Safety Validation Using AADL System Architecture Models

Author:

Philip Gracy1,Suresh Varsha P.2,D'Souza Meenakshi2

Affiliation:

1. CEMILAC-DRDO, Bangalore, India

2. IIIT-Bangalore, India

Publisher

ACM

Reference25 articles.

1. RTCA Software Considerations in Airborne systems and equipment certification DO-178C 2011. RTCA Software Considerations in Airborne systems and equipment certification DO-178C 2011.

2. RTCA DO-331 Model based Development and Verification Supplement to DO-178C and DO-278A 2011. RTCA DO-331 Model based Development and Verification Supplement to DO-178C and DO-278A 2011.

3. SAE ARP 4754 Guidelines for Development of Civil and Aircraft Systems 2010. SAE ARP 4754 Guidelines for Development of Civil and Aircraft Systems 2010.

4. SAE ARP 4761 Guidelines and Methods for Conducting the Safety Assessment Process on Civil Airborne Systems and Equipment 1996. SAE ARP 4761 Guidelines and Methods for Conducting the Safety Assessment Process on Civil Airborne Systems and Equipment 1996.

5. Feiler P. and Gluch D. Model-based Engineering with AADL: An Introduction to the SAE Architecture Analysis and Design Language 2012 Addison Wesley. Feiler P. and Gluch D. Model-based Engineering with AADL: An Introduction to the SAE Architecture Analysis and Design Language 2012 Addison Wesley.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Improving consistency of AADL models: A composition approach;Systems Engineering;2023-01-11

2. A combination method for integrated modular avionics safety analysis;Aircraft Engineering and Aerospace Technology;2022-08-29

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