Optimization of Control Strategy for Fuel Cell Vehicles by Integrating Fuzzy Algorithm

IF 3.4 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Access Pub Date : 2024-09-27 DOI:10.1109/ACCESS.2024.3469912
Qiong Wu;Hua Chen;Baolong Liu
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Abstract

Fuel cell vehicles have rapidly occupied the market with advantages such as environmental protection and energy conservation. However, their battery technology is insufficient and their endurance is poor, making them unsuitable for use over long distances. To address the aforementioned issues, a fuel cell vehicle energy storage system based on super-capacitors was constructed. Meanwhile, a proportional integral derivative controller based on fuzzy algorithms was established. Finally, the particle swarm optimization algorithm was used to optimize the fuzzy control strategy that integrated the fuzzy algorithm. When using the optimized fuzzy control strategy for simulation, the peak power of the fuel cell output power was reduced from 3.8kW to 2.0kW. The remaining power of the super-capacitor remained stable within a reasonable range throughout the entire operating condition. Under the new European urban road cycle, the optimized control strategy improved energy recovery performance by 4.3% and reduced hydrogen consumption by 0.9964%. Under the United States federal environmental protection agency standardized urban cycle conditions, the optimized control strategy improved the braking energy recovery efficiency index and effective braking energy recovery efficiency by 8.9% and 6.3%, respectively. The percentage reduction in hydrogen consumption was 0.9433%. Therefore, this research method can effectively reduce hydrogen consumption and improve the product economy and market competitiveness of enterprises.
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利用模糊算法优化燃料电池汽车的控制策略
燃料电池汽车以其环保、节能等优势迅速占领市场。然而,其电池技术不足,续航能力差,不适合长距离使用。针对上述问题,本文构建了基于超级电容器的燃料电池汽车储能系统。同时,建立了基于模糊算法的比例积分导数控制器。最后,利用粒子群优化算法对融合了模糊算法的模糊控制策略进行了优化。在使用优化后的模糊控制策略进行仿真时,燃料电池输出功率的峰值功率从 3.8kW 降至 2.0kW。在整个工作状态下,超级电容器的剩余功率始终稳定在合理范围内。在新的欧洲城市道路循环下,优化的控制策略使能量回收性能提高了 4.3%,氢气消耗降低了 0.9964%。在美国联邦环保局标准城市循环工况下,优化控制策略的制动能量回收效率指数和有效制动能量回收效率分别提高了 8.9% 和 6.3%。氢气消耗量降低了 0.9433%。因此,该研究方法能有效降低氢气消耗,提高企业的产品经济性和市场竞争力。
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来源期刊
IEEE Access
IEEE Access COMPUTER SCIENCE, INFORMATION SYSTEMSENGIN-ENGINEERING, ELECTRICAL & ELECTRONIC
CiteScore
9.80
自引率
7.70%
发文量
6673
审稿时长
6 weeks
期刊介绍: IEEE Access® is a multidisciplinary, open access (OA), applications-oriented, all-electronic archival journal that continuously presents the results of original research or development across all of IEEE''s fields of interest. IEEE Access will publish articles that are of high interest to readers, original, technically correct, and clearly presented. Supported by author publication charges (APC), its hallmarks are a rapid peer review and publication process with open access to all readers. Unlike IEEE''s traditional Transactions or Journals, reviews are "binary", in that reviewers will either Accept or Reject an article in the form it is submitted in order to achieve rapid turnaround. Especially encouraged are submissions on: Multidisciplinary topics, or applications-oriented articles and negative results that do not fit within the scope of IEEE''s traditional journals. Practical articles discussing new experiments or measurement techniques, interesting solutions to engineering. Development of new or improved fabrication or manufacturing techniques. Reviews or survey articles of new or evolving fields oriented to assist others in understanding the new area.
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