农村公路电动汽车增程无线和接触网输电系统分析

Thomas Navidi, Yue Cao, P. Krein
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引用次数: 13

摘要

本文分析了两种不同的交通电气化充电方案,即嵌入式无线电力传输系统和架空悬链线系统,用于农村公路上电动汽车的增程。分析了两种方案的效率、可行性和效益。电动汽车目前缺乏广泛的普及主要是由于电池的限制,特别是长途旅行。本文提出的农村公路充电方法可以在减小电池尺寸的同时大大增加电动汽车的续航里程。在MATLAB/Simulink中开发了电力电子和车辆使用的平均建模方法,以比较两个系统,每个系统在两个功率水平下。选择30千瓦和48千瓦来演示能够在动态电动汽车上保持正净电荷的功率水平之间的差异。确定了各种型号的组件效率、能量传递水平和安装百分比。这些模型被应用在加州I-5高速公路上,显示出比汽油车节省巨大的潜力。研究表明,接触网充电比无线充电成本更低,能量传递能力更强;然而,它很难服务所有类型的车辆,有可见的电线,需要更多的维护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of wireless and catenary power transfer systems for electric vehicle range extension on rural highways
This paper analyzes two different transportation electrification charging schemes, i.e., an embedded wireless power transfer system and an overhead catenary wire system, for use in range extension of electric vehicles on rural highways. The efficiency, feasibility, and benefits of the two schemes are examined. Electric vehicles currently lack widespread popularity mainly due to battery limitations, especially for long distance travel. The rural highway charging methods presented here can greatly increase the range of electric vehicles while decreasing battery sizes. Average modeling approaches for power electronics and vehicle usage were developed in MATLAB/Simulink to compare the two systems, each at two power levels. 30 kW and 48 kW were chosen to demonstrate the differences between power levels both capable of maintaining a positive net charge on a dynamic electric vehicle. Component efficiencies, energy transfer levels, and installation percentages for the various models were determined. The models were applied to California highway I-5 to show immense potential savings over gasoline vehicles. It was shown that catenary charging is cheaper and has higher energy transfer than wireless; however, it has difficulty servicing all vehicle types, has visible wires, and requires more maintenance.
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