Against the backdrop of the growing global demand for clean energy, a comprehensive test methodology aimed at evaluating the static and dynamic performance and efficiency of a proton exchange membrane fuel cell (PEMFC) combined system under feedback control is presented by this study. By establishing an experimental platform, a wide range of operating conditions, such as system startup, load tracking, and stability, is covered by the tests. To analyze its effects on system response time, energy conversion efficiency, and overall performance, a dynamic feedback control strategy is introduced. In addition, to evaluate the system's operating status in depth, a variety of performance metrics, including current density, output power, and temperature variation, are used. That optimized feedback control can significantly improve the dynamic performance and energy utilization efficiency of the fuel cell system is shown by the results, providing an important theoretical and practical reference for its application in distributed energy systems.
- Standard Committee
- IES/IES - Industrial Electronics Society Standards Committee
- Status
- Active PAR
- PAR Approval
- 2024-06-06
Working Group Details
- Society
- Society
- IEEE Industrial Electronics Society
- Standard Committee
- IES/IES - Industrial Electronics Society Standards Committee
- Working Group
-
FCCUC - Fuel cell Cogeneration Under Control
- IEEE Program Manager
- Jiajia Liu
Contact Jiajia Liu - Working Group Chair
- bin Chen
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