. Communications of the Association for Information Systems, 4, 99.Maes, R. (1999). Reconsidering information management through a generic framework. Amsterdam: Universiteit van Amsterdam, Department of Accountancy & Information Management.Mehandjiev, N., & Grefen, P. (2010). Dynamic business process formation for instant virtual enterprises. London.Mekawy, M., Rusu, L., & Ahmed, N. (2009). Business and IT alignment: An evaluation of strategic alignment models. In best practices for the knowledge society. Knowledge, Learning, Development and Technology for All, 49, 447–455.Moisescu, M., Sacala, I., Stanescu, A., & Serbanescu, C. (2012). Towards integration of knowledge extraction form process interoperability in future internet enterprise systems. Information Control Problems in Manufacturing, 14(1), 1458–1463.Ortiz, A. (1998). Propuesta para el Desarrollo de Programas de Integración Empresarial en Empresas Industriales. Aplicación a una Empresa del Sector Cerámico: Tesis Doctoral Universidad Politécnica de Valencia.Palmer, C., Harding, J., Swarnkar, R., Das, B., & Young, R. (2013). Generating rules from data mining for collaboration moderator services. Journal of Intelligent Manufacturing, 24, 313–330.Pijpers, V., Gordijn, J., & Akkermans, H. (2009). Aligning information system design and business strategy–A starting internet company. In the practice of enterprise modeling. Lecture Notes in Business Information Processing, 15, 47–61.Plaza, J., Burgos, J., & Carmona, E. (2010). Measuring stakeholder integration: Knowledge, interaction and adaptational behavior dimensions. Journal of Business Ethics, 93, 419–442.Romero, D., Galeano, N., & Molina, A. (2010). Virtual organisation breeding environments value system and its elements. Journal of Intelligent Manufacturing, 21(3), 267–286.Sacala, I., Moisescu, M., & Repta, D. (2013). Towards the development of the future internet based enterprise in the context of cyber-physical systems. In 2013 19th International conference on control systems and computer science (CSCS), (pp. 405–412).Santana, R., Daneva, M., van Eck, P., & Wieringa, R. (2008). Towards a business-IT aligned maturity model for collaborative networked organizations. In 12th International conference on advanced information systems engineering.Schekkerman, J. (2004). Enterprise architecture validation. Achieving business-aligned and validated entreprise architectures. Institute For Enterprise Architecture Developments (IFEAD). http://enterprise-architecture.info/Images/Extended%20Enterprise/Extended%20Enterprise%20Architecture2.htm . Accessed 10 October 2011Schekkerman, J. (2006). Extended enterprise architecture framework essentials guide. Retrieved 2012 from Institute For Enterprise Architecture Developments (IFEAD). http://enterprise-architecture.info/Images/E2AF/Extended%20Enterprise%20Architecture%20Framework%20Essentials%20Guide%20v1.5.pdf . Accessed 23 September 2012Stadtler, H. (2009). A framework for collaborative planning and state-of-the-art. OR Spectrum, 31, 5–30.Stelzer, D. (2010). Enterprise architecture principles: Literature review and research directions. Service-Oriented Computing. Lecture Notes in Computer Science, pp. 12–21.Swarnkar, R., Choudhary, A., Harding, J., Das, B., & Young, R. (2012). A framework for collaboration moderator services to support knowledge based collaboration. Journal of Intelligent Manufacturing, 23, 2003–2023.The, OPEN GROUP. (2011). TOGAF. http://www.opengroup.org/togaf/ . Accessed 18 November 2011U.S. Department of the Treasury. (2000). Treasury enterprise architecture framework. http://www.treasury.gov/Pages/default.aspx . Accessed 23 November 2011United States Department of Defense. (2010). Department of defense architecture framework. http://dodcio.defense.gov/dodaf20/dodaf20_capability.aspx . Accessed 28 November 2011Vargas, A., Boza, A., & Cuenca, L. (2011). Towards interoperability through Inter-enterprise collaboration architectures. In R. Meersman, T. Dillon, & P. Herrero (Eds.), On the move to meaningful internet systems: OTM 2011 workshops. Lecture Notes in Computer Science, Vol. 7046, pp. 102–111.Vargas, A., Boza, A., Cuenca, L., & Sacala, I. (2013a). Inter-enterprise architecture and internet of the future. Technological Innovation for the Internet of Things, 394, 25–32.Vargas, A., Boza, A., Cuenca, A., & Ortiz, A. (2013b). Towards a framework for inter-enterprise architecture to boost collaborative networks. In On the move to meaningful internet systems: OTM 2013 workshops. Lecture Notes in Computer Science, 8186, 179–188.Vargas, A., Boza, A., Cuenca, L., & Ortiz, A. (2014). The importance of strategic alignment in enterprise collaboration. In J. C. Prado-Prado & J. García-Arca (Eds.), Annals of industrial engineering 2012 (pp. 71–78). London: Springer.Vernadat, F. (2003). Enterprise modelling and integration: From fact modelling to enterprise interoperability. Enterprise inter- and intra-organizational integration: Building international consensus. Series: IFIP Advances in Information and Communication Technology, 108.Vesterager, J., Tølle, M., & Bernus, P. (2002). VERA: Virtual enterprise reference. GLOBEMEN final plenary: In GMNBook.Wang, X., Zhou, X., & Jiang, L. (2008). A method of business and IT alignment based on enterprise architecture. In IEEE international conference on service operations and logistics, and informatics, pp. 740–745.Zachman, J. (1997). Enterprise architecture: The issue of the century. Database Programming and Design, 1–13

    Structure and Behaviour of Virtual Organisation Breeding Environments

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    This paper provides an outline of a formal approach that we are developing for modelling Virtual Organisations (VOs) and their Breeding Environments (VBEs). We propose different levels of representation for the functional structures and processes that VBEs and VOs involve, which are independent of the specificities of the infrastructures (organisational and technical) that support the functioning of VBEs. This allows us to reason about properties of tasks performed within VBEs and services provided through VOs without committing to the way in which they are implemented
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