Degradation model of proton exchange membrane fuel cell based on a novel hybrid method
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
Reference61 articles.
1. Multi-objective genetic optimization of the thermoelectric system for thermal management of proton exchange membrane fuel cells;Kwan;Appl Energy,2018
2. An interval arithmetic-based method for parametric identification of a fuel cell equivalent circuit model;Petrone;Appl Energy,2019
3. Robust control of the PEM fuel cell air-feed system via sub-optimal second order sliding mode;Matraji;Appl Energy,2013
4. Optimization of energy management system for fuel-cell hybrid electric vehicles: issues and recommendations;Sulaiman;Appl Energy,2018
5. Operating strategies to minimize degradation in fuel cell gas turbine hybrids;Zaccaria;Appl Energy,2017
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