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CORDIS

SELF assessment, protection & healing tools for a trustworthY and resilient CCAM

Deliverables

Specification for resilience tools and functional requirements

It will contain the progress of the planning phase of the systems for each task, as well as the High-Level Architecture (HLA) specifications from the WP perspective. The specifications will describe the interactions between the WP tasks, as well as the interactions of the technical work with other WPs and how they are connected to the core SELFY scenarios. (T4.1). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Dissemination, communication, and exploitation report

The Exploitation part of this deliverable will be kept sensible.Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed and achievements of Dissemination and Communication KPIs. This Deliverable will be updated in M36.Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Resilience tools and demonstrator integration reference

Brief overview of the work contributed within this WP. It will have a focus on the reference integration of the WP, including partial results and explanation of the Resilience tools being developed. (T4.2, T4.4 & T4.6). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

VSOC guide and API definition integration reference

This deliverable includes the VSOC user and administration guide, including the description of the APIs needed to integrate them by OEMs being developed (T4.5). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Responsible Research management report

Report summarising the management of Responsible Research during the project (T1.2). This Deliverable will be updated in M36.Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Scenario design and validation plan

Technical design of the different scenarios and use cases (scheme and description), as well as the plan of the validation process. In order to carry out the validation of the tools in collaborative mode, the relevant test sets are defined for each use case. (T6.1). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Specifications for situational awareness tools and functional requirements

It will contain the progress of the planning phase of the systems for each task, as well as the High-Level Architecture (HLA) specifications from the WP perspective. The specifications will describe the interactions between the WP tasks, as well as the interactions of the technical work with other WPs and how they are connected to the core SELFY scenarios. (T3.1)Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

System level requirements and system level architecture

The requirements at tools level and collaborative operational environment, identifying functional, security, technical, legal, regulatory, standards, etc. requirements. The architecture of the collaborative environment of the tools will also be defined, together with their intended functionality and the interaction between all of them. (T2.2 & T2.3)Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Standardisation and Social Sciences activities

This deliverable includes the analysis, recommendations, guidelines, and countermeasures that have been applied in SELFY tools in relation to social, inclusive and gender issues in order to convey confidence in CCAM solutions. (T2.3). This Deliverable will be updated in M30.Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Trust and data sharing tools integration reference

Brief overview of the work contributed within this WP. It will have a focus on the reference integration of the WP, including partial results and explanation of the Trust Data Management tools being developed (T5.2, T5.3 & T5.4). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Trust data management system architecture design

Ecosystem definition of the TDMS that encompasses the necessary tools to provide secure, trusted, and privacy-preserving data sharing. The specifications will describe the interactions between WP tasks, to avoid redundant work, as well as the interactions of the technical work with other WPs and how they are connected to the core SELFY scenarios. (T5.1). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Situational awareness tools and integration reference

Brief overview of the work contributed within this WP. It will have a focus on the reference integration of the WP, including partial results and explanation of the situational awareness tools being developed. (T3.3, T3.4 & T3.5). Progress monitoring: 10% with index set up, from 10% to 100% according to the number of sections of the index completed.

Publications

Impact Sensitivity Analysis of Cooperative Adaptive Cruise Control Against Resource-Limited Adversaries

Author(s): Huisman, Mischa; Murguia, Carlos; Lefeber, Erjen; van de Wouw, Nathan
Published in: Arxiv, 2024, ISSN 2576-2370
Publisher: Arxiv
DOI: 10.48550/arxiv.2304.02395

Interaction-based Offline Runtime Verification of Distributed System

Author(s): Erwan Mahe; Boutheina Bannour; Christophe Gaston; Arnault Lapitre; Pascale Le Gall
Published in: Zenodo, 2023, ISSN 0302-9743
Publisher: Springer Verlag
DOI: 10.5281/zenodo.8133804

Lecture Notes in Computer Science

Author(s): Mahe, Erwan; Bannour, Boutheina; Gaston, Christophe; Lapitre, Arnault; Gall, Pascale Le
Published in: Fundamentals of Software Engineering (FSEN 2023), 2023, ISSN 0302-9743
Publisher: Springer Verlag
DOI: 10.5281/zenodo.8133805

Fail-Safe Decision Architecture for Positioning Failures on Automated Vehicles

Author(s): Rodríguez-Arozamena, Mario; Iñigo Aranguren-Mendieta; Joshué Pérez; Zubizarreta, Asier
Published in: IEEE Autonomous and Trusted Vehicles Conference (ATC 2023), 2023
DOI: 10.5281/zenodo.8300746

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