5. Conclusion
The integration of electronic components into a mechanical system implies, in terms of safety, specific techniques for these components and the electronic architecture (hardware) to ensure the safety of a mechatronic system.
In fact, there are techniques for detecting and even correcting errors produced by random or even systematic faults.
These techniques are very common in various fields (rail transport, air transport, energy, process control, automotive, etc.). They have been presented and illustrated with significant examples, but the number of possibilities does not allow an exhaustive enumeration. Concrete examples of fail-safe architectures are given in the reference
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Conclusion
Bibliography
Standards and norms
- Langage de programmation Ada. - ANSI/MIL-STD-1815A - 1983
- Sécurité fonctionnelle des systèmes électriques électroniques programmables relatifs à la sécurité, norme internationale. - IEC 61508 - 2010
- Functional safety. Safety Instrumented systems for the process sector – Parts 1-3. - IEC 61511 - 2003
- Nuclear power plants – Instrumentation and control important to safety – Software aspects of programmed...
Regulations
Decree 2006-1279 relating to safety of railway traffic and to interoperability of railway system (October 19, 2006).
Decree 2003-425 relating to safety of public guided transit (May 9, 2003).
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