Nowadays, Industrial Internet of Things (IIoTs) has gained attention as an emerging application area of the Internet of Things paradigm to improve efficiency and reliability in awide class of manufacture processes. This paper focuses on a combined edge-cloud computing architecture for IIoT systems, and addresses the minimization of both the mean system response time and the number of requests dropping due to a response time greater than their time deadline. The problem is formulated as a matching game with externalities between the EC servers (ECSs), and the applications themselves. The proposed strategy adopts a discard policy with the aim at favoring the IIoT-devices requests with a not-expired deadline. Moreover, a suitable discussion of the matching stability is proposed. Finally, the strategy validity has been confirmed by system performance expressed in terms of mean and worst system response time and outage probability, in comparison to methods recently proposed in literature.

A Matching Game with Discard Policy for Virtual Machines Placement in Hybrid Cloud-Edge Architecture for Industrial IoT Systems / Fantacci R., Picano B.. - In: IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS. - ISSN 1551-3203. - STAMPA. - 16:(2020), pp. 7046-7055. [10.1109/TII.2020.2999880]

A Matching Game with Discard Policy for Virtual Machines Placement in Hybrid Cloud-Edge Architecture for Industrial IoT Systems

Fantacci R.;Picano B.
2020

Abstract

Nowadays, Industrial Internet of Things (IIoTs) has gained attention as an emerging application area of the Internet of Things paradigm to improve efficiency and reliability in awide class of manufacture processes. This paper focuses on a combined edge-cloud computing architecture for IIoT systems, and addresses the minimization of both the mean system response time and the number of requests dropping due to a response time greater than their time deadline. The problem is formulated as a matching game with externalities between the EC servers (ECSs), and the applications themselves. The proposed strategy adopts a discard policy with the aim at favoring the IIoT-devices requests with a not-expired deadline. Moreover, a suitable discussion of the matching stability is proposed. Finally, the strategy validity has been confirmed by system performance expressed in terms of mean and worst system response time and outage probability, in comparison to methods recently proposed in literature.
2020
16
7046
7055
Goal 9: Industry, Innovation, and Infrastructure
Fantacci R., Picano B.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1195787
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