Modular and Scalable Powertrain for Multipurpose Light Electric Vehicles

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC World Electric Vehicle Journal Pub Date : 2023-11-11 DOI:10.3390/wevj14110309
Mehrnaz Farzam Far, Damijan Miljavec, Roman Manko, Jenni Pippuri-Mäkeläinen, Mikaela Ranta, Janne Keränen, Jutta Kinder, Mario Vukotić
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Abstract

Light electric vehicles are best suited for city and suburban settings, where top speed and long-distance travel are not the primary concerns. The literature concerning light electric vehicle powertrain design often overlooks the influence of the associated driving missions. Typically, the powertrain is initially parameterized, established, and then evaluated with an ex-post-performance assessment using driving cycles. Nevertheless, to optimize the size and performance of a vehicle according to its intended mission, it is essential to consider the driving cycles right from the outset, in the powertrain design. This paper presents the design of an electric powertrain for multipurpose light electric vehicles, focusing on the motor, battery, and charging requirements. The powertrain design optimization is realized from the first stages by considering the vehicle’s driving missions and operational patterns for multipurpose usage (transporting people or goods) in European urban environments. The proposed powertrain is modular and scalable in terms of the energy capacity of the battery as well as in the electric motor shaft power and torque. Having such a possibility gives one the flexibility to use the powertrain in different combinations for different vehicle categories, from L7 quadricycles to light M1 vehicles.
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多用途轻型电动汽车的模块化和可扩展动力系统
轻型电动汽车最适合城市和郊区的环境,在这些地方,最高速度和长途旅行不是主要考虑的问题。关于轻型电动汽车动力总成设计的文献往往忽略了相关驾驶任务的影响。通常情况下,首先对动力系统进行参数化、建立,然后使用驾驶循环对前后性能进行评估。然而,为了根据预期任务优化车辆的尺寸和性能,在动力系统设计中,从一开始就考虑行驶循环是至关重要的。本文介绍了一种多用途轻型电动汽车的电动动力系统设计,重点介绍了电机、电池和充电要求。动力总成设计优化从第一阶段开始就考虑了车辆在欧洲城市环境中的驾驶任务和多用途使用(运送人员或货物)的操作模式。拟议的动力系统是模块化的,在电池的能量容量以及电动马达轴的功率和扭矩方面是可扩展的。有了这样的可能性,人们就可以灵活地将动力总成以不同的组合用于不同的车辆类别,从L7四轮车到轻型M1车辆。
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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
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