Md Jabed Hossain
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Also affiliated: Centre National de la Recherche Scientifique (2026); Indian Institute of Science Education and Research Pune (2023–2025); Stamford University Bangladesh (2020); Laboratoire Hétérochimie Fondamentale et Appliquée (2026); Université de Toulouse (2026); National Institute of Diseases of the Chest and Hospital (2026)
Research Areas
Biography and Research Information
OverviewAI-generated summary
Md Jabed Hossain's research focuses on the design and enhancement of electric motors, particularly permanent magnet-assisted synchronous reluctance motors and interior permanent magnet motors. His work investigates novel stator slot designs and stator slot surface-mounted permanent magnet motors for variable speed drives. Hossain has also explored the optimization of interior permanent magnet machines by adjusting air-gap dimensions and permanent magnet width, specifically utilizing ferrite magnets. His research extends to the development of permanent magnet-assisted synchronous reluctance motors employing metal additive manufacturing for improved torque performance in high-speed applications.
In addition to motor design, Hossain has published work on chemical synthesis, specifically the deoxygenation of amides and the hydroboration of carbon dioxide, esters, and epoxides using cerium-based catalysts. He has collaborated with researchers including Roy McCann, Paxton Schroeder, Daniel Curl, and Kirsch Mackey at the University of Arkansas at Fayetteville.
Metrics
- h-index: 3
- Publications: 21
- Citations: 35
Selected Publications
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Design of High Stability PMaSynRM Using Novel Stator Slots Architecture and Immersion End-Winding Cooling (2026)
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End-Winding Geometry Optimization in Electric Machines Using Adaptive Gradient Algorithm (2025)
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An Innovative Design of a Permanent Magnet-Assisted Synchronous Reluctance Motor to Improve Torque Performance for High Speed Applications (2024)
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Comprehensive Optimization of a Dual Active Bridge Converter to Reduce the Current Stress for Battery Energy Storage Applications (2024)
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Novel Design of Permanent Magnet-Assisted Synchronous Reluctance Motor Using Metal Additive Manufacturing Technology (2024)
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A Novel Higher Stator Slots Surface-Mounted Permanent Magnet Motor for Variable Speed Drives (2023)
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Enhancing Performance of Interior Permanent Magnet Motors Using Novel Stator Slot Designs (2023)
Collaboration Network
Top Collaborators
- Enhancing Performance of Interior Permanent Magnet Motors Using Novel Stator Slot Designs
- Novel Design of Permanent Magnet-Assisted Synchronous Reluctance Motor Using Metal Additive Manufacturing Technology
- A Novel Higher Stator Slots Surface-Mounted Permanent Magnet Motor for Variable Speed Drives
- An Innovative Design of a Permanent Magnet-Assisted Synchronous Reluctance Motor to Improve Torque Performance for High Speed Applications
- Comprehensive Optimization of a Dual Active Bridge Converter to Reduce the Current Stress for Battery Energy Storage Applications
Showing 5 of 7 shared publications
- Novel Design of Permanent Magnet-Assisted Synchronous Reluctance Motor Using Metal Additive Manufacturing Technology
- An Innovative Design of a Permanent Magnet-Assisted Synchronous Reluctance Motor to Improve Torque Performance for High Speed Applications
- End-Winding Geometry Optimization in Electric Machines Using Adaptive Gradient Algorithm
- Design of High Stability PMaSynRM Using Novel Stator Slots Architecture and Immersion End-Winding Cooling
- End-Winding Geometry Optimization in Electric Machines Using Adaptive Gradient Algorithm
- Design of High Stability PMaSynRM Using Novel Stator Slots Architecture and Immersion End-Winding Cooling
- Enhancing Performance of Interior Permanent Magnet Motors Using Novel Stator Slot Designs
- A Novel Higher Stator Slots Surface-Mounted Permanent Magnet Motor for Variable Speed Drives
- A Novel Higher Stator Slots Surface-Mounted Permanent Magnet Motor for Variable Speed Drives
- An Innovative Design of a Permanent Magnet-Assisted Synchronous Reluctance Motor to Improve Torque Performance for High Speed Applications