道路电力和混合动力推进的操作和能量有效性

G. Brusaglino
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摘要

菲亚特研究中心几年来一直在开发电动和混合动力设备的活动。这些已应用于为实验或实际操作目的而制造的车辆上。在进行开发时,特别考虑了能源效率、驱动响应和维护要求,并考虑了经济方面。效率是通过驱动系统概念和能源管理策略来实现的。目前应用的驱动系统是基于由电子电源调节器供电的单独励磁直流电机。本文讨论了牵引电动机和控制器的特点,并讨论了各种应用可能的不同版本。在未来技术领域,使用永磁体的方法已被考虑。给出了永磁直流电动机的实验结果。以菲亚特900E/E2和依维柯Daily E2电动货车为例,阐述了系统开发和集成以及控制策略,两者的有效载荷分别为1/2吨和1吨。在城市运行中,这些车辆的总能耗约为160瓦时/吨。讨论了驱动响应和维护方面的操作问题。在混合动力领域,介绍了意大利国家研究委员会支持的一种混合动力公共汽车的推进装置和能量控制策略。它由柴油发电机组、蓄电池和带电子控制器的单独励磁直流电机组成。系统优化策略使得混合动力模式在城市地区运行时的燃油经济性比在相同载荷和驾驶模式条件下运行的传统版本公交车提高了27%。
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Operational and energetical effectiveness of road electric and hybrid propulsion
Fiat Research Center is developing, since several years, activities on electric and hybrid apparatuses. These has been applied on vehicles manufactured either for experimental or for pratical operation purposes. The development has been performed with particular consideration to energetical effectiveness, driving response and maintenance requirements, taking into account the economical aspect. The efficiency is achieved both through the drive system concept and the energy management strategy. The drive system for present applications are based on separately excited d.c. motors fed by electronic power conditioners. The particular features of the traction motors and the controllers with the possible diversified version for various applications are discussed in the paper. In the field of future technology, the approach with permanent magnets has been considered. Results on a permanent magnet d.c. motor are presented. The system development and integration as well as the control strategy is explained with reference to the Fiat 900E/E2 and the Iveco Daily E2 electric vans, having a payload of 1/2 ton and 1 ton respectively. The energy consumption of these vehicles measured at the mains is some 160 Wh/ton in urban operation. The operational aspect is discussed referred to driving response and maintenance. In the field of hybrids, the propulsion apparatus and the energy control strategy is described for a hybrid electric bus, developed in a program supported by the Italian National Research Council. It consists of a diesel electric generator unit, storage batteries and a separately excited d.c. motor with electronic controller. The system optimization strategy allowed an improvement of fuel economy in hybrid mode operation in urban areas in terms of 27% in comparison with the conventional version of the bus operating in the same conditions of payload and driving pattern.
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