合肥工业大学校徽 合肥工业大学学报自科版

导航菜单

基于改进灰狼算法的 PEMFC 输出功率和系统效率多目标优化

Multi-objective optimization of PEMFC output power and system efficiency based on improved grey wolf optimizer

期刊信息

合肥工业大学(自然科学版),2025年1月,第48卷第1期:37-43

DOI: 10.3969/j.issn.1003-5060.2025.01.006

作者信息

黄诚 $ ^{1} $,苏建徽 $ ^{1} $,解宝 $ ^{1} $,黄赵军 $ ^{1} $,瞿晓丽 $ ^{2} $,王建国 $ ^{2} $

(1. 合肥工业大学电气与自动化工程学院,安徽合肥 230009;2. 合肥综合性国家科学中心能源研究院,安徽合肥 230051)

摘要和关键词

摘要: 为了同时优化质子交换膜燃料电池(proton exchange membrane fuel cells, PEMFC)系统的效率和输出功率,文章首先建立PEMFC系统的机理模型,并分析系统效率和输出功率特性;其次针对传统灰狼算法(grey wolf optimizer, GWO)的初始化种群不均匀和易出现早熟收敛的问题,引入佳点集种群初始化策略和非线性收敛因子策略,并由此提出一种改进多目标灰狼优化算法(multi-objective grey wolf optimizer, MOGWO),有效改善了灰狼算法的搜索精度和收敛性能;然后针对改进多目标灰狼优化算法求得的Pareto最优解集,使用TOPSIS评价法得出逼近理想解的最佳解,确定PEMFC系统的最佳运行条件;最后对所提出的MOGWO算法进行仿真验证,结果表明该算法能够有效提高PEMFC系统在实际运行中的输出功率和系统效率。

关键词: 质子交换膜燃料电池(PEMFC);输出功率;系统效率;多目标优化;改进灰狼算法

Authors

HUANG Cheng $ ^{1} $, SU Jianhui $ ^{1} $, XIE Bao $ ^{1} $, HUANG Zhaojun $ ^{1} $, QU Xiaoli $ ^{2} $, WANG Jianguo $ ^{2} $

(1. School of Electrical Engineering and Automation, Hefei University of Technology, Hefei 230009, China; 2. Institute of Energy, Hefei Comprehensive National Science Center, Hefei 230051, China)

Abstract and Keywords

Abstract: In order to simultaneously optimize the efficiency and output power of the proton exchange membrane fuel cells (PEMFC) system, the mechanism model of the PEMFC system is established, and the system efficiency and output power characteristics are analyzed. Then, in view of the problems of traditional grey wolf optimizer (GWO) such as uneven initialization population and premature convergence, the optimal point cluster group initialization strategy and nonlinear convergence factor strategy are introduced, and an improved multi-objective grey wolf optimizer (MOGWO) algorithm is proposed, which effectively improves the search accuracy and convergence performance of the GWO. For the Pareto optimal solution set obtained by the improved MOGWO algorithm, the TOPSIS evaluation method is used to obtain the best solution approaching the ideal solution, and the best operating conditions of the PEMFC system are determined. Finally, the proposed algorithm is verified by simulation, and the results show that the proposed algorithm can effectively improve the output power and system efficiency of the PEMFC in practical operation.

Keywords: proton exchange membrane fuel cells (PEMFC); output power; system efficiency; multi-objective optimization; improved grey wolf optimizer

基金信息

基金项目:安徽省自然科学基金青年资助项目(2208085QE165);中央高校基本科研业务费专项资金资助项目(PA2021GDGP0060)

个人中心