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Verification and Validation of Automated Systems' Safety and Security

Project description

Cutting-edge V&V for automated systems

Failures in highly automated systems can be catastrophic. With increasing complexity and connectivity, unknown properties of systems may emerge, making thorough verification and validation (V&V) essential. The high complexity makes the V&V process time-consuming and costly. The EU-funded VALU3S project evaluates the state-of-the-art V&V methods and tools for automated systems in the automotive industry, agriculture, railway, healthcare, aerospace and industrial automation and robotics. The aim is to design a multi-domain framework. This includes implementing and evaluating methods and tools by qualification and quantification of safety, security and privacy using demonstrators. The methods investigated will be used to improve process workflows and implement tools that support the improved processes. This will reduce the time and cost needed to verify and validate automated systems.

Objective

Manufacturers of automated systems and the manufacturers of the components used in these systems have been allocating an enormous amount of time and effort in the past years developing and conducting research on automated systems. The effort spent has resulted in the availability of prototypes demonstrating new capabilities as well as the introduction of such systems to the market within different domains. Manufacturers of these systems need to make sure that the systems function in the intended way and according to specifications which is not a trivial task as system complexity rises dramatically the more integrated and interconnected these systems become with the addition of automated functionality and features to them.

With rising complexity, unknown emerging properties of the system may come to the surface making it necessary to conduct thorough verification and validation (V&V) of these systems. VALU3S aims to design, implement and evaluate state-of-the-art V&V methods and tools in order to reduce the time and cost needed to verify and validate automated systems with respect to safety, cybersecurity and privacy (SCP) requirements. This will ensure that European manufacturers of automated systems remain competitive and that they remain world leaders. To this end, a multi-domain framework is designed and evaluated with the aim to create a clear structure around the components and elements needed to conduct V&V process through identification and classification of evaluation methods, tools, environments and concepts that are needed to verify and validate automated systems with respect to SCP requirements.

The implemented V&V methods as well as improved process workflows and tools will also be evaluated in the project using a comprehensive set of demonstrators built from 13 use cases with specific SCP requirements from 6 domains of automotive, industrial robotics, agriculture, Aerospace, railway and health.

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Keywords

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Programme(s)

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Topic(s)

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Funding Scheme

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RIA - Research and Innovation action

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Call for proposal

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(opens in new window) H2020-ECSEL-2019-2-RIA-two-stage

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Coordinator

RISE RESEARCH INSTITUTES OF SWEDEN AB
Net EU contribution

Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.

€ 642 681,31
Address
BRINELLGATAN 4
501 15 Boras
Sweden

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Region
Södra Sverige Västsverige Västra Götalands län
Activity type
Research Organisations
Links
Total cost

The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.

€ 1 836 232,31

Participants (41)

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