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An evaluation study of current and future Fuel Cell Hybrid Electric Vehicles powertrains

机译:当前和未来燃料电池混合动力电动汽车动力总成的评估研究

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The powertrain control strategy and component sizing can significantly influence the vehicle performance, cost and fuel economy. This paper presents an evaluation study of the current and future Fuel Cell Hybrid Vehicles (FCHEVs) powertrains from the point of view of the fuel economy, volume, mass and cost. In this research, different FCHEV powertrains (such as Fuel Cell/Supercapacitor (FC/SC), Fuel Cell/Battery (FC/B), and FC/SC/B) and different control strategies are designed and simulated by using Matlab/Simulink. In this paper, two standard driving cycles (NEDC and FTP75) are used to evaluate the fuel consumption. Within this study, two control strategies based on the knowledge of the fuel cell efficiency map are implemented to minimize the hydrogen consumption of the FCHEV powertrains. These control strategies are control strategy based on Efficiency Map (CSEM) and control strategy based on Particle Swarm Optimization (CSPSO). Furthermore, a comparative study of different FCHEV powertrains is provided for adequately selecting of the proper FCHEV powertrain, which could be used in industrial applications.
机译:动力总成控制策略和零部件尺寸会严重影响车辆性能,成本和燃油经济性。本文从燃油经济性,体积,质量和成本的角度对当前和未来的燃料电池混合动力汽车(FCHEV)动力总成进行了评估研究。在这项研究中,使用Matlab / Simulink设计和仿真了不同的FCHEV动力总成(例如燃料电池/超级电容器(FC / SC),燃料电池/电池(FC / B)和FC / SC / B)和不同的控制策略。 。在本文中,使用两个标准驾驶循环(NEDC和FTP75)来评估燃油消耗。在这项研究中,基于燃料电池效率图的知识,实施了两种控制策略以最小化FCHEV动力总成的氢气消耗。这些控制策略是基于效率图(CSEM)的控制策略和基于粒子群优化(CSPSO)的控制策略。此外,还提供了对不同FCHEV动力总成的比较研究,以适当地选择合适的FCHEV动力总成,该动力总成可以在工业应用中使用。

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