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Phoivos D. Ziogas

Phoivos D. Ziogas

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
48
Citations
8345
World Ranking
3098
National Ranking
141

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Voltage
  • Capacitor

His main research concerns Electronic engineering, Control theory, Pulse-width modulation, Electrical engineering and Inverter. His Electronic engineering research incorporates themes from Power factor, Total harmonic distortion, Converters, Rectifier and Harmonics. His Power factor study integrates concerns from other disciplines, such as Control system and AC power.

The various areas that Phoivos D. Ziogas examines in his Control theory study include Electronic circuit and Frequency conversion. In Pulse-width modulation, he works on issues like Modulation, which are connected to Power semiconductor device and Filter. The concepts of his Inverter study are interwoven with issues in Three-phase and Static VAR compensator.

His most cited work include:

  • Programmed PWM techniques to eliminate harmonics - A critical evaluation (546 citations)
  • An active power factor correction technique for three-phase diode rectifiers (494 citations)
  • State-of-the-art carrier PWM techniques: a critical evaluation (318 citations)

What are the main themes of his work throughout his whole career to date?

Electronic engineering, Control theory, Pulse-width modulation, Inverter and Voltage are his primary areas of study. His Electronic engineering research is multidisciplinary, incorporating perspectives in Power factor, Converters, Rectifier and Topology, Electrical engineering. He combines subjects such as Total harmonic distortion, Three-phase, Voltage regulation, Waveform and Harmonics with his study of Control theory.

His Pulse-width modulation research is multidisciplinary, incorporating elements of DC-BUS, Current source, Snubber and Modulation. In his research, Vector control is intimately related to AC motor, which falls under the overarching field of Inverter. His work on Thyristor as part of general Voltage research is frequently linked to Reduction, thereby connecting diverse disciplines of science.

He most often published in these fields:

  • Electronic engineering (74.64%)
  • Control theory (52.17%)
  • Pulse-width modulation (42.03%)

What were the highlights of his more recent work (between 1991-1996)?

  • Electronic engineering (74.64%)
  • Control theory (52.17%)
  • Pulse-width modulation (42.03%)

In recent papers he was focusing on the following fields of study:

The scientist’s investigation covers issues in Electronic engineering, Control theory, Pulse-width modulation, Voltage source and Harmonics. His biological study spans a wide range of topics, including Power factor, Current source, Converters, Voltage and Inverter. His Power factor study combines topics in areas such as Switched-mode power supply and Rectifier.

He has included themes like Total harmonic distortion, DC-BUS, Voltage regulation, Waveform and Voltage regulator in his Control theory study. The Pulse-width modulation study combines topics in areas such as Control theory, Snubber, Capacitor and Topology. His research investigates the link between Harmonics and topics such as AC power that cross with problems in AC adapter, Mains electricity and PWM rectifier.

Between 1991 and 1996, his most popular works were:

  • Analysis and design of a series voltage unbalance compensator based on a three-phase VSI operating with unbalanced switching functions (98 citations)
  • 'Dead-band' PWM switching patterns (77 citations)
  • ANALYSIS AND DESIGN OF A THREE-PHASE OFF-LINE DC-DC CONVERTER WITH HIGH FREQUENCY ISOLATION (69 citations)

In his most recent research, the most cited papers focused on:

  • Electrical engineering
  • Voltage
  • Capacitor

His scientific interests lie mostly in Control theory, Electronic engineering, Pulse-width modulation, Converters and Three-phase. His Control theory research includes themes of Voltage source, Voltage regulation and Ćuk converter. His work blends Electronic engineering and Network topology studies together.

His Pulse-width modulation research focuses on Inverter and how it relates to Network analysis and Static VAR compensator. His Converters study is concerned with the larger field of Voltage. His Total harmonic distortion study incorporates themes from Power factor, Waveform and Harmonics.

Best Publications

  • Programmed PWM techniques to eliminate harmonics - A critical evaluation

    P.N. Enjeti;P.D. Ziogas;J.F. Lindsay

  • An active power factor correction technique for three-phase diode rectifiers

    A.R. Prasad;P.D. Ziogas;S. Manias

  • State-of-the-art carrier PWM techniques: a critical evaluation

    M.A. Boost;P.D. Ziogas

  • A novel approach for minimizing high-frequency transformer copper losses

    J.-P. Vandelac;P.D. Ziogas

  • Analysis and Design of Forced Commutated Cycloconverter Structures with Improved Transfer Characteristics

    Phoivos D. Ziogas;Shahidul I. Khan;Muhammad H. Rashid

  • The Delta Modulation Technique in Static PWM Inverters

    Phoivos D. Ziogas

  • A novel active current waveshaping technique for solid-state input power factor conditioners

    M. Kazerani;P.D. Ziogas;G. Joos

  • Design aspects of synchronous PWM rectifier-inverter systems under unbalanced input voltage conditions

    L. Moran;P.D. Ziogas;G. Joos

  • Input Filter Design for PWM Current-Source Rectifiers

    N.R. Zargari;G. Joos;P.D. Ziogas

  • Analysis and design of a three-phase synchronous solid-state VAr compensator

    L.T. Moran;P.D. Ziogas;G. Joos

  • A novel passive waveshaping method for single-phase diode rectifiers

    A.R. Prasad;P.D. Ziogas;S. Manias

  • Analysis and design of a three-phase offline DC-DC converter with high-frequency isolation

    A.R. Prasad;P.D. Ziogas;S. Manias

  • Performance analysis of a PWM inverter VAr compensator

    G. Joos;L. Moran;P. Ziogas

  • A two switch high performance current regulated DC/AC converter module

    N.R. Zargari;P.D. Ziogas;G. Joos

  • Programmed PMW techniques to eliminate harmonics : a critical evaluation

    P. N. Enjeti;P. D. Ziogas;J. F. Lindsay

  • A Regulated DC-DC Voltage Source Converter Using a High Frequency Link

    V. T. Ranganathan;Phoivos D. Ziogas;Victor R. Stefanovic

  • 'Dead-band' PWM switching patterns

    V.G. Agelidis;P.D. Ziogas;G. Joos

  • A Novel Sinewave in AC to DC Converter with High-Frequency Transformer Isolation

    Stefanos Manias;Phoivos D. Ziogas

  • Generalized Functional Model for Three-Phase PWM Inverter/Rectifier Converters

    Eduardo P. Weichmann;Phoivos D. Ziogas;Victor R. Stefanovic

  • Analysis and design of a series voltage unbalance compensator based on a three-phase VSI operating with unbalanced switching functions

    A. Campos;G. Joos;P.D. Ziogas;J.F. Lindsay

Frequent Co-Authors

Stefanos Manias
Stefanos Manias National Technical University of Athens
Prasad Enjeti
Prasad Enjeti Texas A&M University
Luis Moran
Luis Moran University of Concepción
Mehrdad Kazerani
Mehrdad Kazerani University of Waterloo
Gerry Moschopoulos
Gerry Moschopoulos University of Western Ontario
Geza Joos
Geza Joos McGill University
Jose Espinoza
Jose Espinoza University of Concepción
Mehrdad Ehsani
Mehrdad Ehsani Texas A&M University

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