Sort by
Refine Your Search
-
and development. Project overview The ongoing transition from synchronous machine-based generation to converter-dominated renewable energy sources presents new challenges for the operation, control, and
-
dynamics simulation and controls toolbox fascinating? The research of the PhD student will touch upon various topics multi-body dynamics, optimal control theory, machine learning and robotics and artificial
-
We are seeking a highly motivated individual to join our project on digitalizing Swedish buildings and tackling advanced building control challenges. This project will integrate the fields of energy
-
the field of humanoid robotics and their successful deployment in industry? Do you find the idea of working on a high fidelity multi-body dynamics simulation and controls toolbox fascinating? The research
-
superconducting circuits. This project focuses on modeling the quantum dynamics of these circuits at the Hamiltonian level and optimizing their control. You will develop theoretical models and optimization
-
models. Experience in analyzing CFD data and interpreting simulation results. Excellent command of written and spoken English. Experience writing scientific reports and presenting research findings
-
-fabrication processes for superconducting devices Automatic bring-up and calibration of quantum processors Design and simulation of quantum processors Optimal-control techniques for high-fidelity qubit
-
control muscle movements and so restore movement. Your role is to explore possible materials and manufacturing processes that bring these implants stability, functionality, and biocompatibility. The role
-
of quantum processors Design and simulation of quantum processors Optimal-control techniques for high-fidelity qubit operation Quantum algorithm implementation and benchmarking About you You have a relevant
-
networks, supply chain strategy, operations planning and control, material handling, and freight transport. Digitalisation, circularity, and resilience are key drivers and enablers of this research. Our goal