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Andrew M. Knight

Andrew M. Knight

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
37
Citations
6234
World Ranking
5095
National Ranking
230

Overview

Andrew M. Knight is affiliated with the University of Calgary in Canada and has focused their research primarily within the field of Engineering. Their scholarly work spans several subfields, including Electrical and Electronic Engineering, Control and Systems Engineering, Neurology, Molecular Biology, and Electronic, Optical and Magnetic Materials.

Their recent research output includes papers published in various reputable venues. Some of the notable papers authored or co-authored by Andrew M. Knight are:

  • A Review on Vanadium Redox Flow Battery Storage Systems for Large-Scale Power Systems Application, 2023, IEEE Access
  • Three-Port Bidirectional DC/DC Converter for DC Nanogrids, 2020, IEEE Transactions on Power Electronics
  • Leucine Zipper 4 Autoantibody: A Novel Germ Cell Tumor and Paraneoplastic Biomarker, 2021, Annals of Neurology
  • Characterisation of TRIM46 autoantibody-associated paraneoplastic neurological syndrome, 2021, Journal of Neurology Neurosurgery & Psychiatry
  • Identification of Caveolae-Associated Protein 4 Autoantibodies as a Biomarker of Immune-Mediated Rippling Muscle Disease in Adults, 2022, JAMA Neurology

The frequent co-authors collaborating with Andrew M. Knight are:

  • John R. Mills
  • Sean J. Pittock
  • Divyanshu Dubey
  • Andrew McKeon
  • Surendra Dasari

Andrew M. Knight has published extensively in venues specializing in engineering and medical topics. The most common publication venues include:

  • IEEE Industry Applications Magazine
  • IEEE Access
  • IEEE Transactions on Industry Applications
  • Neurology
  • Annals of Clinical and Translational Neurology

The main topics explored in Andrew M. Knight's research are diverse and include:

  • Microgrid Control and Optimization
  • Advanced DC-DC Converters
  • Multilevel Inverters and Converters
  • Autoimmune Neurological Disorders and Treatments
  • Wind Turbine Control Systems
  • Electric Motor Design and Analysis
  • Islanding Detection in Power Systems

This body of work indicates a broad interest across power systems engineering and biomedical applications related to neurology. The integration of electrical engineering principles with neurological disease biomarkers reflects an interdisciplinary approach in Andrew M. Knight's research activities.

Best Publications

  • A review of power converter topologies for wind generators

    Jamal A. Baroudi;Venkata Dinavahi;Andrew M. Knight

  • Comparison of the Effects of Continuous and Discontinuous PWM Schemes on Power Losses of Voltage-Sourced Inverters for Induction Motor Drives

    Yunxiang Wu;Mohsin A Shafi;Andrew M Knight;Richard A McMahon

  • Design and Analysis of Brushless Doubly Fed Reluctance Machines

    A. M. Knight;R. E. Betz;D. G. Dorrell

  • Dynamic thermal rating of transmission lines: A review

    Soheila Karimi;Petr Musilek;Petr Musilek;Andrew M. Knight

  • Simple wind energy controller for an expanded operating range

    A.M. Knight;G.E. Peters

  • Comparison of different motor design drives for hybrid electric vehicles

    David G. Dorrell;Andrew M. Knight;Mircea Popescu;Lyndon Evans

  • Single-Phase Multilevel PWM Inverter Topologies Using Coupled Inductors

    J. Salmon;A.M. Knight;J. Ewanchuk

  • Analysis and Design Techniques Applied to Hybrid Vehicle Drive Machines—Assessment of Alternative IPM and Induction Motor Topologies

    D. G. Dorrell;A. M. Knight;L. Evans;M. Popescu

  • Risk-Constrained Bidding and Offering Strategy for a Merchant Compressed Air Energy Storage Plant

    Soroush Shafiee;Hamidreza Zareipour;Andrew M. Knight;Nima Amjady

  • PWM Inverters Using Split-Wound Coupled Inductors

    J. Salmon;J. Ewanchuk;A.M. Knight

  • Fuzzy Self-Tuning Speed Control of an Indirect Field-Oriented Control Induction Motor Drive

    M. Masiala;B. Vafakhah;J. Salmon;A.M. Knight

  • Mechanical fault detection in a medium-sized induction motor using stator current monitoring

    A.M. Knight;S.P. Bertani

  • Alternative Rotor Designs for High Performance Brushless Permanent Magnet Machines for Hybrid Electric Vehicles

    D. G. Dorrell;M. Hsieh;A. M. Knight

  • The design of high-efficiency line-start motors

    A.M. Knight;C.I. McClay

  • Performance of a High-Speed Motor Drive System Using a Novel Multilevel Inverter Topology

    J. Ewanchuk;J. Salmon;A.M. Knight

  • Considering Thermodynamic Characteristics of a CAES Facility in Self-Scheduling in Energy and Reserve Markets

    Soroush Shafiee;Hamidreza Zareipour;Andrew M. Knight

  • Use of a permeance model to predict force harmonic components and damper winding effects in salient-pole synchronous machines

    Andrew M. Knight;Haran Karmaker;Konrad Weeber

  • High-Quality Single-Phase Power Conversion by Reconsidering the Magnetic Components in the Output Stage—Building a Better Half-Bridge

    C. Chapelsky;J. Salmon;A.M. Knight

  • A New Space-Vector PWM With Optimal Switching Selection for Multilevel Coupled Inductor Inverters

    Behzad Vafakhah;John Salmon;Andrew M Knight

  • Coupled Three-Phase Inductors for Interleaved Inverter Switching

    A.M. Knight;J. Ewanchuk;J.C. Salmon

  • Developing Bidding and Offering Curves of a Price-Maker Energy Storage Facility Based on Robust Optimization

    Soroush Shafiee;Hamidreza Zareipour;Andrew M. Knight

Frequent Co-Authors

David G. Dorrell
David G. Dorrell University of Turku
Hamidreza Zareipour
Hamidreza Zareipour University of Calgary
Richard A. McMahon
Richard A. McMahon University of Warwick
Mircea Popescu
Mircea Popescu Ansys (United Kingdom)
Richard R. Chromik
Richard R. Chromik McGill University
Om P. Malik
Om P. Malik University of Calgary
Andrea Cavagnino
Andrea Cavagnino Polytechnic University of Turin
Aldo Boglietti
Aldo Boglietti Polytechnic University of Turin
Venkata Dinavahi
Venkata Dinavahi University of Alberta
Mi-Ching Tsai
Mi-Ching Tsai National Cheng Kung University

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