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首页> 外文期刊>International journal of hydrogen energy >Design of a range extension strategy for power decentralized fuel cell/battery electric vehicles
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Design of a range extension strategy for power decentralized fuel cell/battery electric vehicles

机译:功率分散型燃料电池/电池电动汽车的续驶里程策略设计

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摘要

Range extended electric vehicle is proposed to improve the range anxiety that drivers have regarding the battery running out on electric vehicles. Current design has compensated for this shortcoming by cascading a gasoline/diesel generator with the battery to facilitate the range of an electric vehicle. Due to the zero-CO2 emission stipulations, utilizing fuel cells as generators raises concerns in society. This paper presents a fuzzy charging strategy for power decentralized fuel cell/battery electric vehicles. In comparison to the conventional switch control, the proposed approach plays the role of enhancing the battery's state of charge (SOC). This approach improves the quick loss problem of the system's SOC and thus can offer a longer driving range. Smooth steering experience and range extension are employed as the main indexes for development of the fuzzy rules, which are mainly based on the energy management in the urban driving model. Evaluation of the entire control system is performed by simulation, which demonstrates its feasibility and effectiveness. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了增程电动车辆以改善驾驶员对电动车辆的电池用尽所产生的范围焦虑。当前的设计通过将汽油/柴油发电机与电池级联以弥补电动汽车的续航里程而弥补了这一缺点。由于二氧化碳排放量为零的规定,利用燃料电池作为发电机引起了社会的关注。本文提出了一种功率分散式燃料电池/电池电动汽车的模糊充电策略。与传统的开关控制相比,所提出的方法起着增强电池充电状态(SOC)的作用。这种方法改善了系统SOC的快速损耗问题,因此可以提供更长的驱动范围。平稳的转向经验和范围扩展被用作发展模糊规则的主要指标,这些模糊规则主要基于城市驾驶模型中的能量管理。通过仿真对整个控制系统进行评估,证明了其可行性和有效性。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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