插电式混合动力燃料电池穿梭巴士建模与评价

C. Hearn, M. C. Lewis, R. Thompson, R. Longoria
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引用次数: 13

摘要

德克萨斯大学奥斯汀分校的机电中心获得了一辆插电式混合燃料电池巴士,用于示范和模型开发,该项目由USDOT-FTA资助。该项目的目的是评估公共汽车的性能和使用情况,同时开发一个模型,可以预测日常行驶路线的总体性能和能耗。利用PSAT(动力总成分析工具)建立了燃料电池客车的模型。该模型的开发包括验证部件特性和动力传动系统效率的参数化研究,以将道路测试中预测的车辆能耗数据与实测的车辆能耗数据联系起来。PSAT模型能够在不同的路线轮廓和车辆条件下预测净能耗在5%以内。通过使用相关的PSAT模型,对先进储能系统进行了进一步的研究,以评估超级电容器辅助电池的效益。超级电容器在混合动力汽车中充当额外的负载均衡装置,用于峰值推进和制动车辆负载,从而减少对电池的压力。模型仿真结果表明,超级电容器可使整车经济性提高2% ~ 4%,电池效率净提高3% ~ 4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and evaluation of a plug-in hybrid fuel cell shuttle bus
The Center for Electromechanics at The University of Texas at Austin acquired a plug-in hybrid fuel cell bus for demonstration and model development under a program funded through the USDOT-FTA. The purpose of this program was to evaluate the performance and use of the bus while developing a model that could predict overall performance and energy consumption on daily driving routes. A model of the fuel cell bus was developed using PSAT (Powertrain Analysis Toolkit). The model development involved verifying component characteristics and a parametric study of drivetrain efficiencies to relate predicted to measured vehicle energy consumption data from on-road testing. The PSAT model was able to predict net energy consumption to within 5% over varying route profiles and vehicle conditions. Further investigations with advanced energy storage were performed to evaluate the benefits of ultracapacitor assisted batteries by using the correlated PSAT model. Ultracapacitors act as an additional load leveling device in the hybrid vehicle for peak propulsion and braking vehicle loads, thereby reducing stress on the batteries. The model simulation results show that ultracapacitors can increase overall vehicle economy by 2 to 4% and deliver a net increase in battery efficiency of 3 to 4%.
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