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CC-Case-Safety and Security Engineering Methodology

CC-Case-Safety and Security Engineering Methodology

Tomoko Kaneko, Nobukazu Yoshioka
Copyright: © 2021 |Volume: 12 |Issue: 1 |Pages: 20
ISSN: 2640-4265|EISSN: 2640-4273|EISBN13: 9781799863809|DOI: 10.4018/IJSSSP.2021010101
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MLA

Kaneko, Tomoko, and Nobukazu Yoshioka. "CC-Case-Safety and Security Engineering Methodology." IJSSSP vol.12, no.1 2021: pp.1-20. http://doi.org/10.4018/IJSSSP.2021010101

APA

Kaneko, T. & Yoshioka, N. (2021). CC-Case-Safety and Security Engineering Methodology. International Journal of Systems and Software Security and Protection (IJSSSP), 12(1), 1-20. http://doi.org/10.4018/IJSSSP.2021010101

Chicago

Kaneko, Tomoko, and Nobukazu Yoshioka. "CC-Case-Safety and Security Engineering Methodology," International Journal of Systems and Software Security and Protection (IJSSSP) 12, no.1: 1-20. http://doi.org/10.4018/IJSSSP.2021010101

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Abstract

As the complexity of computer systems increases, assuring safety and security is significant. The authors aim to construct a new development methodology CC-Case that can assure the demands of complex systems, including IoT and AI, using safety and security technologies in an integrated manner. As a central framework of CC-Case, this manuscript shows requirements extraction by STAMP/STPA extension to safety and security (STAMP S & S) and assurance using GSN divided into a logical model and a concrete model. STAMP S & S makes it possible to model requirements based on system theory and extract more comprehensive safety and security requirements in a single model diagram. Besides, the GSN defines the overall picture of the assurance and verifies and validates the hazards and threats extracted by STAMP S & S. This paper presents the procedures of CC-Case with STAMP, GSN, and show examples of level 3 autonomous driving.

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