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Firas Obeidat

Dr. Firas Obeidat

Associate Professor · Electrical Engineering
Author
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APID
13455
ORCID
https://orcid.org/0000-0001-9825-0873
Scopus
55552062400
Google Scholar
https://scholar.google.com/citations?user=hv5lNtUAAAAJ&hl=en
Location
Amman, Amman, Jordan
Expertise
Electrical Engineering
Areas of interest
Multilevel Converters, power electronics converters, photovoltaic energy systems
Member since
September 2026

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Publications

  1. Co-Design of Photovoltaic-BatteryProton Exchange Membrane Electrolyzer for Hydrogen Refueling Vehicles Station
  2. Co-Design of Photovoltaic-BatteryProton Exchange Membrane Electrolyzer for Hydrogen Refueling Vehicles Station
  3. Comparison of optimal switching angle patterns using the asymmetric selective harmonic current and voltage modulation technique for a single-phase cascaded H-bridge converter
  4. Comparison of optimal switching angle patterns using the asymmetric selective harmonic current and voltage modulation technique for a single-phase cascaded H-bridge converter
  5. Distributed Generator Offset Armored Synchronous Reference Frame-PhaseLocked Loop using Arbitrary Delay Signal Cancellation for Grid Connected Modular Multilevel Converter
  6. Distributed Generator Offset Armored Synchronous Reference Frame-PhaseLocked Loop using Arbitrary Delay Signal Cancellation for Grid Connected Modular Multilevel Converter
  7. Driving Forward: A Decade of Electric Vehicles Progress and Challenges in Jordan
  8. Driving Forward: A Decade of Electric Vehicles Progress and Challenges in Jordan
  9. Impact of Loads and Photovoltaic Uncertainties on the Cascaded Failur e of Future Power Systems
  10. Impact of Loads and Photovoltaic Uncertainties on the Cascaded Failur e of Future Power Systems
  11. Optimal Design of Single-Phase Cascaded H-Bridge Converter Based on Asymmetric Selective Harmonic Current and Voltage Modulation-PWM Technique to Meet IEEE-519 Standard
  12. Optimal Design of Single-Phase Cascaded H-Bridge Converter Based on Asymmetric Selective Harmonic Current and Voltage Modulation-PWM Technique to Meet IEEE-519 Standard