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Development of dynamic key figures for the identification of critical components in smart factory information networks

  • Informational risks in smart factories arise from the growing interconnection of its components, the increasing importance of real-time accessibility and exchange of information, and highly dynamic and complex information networks. Thereby, physical production more and more depends on functioning information networks due to increasing informational dependencies. Accordingly, the operational capability of smart factories and their ability to create economic value heavily depend on its information network. Thus, information networks of smart factories have to be evaluated regarding informational risks as a first prerequisite for subsequent steps regarding the management of a smart factory. In this paper, we focus on the identification of critical componentsin information networks based on key figures that quantitatively depict the availability of the information network. To enable analyses regarding dynamic effects, the developed key figures cover dynamic propagation and recoveryInformational risks in smart factories arise from the growing interconnection of its components, the increasing importance of real-time accessibility and exchange of information, and highly dynamic and complex information networks. Thereby, physical production more and more depends on functioning information networks due to increasing informational dependencies. Accordingly, the operational capability of smart factories and their ability to create economic value heavily depend on its information network. Thus, information networks of smart factories have to be evaluated regarding informational risks as a first prerequisite for subsequent steps regarding the management of a smart factory. In this paper, we focus on the identification of critical componentsin information networks based on key figures that quantitatively depict the availability of the information network. To enable analyses regarding dynamic effects, the developed key figures cover dynamic propagation and recovery effects. To demonstrate their applicability, we investigate two possible threat scenarios in an exemplary information network. Further, we integrated the insights of two expert interviews of two global companies in the automation and packaging industry. The results indicate that the developed key figures offer a promising approach to better analyse and understand informational risks in smart factory information networks.show moreshow less

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Metadaten
Author:Björn Häckel, Daniel Miehle, Stefan Pfosser, Jochen ÜbelhörORCiD
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/117505
URL:https://aisel.aisnet.org/ecis2017_rip/27/
ISBN:978-0-9915567-0-0OPAC
Parent Title (English):Proceedings of the 25th European Conference on Information Systems (ECIS), Guimarães, Portugal, June 5-10, 2017
Publisher:AIS Electronic Library (AISeL)
Place of publication:New York, NY
Editor:Isabel Ramos, Virpi Tuunainen, Helmut Krcmar
Type:Conference Proceeding
Language:English
Date of Publication (online):2024/12/12
Year of first Publication:2017
Publishing Institution:Universität Augsburg
Release Date:2024/12/12
First Page:2767
Last Page:2776
Institutes:Wirtschaftswissenschaftliche Fakultät
Wirtschaftswissenschaftliche Fakultät / Institut für Betriebswirtschaftslehre
Nachhaltigkeitsziele
Nachhaltigkeitsziele / Ziel 9 - Industrie, Innovation und Infrastruktur
Dewey Decimal Classification:3 Sozialwissenschaften / 33 Wirtschaft / 330 Wirtschaft