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<name>AIDASafety</name> |
<name>AIDA_V4_5_physical</name> |
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******************* |
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*** README AIDA *** |
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******************* |
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|
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This repository contains the safety model and artifacts of the study case AIDA. |
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It is provided by IRT Saint Exupéry under a Creative Commons BY-SA licence. |
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This repository is managed in versioning throught git, with the following url |
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https://sahara.pf.irt-saintexupery.com/ |
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project AIDA |
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1. AIDA description |
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2. Motivation and intended use |
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3. List of files and how to use them |
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4. Licensing information |
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************************************************************************ |
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* 1. AIDA description |
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************************************************************************ |
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The AIDA (Aircraft Inspection by Drone Assistant) system, is a Remotely Piloted Aircraft System (RPAS). |
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It is composed of a quadcopter drone, a control computer and a remote control. |
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The mission of this system is to help the pilot to inspect the aircraft before flight. |
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The quadcopter drone can be piloted in automated or manual mode. In manual mode, |
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the pilot guides the inspection of the aircraft by the drone. |
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In automated mode, the drone follows a flight plan and records the video of the inspected zone. |
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Corresponding SE version (see AIDA Architecture repository): V4.5 - S2C final delivery |
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************************************************************************ |
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* 2. Motivation and intended use |
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************************************************************************ |
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AIDA provides a reference study case representative of the complexity and criticity found in aeronautical |
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systems. |
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Our intent is to provide a repository to gather all AIDA safety modellings and artifacts in order to share different approaches and tools. |
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If you plan to use AIDA as a study case it would be kind to inform the IRT Saint-Exupery (systems-engineering@irt-saintexupery.com). We would be pleased to answer your questions. |
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Currently, the following works use this use case : |
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Prosvirnova, T., Saez, E., Seguin, C., Virelizier, P.: Handling consistency between safety and system models. |
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In: Bozzano, M., Papadopoulos, Y. (eds.) Model-Based Safety and Assessment - 5th International Symposium, IMBSA 2017, Trento, Italy, September 11-13, 2017, Proceedings. |
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Lecture Notes in Computer Science, vol. 10437, pp. 19-34. Springer (2017), |
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|
https://doi.org/10.1007/978-3-319-64119-5_2 |
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|
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************************************************************************ |
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|
* 3. List of files and how to use them |
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|
************************************************************************ |
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|
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- model : contains the SimfiaNeo models (to be opened with SimfiaNeo V1.4.2 - see https://www.protect.airbus.com/safe-mobility/simfianeo/ for more information) |
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- functional model : an MBSA model based on the functional architecture of AIDA. |
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- physical model : an MBSA model based on the physical architecture of AIDA. |
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|
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- documents : contains the safety documents related to the AIDA use case, inspired from ARP4754A and ARP4761 guidelines: |
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- AIDA - SORA analysis : partial SORA analysis of the AIDA concepts, as proposed by EASA for Unmanned Aircraft Systems operations in Specific category (see https://www.easa.europa.eu/en/document-library/easy-access-rules/easy-access-rules-unmanned-aircraft-systems-regulations-eu) |
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- Aircraft level folder : safety documents related to the "Aircraft level" |
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- FHA AIDA: Aircraft level FHA |
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- PASA - FTA : ault trees for CAT and HAZ failure conditions, for system level requirements definition (PASA) |
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- PASA AIDA : synthesis of requirements for system level |
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- System level folder : safety documents related to the "System level" |
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- SFHA AIDA: System FHA, covering all the systems of AIDA |
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- PSSA AIDA : PSSA analysis, exploiting the computation results of the MBSA physical model, and establishing the requirements for the Item levels |
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- FMES-SFMEA : simulated FMES and SFMEA at item levels for all the constituant of AIDA |
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- SSA : compliance of AIDA to the top-level requirements, integrating the quantitative results contained in the SFMEA. |
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************************************************************************ |
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|
* 4. Licensing information |
||||||
|
************************************************************************ |
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|
|
||||||
|
The whole content is provided under the following terms |
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|
|
||||||
|
Copyright (c) 2016-2022 IRT AESE (IRT Saint Exupéry). |
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|
||||||
|
All rights reserved. This program and the accompanying materials are made available under the terms of the |
||||||
|
Creative Commons Attribution-ShareAlike 4.0 International (CC BY-SA 4.0) which accompanies this distribution, |
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|
and is available at https://creativecommons.org/licenses/by-sa/4.0/ |
||||||
|
|
||||||
|
Third party components: |
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|
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||||||
|
The nodes Functions/BasicOperators/AND, Functions/BasicOperators/Comparator, Functions/BasicFunctions/InOutFunction and |
||||||
|
Functions/BasicFunctions/SourceFunction are provided under the following terms: |
||||||
|
|
||||||
|
Copyright (c) 2007-2022 ONERA. |
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|
|
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|
All rights reserved. This program and the accompanying materials |
||||||
|
are made available under the terms of the Creative Commons Attribution-ShareAlike 4.0 International (CC BY-SA 4.0) |
||||||
|
which accompanies this distribution, and is available at https://creativecommons.org/licenses/by-sa/4.0/ |
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Contact :systems-engineering@irt-saintexupery.com |