Resilient and Continuous Safety Assurance Methodology for CCAM and its HMI Components
- Delivery
- Available on this site
- Format
- Price
- Non-members (tax incl.):¥1,100 Members (tax incl.):¥880
- Publication code
- 20265205
- Paper/Info type
- Proceedings (Spring)
No.49-26
- Pages
- 1-7(Total 7 p)
- Date of publication
- May 2026
- Publisher
- JSAE
- Language
- English
- Event
- 2026 JSAE Annual Congress (Spring)
Detailed Information
| Author(J) | 1) Oana Moldovan |
|---|---|
| Author(E) | 1) Oana Moldovan |
| Affiliation(J) | 1) Applus+ IDIADA |
| Affiliation(E) | 1) Applus+ IDIADA |
| Abstract(E) | The CERTAIN project develops a comprehensive Safety Assurance Framework (SAF) for Cooperative, Connected, and Automated Mobility (CCAM) systems, emphasizing resilience, human-centric design, and continuous assessment. The methodology combines real-world with virtual validations, incorporating stakeholder needs, AI trustworthiness, human-machine interactions and V2X connectivity. The framework ensures ongoing safety through in-service monitoring and reporting, including handling over-the-air updates. Multiple use cases across different vehicle types, from passenger cars to trucks, and automation levels (L2-L4), validate the approach, focusing on safety, trust, user acceptance and comfort. This holistic approach aims to facilitate safe, reliable deployment of CCAM systems with industrial and regulatory consensus. |