• DocumentCode
    715510
  • Title

    LEONORE -- Large-Scale Provisioning of Resource-Constrained IoT Deployments

  • Author

    Vogler, Michael ; Schleicher, Johannes ; Inzinger, Christian ; Nastic, Stefan ; Sehic, Sanjin ; Dustdar, Schahram

  • Author_Institution
    Distrib. Syst. Group, Vienna Univ. of Technol., Vienna, Austria
  • fYear
    2015
  • fDate
    March 30 2015-April 3 2015
  • Firstpage
    78
  • Lastpage
    87
  • Abstract
    Internet of Things (IoT) devices are usually considered as external dependencies that only provide data, or process and execute simple instructions. Recently, IoT devices with embedded execution environments emerged that allow practitioners to deploy and execute custom application logic on the device. This approach fundamentally changes the overall process of designing, developing, deploying and managing IoT systems. However, these devices exhibit significant differences in available execution environments, processing, and storage capabilities. To accommodate this diversity, a structured approach is needed to uniformly and transparently deploy application components onto a large number of heterogeneous devices. This is especially important in the context of current large-scale IoT systems, such as in the smart city domain. In this paper, we present LEONORE, a service oriented infrastructure that provides elastic provisioning of application components on resource-constrained and heterogeneous edge devices in large-scale IoT deployments. LEONORE supports push-based as well as pull-based deployments and we show that our solution is able to elastically provision large numbers of devices using a testbed based on a real-world industry scenario.
  • Keywords
    Internet of Things; embedded systems; resource allocation; service-oriented architecture; smart cities; IoT devices; LEONORE; custom application logic; embedded execution environments; heterogeneous devices; heterogeneous edge devices; large-scale IoT deployments; large-scale IoT systems; large-scale provisioning of resource-constrained IoT deployments; pull-based deployments; service oriented infrastructure; smart city domain; storage capabilities; structured approach; Buildings; Cities and towns; Containers; Hardware; Logic gates; Protocols; Software;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Service-Oriented System Engineering (SOSE), 2015 IEEE Symposium on
  • Conference_Location
    San Francisco Bay, CA
  • Type

    conf

  • DOI
    10.1109/SOSE.2015.23
  • Filename
    7133516