Yang, Bo, Li, Yulin, Li, Jiale , Shu, Hongchun, Zhao, Xinyu, Ren, Yaxing and Li, Qiang (2022) Comprehensive summary of solid oxide fuel cell control: a state-of-the-art review. Protection and Control of Modern Power Systems, 7 (1). ISSN 2367-0983
Full content URL: https://doi.org/10.1186/s41601-022-00251-0
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s41601-022-00251-0.pdf - Whole Document Available under License Creative Commons Attribution 4.0 International. 10MB |
Item Type: | Article |
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Item Status: | Live Archive |
Abstract
Hydrogen energy is a promising renewable resource for the sustainable development of society. As a key member of the fuel cell (FC) family, the solid oxide fuel cell (SOFC) has attracted a lot of attention because of characteristics such as having various sources as fuel and high energy conversion efciency, and being pollution-free. SOFC is a highly coupled, nonlinear, and multivariable complex system, and thus it is very important to design an appropriate control strategy for an SOFC system to ensure its safe, reliable, and efcient operation. This paper undertakes a comprehensive review and detailed summary of the state-of-the-art control approaches of SOFC. These approaches are divided into eight categories of control: proportional integral diferential (PID), adaptive (APC), robust, model predictive (MPC), fuzzy logic (FLC), fault-tolerant (FTC), intelligent and observer-based. The SOFC control approaches are carefully evaluated in terms of objective, design, application/scenario, robustness, complexity, and accuracy. Finally, fve perspectives are proposed for future research directions.
Keywords: | Solid oxide fuel cell, Control, Hydrogen energy, Artifcial intelligence |
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Subjects: | H Engineering > H620 Electrical Engineering H Engineering > H660 Control Systems |
Divisions: | College of Science > School of Engineering |
ID Code: | 53842 |
Deposited On: | 22 May 2023 13:07 |
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