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We have 10 The University of Manchester Robotics PhD Projects, Programmes & Scholarships

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The University of Manchester

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The University of Manchester Robotics PhD Projects, Programmes & Scholarships

We have 10 The University of Manchester Robotics PhD Projects, Programmes & Scholarships

State estimation for fault diagnosis and fault-tolerant control of redundant robotic systems

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

Formal Verification of Robot Swarms

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

SALE-Auto: Safety Assurance for Learning-Enabled Autonomous Systems

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

Python Program Model-Checking/Verifying Python Agents

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

Formal Verification of Robot Teams or Human-Robot Interaction

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

End-to-end Methods for the Verification of Autonomous Planetary Deployments

CRADLE is an EPSRC funded Prosperity Partnership that brings together the industrial experience that Jacobs have in applied robotics and autonomous systems (RAS) with the research expertise at the University of Manchester in this field. Read more

Flight mechanics and stability in birds during extreme manoeuvres of take-off and landing

During take-off birds accelerate primarily through from the ground reaction force, with aerodynamics playing a lesser role. In landing things are quite different; birds use mainly aerodynamic drag on the wings to decelerate, with the legs bringing them finally to rest after touchdown. Read more

Distributed active reinforcement learning for multi-agent planning and control

With the rapid development of network-connected systems, coordination and cooperation among the subsystems/agents have become increasingly important and powerful in many control and robotics applications. Read more
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