PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2014 | nr 3 (33) | 24--33
Tytuł artykułu

Integrated Semantic-Based Processes in Digital Home

Warianty tytułu
Zintegrowane procesy bazujące na semantyce w inteligentnym domu
Języki publikacji
EN
Abstrakty
EN
The purpose of this work is to investigate the specifics in the development of technologies for heterogeneous data and process integration in digital home and to show possible solutions during design of integrated applications. The analysis of the integrated data can be useful for the development of improved algorithms for monitoring and control of digital networked home.(original abstract)
Celem niniejszej pracy jest zbadanie specyfiki w rozwoju technologii dla heterogenicznych danych i integracji procesów w inteligentnym domu oraz pokazanie możliwych rozwiązań podczas projektowania zintegrowanych aplikacji. Analiza zintegrowanych danych może być użyteczna dla rozwoju ulepszonych algorytmów monitorowania i kontroli inteligentnej sieci domu.(abstrakt oryginalny)
Słowa kluczowe
Rocznik
Numer
Strony
24--33
Opis fizyczny
Twórcy
  • Bulgarian Academy of Science Sofia, Bulgaria
Bibliografia
  • Aitken S., Curtis J., 2002, A process ontology, Knowledge Engineering and Knowledge Management: Ontologies and the Semantic Web, LNCS, vol. 2473, pp. 108-113.
  • Atanasova T., 2012, Digital networked houses: Problems, challenges and trends, [in:] Proceedings of 20th Telecommunication Forum TELFOR 2012, Belgrad, Serbia, November 20-22, 2012, pp. 1417-1420.
  • Atanasova T., 2014, Towards semantic-based process-oriented control in digital home, [in:] Ganzha M., Maciaszek L., Paprzycki M. (eds.), Proceedings of the 2014 Federated Conference on Computer Science and Information Systems. Annals of Computer Science and Information Systems, vol. 2, Polskie Towarzystwo Informatyczne, Warsaw, Institute of Electrical and Electronics Engineers, New York City, pp. 1133-1137.
  • Chan M., Estève D., Escriba C., Campo E., 2008, A review of smart homes - present state and future challenges, Computer Methods and Programs in Biomedicine, vol. 91, no. 1, pp. 55-81.
  • Colace F., De Santo M., 2011, A network management system based on ontology and slow intelligence system, International Journal of Smart Home, vol. 5, no. 3, pp. 25-38.
  • Mc Dysan D., Lundberg T., Björkman N., Latour-Henner A., 2000, Multiservice networking using a component-based switch and router architecture, IEEE 2000 Multi-Service Forum, Technical Library, http://www.msforum.org/techinfo/library.shtml.
  • Fathalipour M., Selamat A., Jung J.J., 2014, Ontology-based, process-oriented, and society-independent agent system for cloud computing, International Journal of Distributed Sensor Networks, 2014, article ID 689650, doi:10.1155/2014/689650.
  • Guillory J., Richard F., Guignard Ph., Pizzinat A., Meyer S., Charbonnier B., Guillo L., Algani C., Li H.W., Tanguy E., 2011, Towards a multiservice & multiformat optical home area network, [in:] Proceedings of 14th ITG Conference on Electronic Media Technology, CEMT 2011.
  • Holgado-Terriza J., Rodriguez-Valenzuela S., 2011, Services composition model for home-automation peer-to-peer pervasive computing, [in:] Proceedings of the Federated Conference on Computer Science and Information Systems, International Symposium on Services Science, pp. 529-536.
  • Hu H., Yang D., Fu L., Xiang H., Fu C., Sang J., Ye C., Li R., 2011, Semantic Web-based policy interaction detection method with rules in smart home for detecting interactions among user policies, IET Communications, vol. 5, no. 17, pp. 2451-2460.
  • Kofler M.J., Reinisch C., Kastner W., 2012, A semantic representation of energy-related information in future smart homes, Energy and Buildings, vol. 47, April, pp. 169-179.
  • Liu T., Wang H., Liu L., 2011, Extended ontology-based process management architecture, Cooperative Design, Visualization, and Engineering, LNCS, vol. 6874, pp. 114-120.
  • Palomäki J., Keto H., 2011, A formal presentation of the process-ontological model, [in:] Heimburger A. et al. (eds.), Information Modelling and Knowledge Bases XXII, IOS Press, Amsterdam, pp. 194-205.
  • Ricquebourg V., Durand D., Menga D., Marhic B., Delahoche L., Loge C., Jolly-Desodt A.-M., 2007, Context inferring in the smart home: An SWRL approach, [in:] Proceedings of 21st International Conference on Advanced Information Networking and Applications Workshops (AINAW'07), pp. 290-295.
  • Rodrigues C., Lima S.R., Sabucedo L.M., Carvalho P., 2012, An ontology for managing network services quality, Expert Systems with Applications, vol. 39, no. 9, pp. 7938-7946.
  • Santoso H.A., Haw S.-Ch., Abdul-Mehdi Z.T., 2011, Ontology extraction from relational database: Concept hierarchy as background knowledge, Knowledge-Based Systems, vol. 24, no. 3, pp. 457--464.
  • Tempich Ch., Pinto H.S., Sure Y., Staab S., An argumentation ontology for Distributed, Loosely-controlled and evolvInG Engineering processes of oNTologies (DILIGENT), [in:] Gómez-Pérez A., Euzenat J. (eds.), 2005, The Semantic Web: Research and Applications, Proceedings of Second European Semantic Web Conference, ESWC'2005, LNCS, vol. 3532, pp. 241-256.
  • Vilkman A., Hautala R., Pilli-Sihvola E., 2011, Multi-service model for mobility and logistics, VTT Symposium on Service Innovation, no. 271, pp. 105-111.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.ekon-element-000171331385

Zgłoszenie zostało wysłane

Zgłoszenie zostało wysłane

Musisz być zalogowany aby pisać komentarze.
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.