H2020Staff exchange2021–2024

RESPECT · Secure and Privacy-preserving Indoor Robotics for Healthcare Environments

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2021-05-01 → 2024-04-30
EU contribution
€1,094,800
Participants
11
Scheme
MSCA-RISE

Lines connect the coordinator with its partners.

Results in brief

Secure and Privacy-preserving Indoor Robotics for Healthcare Environments

Advances in robotics and artificial intelligence hold a promise for the radical transformation of healthcare services. Besides, the COVID-19 pandemic demonstrates that robots are crucial allies during pandemics. Yet, the adoption of these technologies is impeded by concerns related to cybersecurity issues. Indeed, cyberattacks already had dire physical repercussions in healthcare, leading to delayed treatments and death of patients. The rise of such cybersecurity incidents is a timely reminder that not only the volume of attacks is increasing but their diversity is also expanding, posing a significant threat towards disrupting clinical care delivery. While ongoing research activities in both robotics and artificial intelligence fields, focus essentially on the safe and appropriate use of surgical, service, or logistics robotics operating in healthcare spaces, cybersecurity aspects are not sufficiently well covered in the research community. The growing range of security threats and requirements has recently forced organizations from all over the world to intensify their investments in new safety solutions. Besides, regulations are also in favour of a growing need for guidelines and resilient commercial products. Nevertheless, cybersecurity is one of the most constrained sectors in the labour market, both worldwide and at the European level The RESPECT project objective is to create a sustainable European and inter-sectoral network of organisations working on a joint research programme aiming to design and develop concrete defense strategies to ensure secure, safe, resilient and privacy-preserving operation of indoor mobile robotics solutions for logistic applications in healthcare environments. Safety ensures that the robots will not harm patients while security ensures that the robots and their embedded software may not be attacked. A resilient medical robotic system is a system that can adapt to significant changes in the environment. Privacy-preservation ensures the protection of patients and users medical and personal data. Specifically the main research objectives of the project are: (i) Explore and identify system-specific both cyber and physical weaknesses posing security, privacy, and safety threats, in autonomous mobile robots operating in a healthcare environment; (ii) Analyse surfaced vulnerability issues in conjunction with projected threats and propose defence measures and mitigation strategies towards safeguarding mobile robots operation. (iii) Define and standardize a minimal set of vulnerability testing procedures and guidelines leveraging and extending the Robot Security Framework, that ensures safe and autonomous robotic fleet management in a “safety-critical setting. The project is implemented through staff exchanges among different organizations with complementary expertise in cybersecurity, healthcare, cloud computing and robotics from 5 countries across EU promoting transfer of knowledge between industry and academia.

Data: CORDIS, © European Union

Project objective

Advances in robotics and artificial intelligence hold a promise for the radical transformation of healthcare services. Besides, the COVID-19 pandemic demonstrates that robots are crucial allies during pandemics. Yet, the adoption of these technologies is impeded by concerns related to cybersecurity issues. The rise of security incidents is a timely reminder that not only the volume of attacks is increasing but their diversity is also expanding, posing a significant threat towards disrupting clinical care delivery. Ongoing research focuses on the use of robotics operating in healthcare spaces (surgical, service, logistics), while security aspects are not well covered in the research community. RESPECT project objective is to create a sustainable European and inter-sectoral network of organisations working on a joint research programme aiming to design and develop concrete defense strategies to ensure secure, safe, resilient and privacy-preserving operation of indoor mobile robotics solutions for logistic applications in healthcare environments. Specifically the main research objectives of the project are: (i) Explore and identify system-specific cyber-physical weaknesses posing security, privacy, and safety threats, in autonomous mobile robots operating in a healthcare environment; (ii) Analyse surfaced vulnerability issues in conjunction with projected threats and propose defence measures and mitigation strategies towards safeguarding mobile robots operation. (iii) Define and standardize a minimal set of vulnerability testing procedures and guidelines leveraging and extending the Robot Vulnerability Scoring System for safe and autonomous robotic fleet management in a “safety-critical setting”. The project will be implemented through staff exchanges among different organizations with complementary expertise in cybersecurity, healthcare, cloud computing and robotics from 5 countries across EU promoting transfer of knowledge between industry and academia.

Original text from CORDIS.

Participants

  • UNIVERSITE D'ORLEANS · Orleans Cedex 2CoordinatorFrance
  • 3AE HEALTH LTD · NICOSIACyprus
  • ALIAS ROBOTICS S.L. · VITORIA-GASTEIZSpain
  • EREVNITIKO PANEPISTIMIAKO INSTITOUTO SYSTIMATON EPIKOINONION KAI YPOLOGISTON · ATHINAGreece
  • JOANNEUM RESEARCH FORSCHUNGSGESELLSCHAFT MBH · GrazAustria
  • ROBOTNIK AUTOMATION SL · PaternaSpain
  • SINGULARLOGIC PLIROFORIAKON SYSTIMATON KAI EFARMOGON PLIROFORIKIS · CHOLARGOS, ATTIKISGreece
  • SPHYNX ANALYTICS LIMITED · NICOSIACyprus
  • STREAM VISION · ParisFrance
  • UNIVERSITAT POLITECNICA DE VALENCIA · ValenciaSpain
  • UNIVERSITY OF CYPRUS · NicosiaCyprus

Links

Data: CORDIS, © European Union