2021 4th IEEE International Conference on Industrial Cyber-Physical Systems (ICPS) 2021
DOI: 10.1109/icps49255.2021.9468213
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Realization of a Model-Based DevOps Process for Industrial Safety Critical Cyber Physical Systems

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Cited by 7 publications
(4 citation statements)
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References 12 publications
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“…As regards the former, O 10 develops prototypes requiring the interconnection of many diferent sub-components. This makes it diicult to determine the expected system behavior: łIt is quite hard to derive integration test cases due to the complex combination of all diferent parts.ž As regards the speciication of safety tests, in agreement to what indicated by Gautham et al [27], O 4 , O 5 , and O 8 pointed out the complexity to identify situations łthat could never happen. ž or łthat you do not expect to happen.…”
Section: O 5 (Automotive)supporting
confidence: 53%
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“…As regards the former, O 10 develops prototypes requiring the interconnection of many diferent sub-components. This makes it diicult to determine the expected system behavior: łIt is quite hard to derive integration test cases due to the complex combination of all diferent parts.ž As regards the speciication of safety tests, in agreement to what indicated by Gautham et al [27], O 4 , O 5 , and O 8 pointed out the complexity to identify situations łthat could never happen. ž or łthat you do not expect to happen.…”
Section: O 5 (Automotive)supporting
confidence: 53%
“…Speciically, Törngren et al [74] investigated how CPSs' engineering deals with the complexity of CPS design, and of the environment in which CPSs operate. In this context, it is of paramount importance to perform run-time veriication of safety requirements [27], as well as testing encapsulating model-in-the-loop (MiL) [66], software-in-the-loop (SiL), and hardware-in-the-loop (HiL) [2]. With respect to previous studies, we investigate how CPS complexity impacts the setting of CI/CD pipelines, and how developers deal with such complexity.…”
Section: Development Of Cyber-physical Systemsmentioning
confidence: 99%
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“…C, C++, or HDL) that define the model to deploy it directly in a specific hardware platform [17]. Therefore, the use of this methodology not only implies a reduction of the development time, but also lowers costs and, by avoiding the use of real prototypes, also prevents physical damage, either material or human [18]. Some examples where MBD is used to develop complex systems can be found in [16], [18], and [19].…”
Section: A Model Based Designmentioning
confidence: 99%