首个基于燃料电池集成的电动滑板车动力系统分析

Ettore Bianco, M. Carello
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引用次数: 0

摘要

由于便携性和低成本的解决方案,微型交通在城市中越来越普遍。电动滑板车是新兴的短途交通工具;然而,也存在一些缺点,如自主性和需要经常充电。本文以某电动踏板车商用动力系统为研究对象,对燃料电池(FC)集成的便利性进行分析,以获得自主性的提高。在Matlab/Simulink中实现了电动模型,研究了逆变器控制策略的行为和电动动力系统中的电流波形。通过实验验证了电无刷直流模型和控制策略。首先,在Maxon无刷直流电动机上进行了测试,评估了逆变器控制策略和电池组耦合。然后在商用电动滑板车Ninebot E25E上进行了动态试验,比较了两种电机的性能和逆变器的控制策略。论文的最后一部分介绍了燃料电池集成的第一个评估,比较了商业外部纳恩博电池组和地平线H-500燃料电池集成解决方案。结果验证了无刷直流模型和燃料电池集成的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A first e-scooter powertrain analysis for Fuel Cell integration
Micro-mobility is increasingly widespread in cities because of portability and low cost of the solutions. E-scooters are the emerging means of transport for short distances; however, some drawbacks are present such as the autonomy and the need of frequent recharges. The aim of this paper is to analyze an e-scooter commercial powertrain in order to evaluate the convenience of a Fuel Cell (FC) integration, obtaining an increase of autonomy. An electric model has been implemented in Matlab/Simulink, investigating the inverter control strategy behavior and the electrical waveforms flowing in the electric powertrain. Some experimental tests were performed to validate the electrical Brushless DC model and the control strategy. First, a test on a Maxon brushless DC motor was performed evaluating the inverter control strategy and battery pack coupling. Then a dynamic test was performed on a commercial e-scooter Ninebot E25E comparing the two motor behaviors and inverters control strategies. The final part of the paper presents a first evaluation of a fuel cell integration, comparing the commercial external Ninebot battery pack with a Horizon H-500 Fuel cell integration solution. The results have allowed the validation of the brushless DC model and the Fuel Cell integration feasibility.
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