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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
36
Citations
6675
World Ranking
5283
National Ranking
269

Overview

Markus Mueller is affiliated with the University of Edinburgh in the United Kingdom. Their research primarily spans the fields of Engineering and Physics and Astronomy, with a considerable emphasis on Electrical and Electronic Engineering and Condensed Matter Physics.

The scientist's work focuses on several subfields, including Electrical and Electronic Engineering, Condensed Matter Physics, Control and Systems Engineering, Biomedical Engineering, and Electronic, Optical, and Magnetic Materials. Their main research topics encompass Electric Motor Design and Analysis, Physics of Superconductivity and Magnetism, Magnetic Bearings and Levitation Dynamics, Superconducting Materials and Applications, Magnetic Properties and Applications, Frequency Control in Power Systems, and Wind Energy Research and Development.

Markus Mueller has published extensively in various academic venues. Frequent publication sources include:

  • Superconductor Science and Technology
  • IET conference proceedings.
  • IEEE Transactions on Industry Applications
  • 2022 International Conference on Electrical Machines (ICEM)
  • Energies

Among the recent papers associated with Mueller's research are:

  • Dynamic loss and magnetization loss of HTS coated conductors, stacks, and coils for high-speed synchronous machines, 2020, Superconductor Science and Technology
  • Alternating Current Loss of Superconductors Applied to Superconducting Electrical Machines, 2021, Energies
  • The Demagnetization Harmonics Generation Mechanism in Permanent Magnet Machines With Concentrated Windings, 2021, IEEE Transactions on Energy Conversion
  • A full-range formulation for dynamic loss of high-temperature superconductor coated conductors, 2020, Superconductor Science and Technology
  • Loss characteristics of HTS coated conductors in field windings of electric aircraft propulsion motors, 2020, Superconductor Science and Technology

Collaboration plays a key role in their research activities, with frequent coauthors including:

  • Hongye Zhang
  • Konstantinos N. Gyftakis
  • G. A. Skarmoutsos
  • Kevin Kails
  • Quan Li

The research typically revolves around the design and analysis of electric motors, superconductivity phenomena, and magnetic properties and applications. These investigations extend to applied topics in frequency control within power systems and sustainable energy technologies such as wind energy.

Best Publications

  • Evolution and Modern Approaches for Thermal Analysis of Electrical Machines

    A. Boglietti;A. Cavagnino;D. Staton;M. Shanel

  • Conventional and TFPM linear generators for direct-drive wave energy conversion

    H. Polinder;B.C. Mecrow;A.G. Jack;P.G. Dickinson

  • A Numerical and Graphical Review of Energy Storage Technologies

    Siraj Sabihuddin;Aristides E. Kiprakis;Markus Mueller

  • Electrical generators for direct drive wave energy converters

    Markus Mueller

  • 10 MW Wind Turbine Direct-Drive Generator Design with Pitch or Active Speed Stall Control

    H. Polinder;D. Bang;R.P.J.O.M. van Rooij;A.S. McDonald

  • Wave energy converter control by wave prediction and dynamic programming

    Guang Li;George Weiss;Markus Mueller;Stuart Townley

  • Hybrid wind–photovoltaic–diesel–battery system sizing tool development using empirical approach, life-cycle cost and performance analysis: A case study in Scotland

    Leong Kit Gan;Jonathan K.H. Shek;Markus A. Mueller

  • Enabling science and technology for marine renewable energy

    Markus Mueller;Robin Wallace

  • Reaction force control of a linear electrical generator for direct drive wave energy conversion

    J.K.H. Shek;D.E. Macpherson;M.A. Mueller;J. Xiang

  • Design and Testing of a Linear Generator for Wave-Energy Applications

    N. Hodgins;O. Keysan;A. S. McDonald;M. A. Mueller

  • Power conditioning of the output from a linear vernier hybrid permanent magnet generator for use in direct drive wave energy converters

    P.R.M. Brooking;M.A. Mueller

  • Electromagnetic design of axial-flux permanent magnet machines.

    J. R. Bumby;R. Martin;Markus Mueller;E. Spooner

  • Funnel control for systems with relative degree two

    Christoph M. Hackl;Norman Hopfe;Achim Ilchmann;Markus Mueller

  • Structural mass in direct-drive permanent magnet electrical generators

    Alasdair McDonald;Markus Mueller;Henk Polinder

  • Convergent Systems vs. Incremental Stability

    Björn Sebastian Rüffer;Nathan van de Wouw;Markus Mueller

  • Permanent magnet air-cored tubular linear generator for marine energy converters.

    N.J. Baker;M.A. Mueller;E. Spooner

  • Design and performance of a 20 kW, 100 rpm, switched reluctance generator for a direct drive wind energy converter

    M.A. Mueller

  • Review of magnetic gear technologies and their applications in marine energy

    Ben McGilton;Richard Crozier;Alasdair McDonald;Markus Mueller

  • A lightweight low-speed permanent magnet electrical generator for direct-drive wind turbines

    Markus A. Mueller;Alasdair S. McDonald

  • Current and Novel Electrical Generator Technology for Wave Energy Converters

    M.A. Mueller;H. Polinder;N. Baker

  • Structural analysis of low-speed axial-flux permanent-magnet machines

    M.A. Mueller;A.S. McDonald;D.E. Macpherson

  • Calculation of iron losses from time-stepped finite-element models of cage induction machines

    M.A. Mueller;S. Williamson;T.J. Flack;K. Atallah

  • Modelling the performance of the vernier hybrid machine

    Markus Mueller;N. J. Baker

  • Damper Windings in Induction Machines for Reduction of Unbalanced Magnetic Pull and Bearing Wear

    David G. Dorrell;Jonathan K. H. Shek;Markus A. Mueller;Min-Fu Hsieh

  • Dynamic loss and magnetization loss of HTS coated conductors, stacks, and coils for high-speed synchronous machines

    Hongye Zhang;Philip Machura;Kevin Kails;Hongyi Chen

  • Comparison of generator topologies for direct-drive wind turbines including structural mass

    A. McDonald;M. A. Mueller;H. Polinder

  • Power Conditioning of the Output from a Linear Vernier Hybrid Permanent Magnet Generator for using Direct Drive Wave Energy Converters

    P. R. M. Brooking;Markus Mueller

Frequent Co-Authors

Henk Polinder
Henk Polinder Delft University of Technology
Peter Tavner
Peter Tavner Durham University
David G. Dorrell
David G. Dorrell University of Turku
Li Ran
Li Ran University of Warwick
David Howe
David Howe University of Sheffield
Barrie Mecrow
Barrie Mecrow Newcastle University
John E. Fletcher
John E. Fletcher University of New South Wales
Sheldon S. Williamson
Sheldon S. Williamson University of Ontario Institute of Technology
Kais Atallah
Kais Atallah University of Sheffield
Andrea Cavagnino
Andrea Cavagnino Polytechnic University of Turin

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