- -

Integración automática de dispositivos en el Hogar Digital a través de la generación de adaptadores dirigida por modelos

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Integración automática de dispositivos en el Hogar Digital a través de la generación de adaptadores dirigida por modelos

Mostrar el registro completo del ítem

Rodríguez, M.; Zalama, E.; González, I. (2016). Integración automática de dispositivos en el Hogar Digital a través de la generación de adaptadores dirigida por modelos. Revista Iberoamericana de Automática e Informática industrial. 13(3):363-369. https://doi.org/10.1016/j.riai.2016.03.007

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/143641

Ficheros en el ítem

Metadatos del ítem

Título: Integración automática de dispositivos en el Hogar Digital a través de la generación de adaptadores dirigida por modelos
Otro titulo: Improving the interoperability in the Digital Home through the automatic generation of software adapters
Autor: Rodríguez, María Zalama, Eduardo González, Ignacio
Fecha difusión:
Resumen:
[ES] En el contexto del Hogar Digital, donde múltiples sistemas de muy diversa índole tienen que trabajar conjuntamente, se han hecho muchos esfuerzos encaminados a conseguir un estándar de comunicaciones que permita la ...[+]


[EN] In the context of the Digital Home, where multiple heterogeneous systems live together, many efforts have been made to achieve the standardization that will guarantee the interoperability among them. The Digital Home ...[+]
Palabras clave: Code , Generation , Interaction , Robots , System models , Código , Generación , Interacción , Modelos de sistemas
Derechos de uso: Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)
Fuente:
Revista Iberoamericana de Automática e Informática industrial. (issn: 1697-7912 ) (eissn: 1697-7920 )
DOI: 10.1016/j.riai.2016.03.007
Editorial:
Universitat Politècnica de València
Versión del editor: https://doi.org/10.1016/j.riai.2016.03.007
Código del Proyecto:
info:eu-repo/grantAgreement/MITURCO//TSI-020100-2011-0313/ES/DIGITAL HOME COMPLIANT II/
Agradecimientos:
Este trabajo ha sido posible gracias al soporte financiero ofrecido por el Departamento de Ciencia y Tecnología, Ministerio de Industria, Energía y Turismo y a los fondos FEDER. Nos gustaría agradecerle a la Universidad ...[+]
Tipo: Artículo

References

Allard, J., Chinta, V., Gundala, S., Richard III, G.G., 2003. Jini meets UPnP: an architecture for Jini/UPnP interoperability, in: Applications and the Internet, 2003. Proceedings. 2003 Symposium on. pp. 268-275.

Cândido, G., Jammes, F., de Oliveira, J.B., Colombo, A.W., 2010. SOA at device level in the industrial domain: Assessment of OPC UA and DPWS specifications, in: Industrial Informatics (INDIN), 2010 8th IEEE International Conference on. IEEE, pp. 598-603.

Chang, C.-H., Lu, C.-W., Kao, K.-F., Chu, W.C., Yang, C.-T., Hsueh, N.-L., Hsiung, P.-A., Koong, C.-S., 2011. A SysML-Based Requirement Supporting Tool for Embedded Software, in: 2011 5th International Conference on Secure Software Integration Reliability Improvement Companion (SSIRI-C). Presented at the 2011 5th International Conference on Secure Software Integration Reliability Improvement Companion (SSIRI-C), pp. 202-206. DOI:10.1109/SSIRI-C.2011.34 [+]
Allard, J., Chinta, V., Gundala, S., Richard III, G.G., 2003. Jini meets UPnP: an architecture for Jini/UPnP interoperability, in: Applications and the Internet, 2003. Proceedings. 2003 Symposium on. pp. 268-275.

Cândido, G., Jammes, F., de Oliveira, J.B., Colombo, A.W., 2010. SOA at device level in the industrial domain: Assessment of OPC UA and DPWS specifications, in: Industrial Informatics (INDIN), 2010 8th IEEE International Conference on. IEEE, pp. 598-603.

Chang, C.-H., Lu, C.-W., Kao, K.-F., Chu, W.C., Yang, C.-T., Hsueh, N.-L., Hsiung, P.-A., Koong, C.-S., 2011. A SysML-Based Requirement Supporting Tool for Embedded Software, in: 2011 5th International Conference on Secure Software Integration Reliability Improvement Companion (SSIRI-C). Presented at the 2011 5th International Conference on Secure Software Integration Reliability Improvement Companion (SSIRI-C), pp. 202-206. DOI:10.1109/SSIRI-C.2011.34

Chen, S., Song, S., Li, L., Shen, J., 2009. Survey on smart grid technology. Power Syst. Technol. 33, 1-7.

Consortium, W.W.W., 2003. Web services architecture. W3C Work. Draft 8.

Echonet Consortium, 2013. Echonet Lite Specification.

Emig, C., Krutz, K., Link, S., Momm, C., Abeck, S., 2007. Model-driven development of SOA services. Univ. Karlsr. TH Karlsr.

Fischer, C., 2008. Feedback on household electricity consumption: a tool for saving energy? Energy Effic. 1, 79-104.

Furmento, N., Lee, W., Mayer, A., Newhouse, S., Darlington, J., 2002. ICENI: an open grid service architecture implemented with Jini, in: Proceedings of the 2002 ACM/IEEE Conference on Supercomputing. pp. 1-10.

Futured | Plataforma española de redes eléctricas, 2012. Agenda estratégica de investigación.

González Alonso, I., Álvarez Fres, O., Alonso Fernández, A., del Torno, P.G., Maestre, J.M., Almudena García Fuente, M., 2012. Towards a new open communication standard between homes and service robots, the DHCompliant case. Robot. Auton. Syst. 60, 889-900.

Harrison, W., Barton, C., Raghavachari, M., 2000. Mapping UML designs to Java. ACM.

Hause, M.C., Thom, F., 2008. An Integrated MDA Approach with SysML and UML, in: 13th IEEE International Conference on Engineering of Complex Computer Systems, 2008. ICECCS 2008. Presented at the 13th IEEE International Conference on Engineering of Complex Computer Systems, 2008. ICECCS 2008, pp. 249-254. DOI:10.1109/ICECCS.2008.21

Jongmans, S.-S.T., Santini, F., Sargolzaei, M., Arbab, F., Afsarmanesh, H., 2012. Automatic code generation for the orchestration of web services with Reo, in: Service-Oriented and Cloud Computing. Springer, pp. 1-16.

Kaed, C. El, Denneulin, Y., Ottogalli, F.-G., Mora, L.F.M., 2010. Combining ontology alignment with model driven engineering techniques for home devices interoperability, in: Software Technologies for Embedded and Ubiquitous Systems. Springer, pp. 71-82.

Kleppe, A.G., Warmer, J., Bast, W., Explained, M.D.A., 2003. The model driven architecture: practice and promise. Addison-Wesley Longman Publishing Co., Inc., Boston, MA.

KNX Association, n.d. KNX National WebSite [WWW Document]. URL https://www.knx.org/es/ (accessed 11.4.13).

Lee, C., Helal, S., 2002. Protocols for service discovery in dynamic and mobile networks. Int. J. Comput. Res. 11, 1-12.

Loy, D., Dietrich, D., Schweinzer, H.-J., 2012. Open control networks: LonWorks/EIA 709 technology. Springer Science & Business Media.

Musset, J., Juliot, É., Lacrampe, S., Piers, W., Brun, C., Goubet, L., Lussaud, Y., Allilaire, F., 2006. Acceleo user guide.

Nain, G., Daubert, E., Barais, O., Jézéquel, J.-M., 2008. Using mde to build a schizophrenic middleware for home/building automation. Springer.

Otero, A.P., Suárez, R., Varas, J.M.R., Suárez, M., Fuente, M.P.A.G., Fernández, R., Fernández, M.R., Alonso, I.G., 2015. INTEGRATION OF DIGITAL HOME, SMART APPLIANCES AND SERVICE ROBOTS USING DHCOMPLIANT 2.0. Int. J. Robot. Autom. 30. doi:10.2316/Journal.206.2015.4.206-4332

Papazoglou, M.P., Van Den Heuvel, W.-J., 2007. Service oriented architectures: approaches, technologies and research issues. VLDB J. 16, 389-415.

Parra, J., Hossain, M.A., Uribarren, A., Jacob, E., Saddik, A. El, 2009. Flexible smart home architecture using device profile for web services: a peer-to-peer approach. Int. J. Smart Home 3, 39-50.

Perumal, T., Ramli, A.R., Leong, C.Y., Mansor, S., Samsudin, K., 2008. Interoperability among Heterogeneous Systems in Smart Home Environment, in: IEEE International Conference on Signal Image Technology and Internet Based Systems, 2008. SITIS '08. Presented at the IEEE International Conference on Signal Image Technology and Internet Based Systems, 2008. SITIS '08, pp. 177-186. DOI:10.1109/SITIS.2008.94

Rahman, M.A.A., Yasuda, A., Mayama, K., Mizukawa, M., Takasu, T., 2011. Model-Driven Development of Intelligent Mobile Robot Using Systems Modeling Language (SysML). INTECH Open Access Publisher.

Raslan, W., Sameh, A., 2007. Mapping SysML to SystemC., in: FDL. pp. 225-230.

Ribarić, M., Gašević, D., Milanović, M., Giurca, A., Lukichev, S., Wagner, G., 2008. Model-Driven engineering of rules for web services, in: Generative and Transformational Techniques in Software Engineering II. Springer, pp. 377-395.

Selic, B., 2003. The pragmatics of model-driven development. Softw. IEEE 20, 19-25.

Sulistyo, S., Prinz, A., 2009. Model-Driven Development Approach for Providing Smart Home Services, in: Mokhtari, M., Khalil, I., Bauchet, J., Zhang, D., Nugent, C. (Eds.), Ambient Assistive Health and Wellness Management in the Heart of the City, Lecture Notes in Computer Science. Springer Berlin Heidelberg, pp. 274-277.

Talal, B.K., Rachid, M., 2013. Service Discovery -- A Survey and Comparison. ArXiv13082912 Cs.

Teirikangas, J., 2001. HAVi: Home Audio Video Interoperability. Hels. Univ. Technol.

Tribelhorn, B., Dodds, Z., 2007. Evaluating the Roomba: A low-cost, ubiquitous platform for robotics research and education., in: ICRA. pp. 1393-1399.

Vidal, J., De Lamotte, F., Gogniat, G., Soulard, P., Diguet, J.-P., 2009. A codesign approach for embedded system modeling and code generation with UML and MARTE, in: Design, Automation & Test in Europe Conference & Exhibition, 2009. DATE'09. pp. 226-231.

Warriach, E.U., 2013. State of the art: embedded middleware platform for a smart home. Int J Smart Home 7, 275-294.

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem