Osmosis: The Osmotic Computing Platform for Microelements in the Cloud, Edge, and Internet of Things.

Rapid growth and evolution in the number, functionalities, and scope of Internet of Things devices is evident. We present osmotic computing as a new paradigm able to respond to resource heterogeneity, secure data exchange, and efficient microservices deployment across federated cloud systems.

Detalles Bibliográficos
Publicado en:Computer (00189162) Vol. 52; no. 8; pp. 14 - 27
Autores principales: Villari, Massimo, Fazio, Maria, Dustdar, Schahram, Rana, Omer, Jha, Devki Nandan, Ranjan, Rajiv
Formato: Artículo
Publicado: IEEE Aug2019
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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          Villari, Massimo
          Fazio, Maria
          Dustdar, Schahram
          Rana, Omer
          Jha, Devki Nandan
          Ranjan, Rajiv
        affil:
          University of Messina, Italy
          Distributed Systems, Technische Universitat Wien, Austria
          Computer Science and Informatics, Cardiff University, Scotland
          Computing, Newcastle University, United Kingdom
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        Osmosis
        Edges (Geometry)
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          Osmosis
          Edges (Geometry)
      keyword:
        Cloud computing
        Computational modeling
        Data centers
        Edge computing
        Internet of Things
        Sensors
      ab: Rapid growth and evolution in the number, functionalities, and scope of Internet of Things devices is evident. We present osmotic computing as a new paradigm able to respond to resource heterogeneity, secure data exchange, and efficient microservices deployment across federated cloud systems.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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