Development, Operation, and Quality Assurance of Trustworthy Smart IoT Systems
Coordinated by
SINTEF AS
Objective
To unleash the full potential of IoT, realizing the digital society and flourishing innovations in application domains such as eHealth, smart city, intelligent transport systems, and smart manufacturing, it is critical to facilitate the creation and operation of trustworthy Smart IoT Systems. Since smart IoT systems typically operate in a changing and often unpredictable environment, the ability of these systems to continuously evolve and adapt to their new environment is decisive to ensure and increase their trustworthiness, quality and user experience. The DevOps movement advocates a set of software engineering best practices and tools, to ensure Quality of Service whilst continuously evolving complex systems and foster agility, rapid innovation cycles, and ease of use . Therefore, DevOps has been widely adopted in the software industry . However, there is no complete DevOps support for trustworthy smart IoT systems today.
The main technical goal of ENACT is to develop novel IoT platform enablers to:
i) Enable DevOps in the realm of trustworthy smart IoT systems, and enrich it with novel concepts for end-to-end security and privacy, resilience and robustness strengthening trustworthiness, taking into account the challenges related to “collaborative” actuation and actuation conflicts.
ii) Facilitate the smooth integration of these to leverage DevOps for existing and new IoT platforms and approaches (e.g. FIWARE, SOFIA, and TelluCloud).
This will be accomplished by evolving current DevOps methods and techniques to support the agile development and operation of smart IoT systems, and provide a set of novel mechanisms to ensure quality assurance and trustworthiness, such as actuation conflict handling, continuous testing and delivery across IoT, edge and cloud spaces and end to end security and privacy management. Through this ENACT will provide a DevOps framework for smart IoT Systems
Other projects
MEDINA – Security framework to achieve a continuous audit-based certification in compliance with the EU-wide cloud security certification scheme
MEDINA - Security framework to achieve a continuous audit-based certification in compliance with the EU-wide cloud security certification schemeObjectiveThe MEDINA project is an EU funded-research project working in the areas of cloud security performance and audit...
SIFIS – Secure Interoperable Full-Stack Internet of Things for Smart HomeSIFIS –
SIFIS - Secure Interoperable Full-Stack Internet of Things for Smart HomeObjectiveSIFIS-Home aims at providing a secure-by-design and consistent software framework for improving resilience of Interconnected Smart Home Systems at all stack levels. To this end, the...
IoTAC – Security By Design IoT Development and Certificate Framework with Front-end Access Control
IoTAC - Security By Design IoT Development and Certificate Framework with Front-end Access ControlObjectiveIoTAC project aims to deliver a novel, secure and privacy-friendly IoT architecture that will facilitate the development and operation of more resilient IoT...
CYRENE – The Challeges of Securing Critical Infrastructures in the Digital Age
CYRENE – The Challeges of Securing Critical Infrastructures in the Digital Age Objective Global Supply Chains are a way of life for modern business, becoming more complex and integrated. The organizations that operate within the Supply Chains have become smarter...
FISHY – A COORDINATED FRAMEWORK FOR CYBER RESILIENT SUPPLY CHAIN SYSTEMS
FISHY - A COORDINATED FRAMEWORK FOR CYBER RESILIENT SUPPLY CHAIN SYSTEMS ObjectiveBuilt upon a mix of highly skilled industrial and academic partners, FISHY aims at delivering a coordinated cyber resilient platform towards establishing trusted supply chains of ICT...
ASSURED – FUTURE PROOFING OF ICT TRUST CHAINS. SUSTAINABLE OPERATIONAL ASSURANCE AND VERIFICATION REMOTE GUARDS FOR SYSTEMS-OF-SYSTEMS SECURITY AND PRIVACY.
The vision of ASSURED is to design and implement a novel policy-driven, formally verified, runtime assurance framework in the complex domain of Cyber-Physical System (CPS). ObjectiveThe design and development of a novel, highly-usable, and resilient cybersecurity,...