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Attack-defense strategy assisted osprey optimization algorithm for PEMFC parameters identification
DOI:10.1016/j.renene.2024.120211.png)
Abstract
En 中文
The electrochemical parameter identification of Proton-exchange membrane fuel cells (PEMFCs) is a highly nonlinear optimization problem. In this study, a new optimization algorithm, named attack defense strategy assisted osprey optimization algorithm (ADSOOA), is proposed to identify PEMFC parameters. ADSOOA incorporates an attack defense strategy to improve convergence performance and prevent falling into local optima. The mean squares error (MSE) between the FC experimental and calculated output voltages is selected as the objective function. To assess the performance of ADSOOA, a comparative analysis is conducted against various state-of-the-art optimization algorithms. Results show that the ADSOOA algorithm performs better than existing algorithms in electrochemical parameter identification of PEMFCs. The optimization results for 250 W PEMFC, BCS-500 W PEMFCM, and NedStack PS6 PEMFC are 9.555e-3 (range 1), 2.773e-18 (range 2), 6.499e-4, and 7.260e-2, respectively.
Keywords:
PEMFC
Parameter identification
Osprey optimization algorithm
Attack defense strategy
Fuel cell
Journal
IF:
9.1
Papers:
2.6W
Citations:
12.1W

