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Sheffield Robotics

Menu
  • About
    • About
      • Contact
      • Location
      • Centres and Groups
      • Work with us
  • Research
    • Autonomy
    • Bioinspired & Biomimetic Systems
    • Distributed Robotics
    • Field Robotics and Smart Cities
    • Humans and Robots
    • Manufacturing Robotics
    • Robot Bodies
    • Robotics Sciences
  • Application Domains
    • Flexible Manufacturing 
    • Health and Social Care 
    • Challenging Environments 
  • Facilities
    • Pam Liversidge Building - Robot Foundry
    • Pam Liversidge Building - Human Robot Interaction Lab
    • Kroto Research Institute - Flying Lab
  • People
    • Executive Board
    • Operations Board
    • Members
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Research

CSI: Cobot Research

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Exemplary HRC setting

Planning

The aim of the Planning work package is the analysis, design, synthesis, and assurance of safety controllers for use in human-robot collaboration (HRC) settings in the manufacturing domain.

Further information

Sensing

Sensing and Decision Making

The emergence of ‘collaborative robots’ promises to transform the manufacturing sector, enabling humans and robots to work together in shared spaces and physically interact to maximise the benefits of both manual and robotic processes.

Further information

Security

Security

Threat modelling is the process of finding security threats for a given system, achieved with the use of abstractions.

Further Information

The digital twin environment applied in our prototype cell at Sheffield Robots

Digital Twinning Environment

The digital twin (DT) environment, based in Unity3D takes advantage of a commercial game engine to produce a high fidelity platform for the digital representation of real-world industrial processes.

Further information

Safety analysis

Safety Analysis and Testing

Cooperative robots aim to allow human operators and robot workers to share the same work-space, and work jointly to achieve a common goal.

Further information


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