城市工况下电动汽车传动系统能效评价

J. Kropiwnicki, Tomasz Gawłas
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引用次数: 0

摘要

在电动汽车和混合动力汽车中,影响动力系统能量效率的一个非常重要的因素是利用再生制动能量的能力。根据电动汽车的设置,驾驶员可以选择不同的操作模式:完全关闭再生制动模式,选择再生制动的强度,或使控制系统处于自动模式。最后一种模式通常是折衷车型上唯一可用的模式,因此驾驶员无法决定是关闭还是增加再生制动的强度。本文提出了一种评价城市工况下电动汽车动力系统能效的新方法。所提出的方法使用一种程序来绘制操作条件图,以确定与识别测试期间记录的能量消耗相关的参考水平。在三城地区使用不同用途和操作参数的电动汽车进行了识别试验。所进行的测试允许评估测试车辆的再生制动效率,其变化范围相对较大,车辆a从33%到77%,车辆B从27%到55%,车辆C从36%到58%。结果表明,蓄电器的充电状态水平和车辆控制该参数的管理算法是决定再生制动效率的主要因素之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the energy efficiency of electric vehicle drivetrains under urban operating conditions
In electric vehicles, as in hybrids vehicles, a very important factor affecting the energy efficiency of the powertrain is the ability to use the regenerative braking energy. Depending on the settings available in electric vehicles, the driver can choose different modes of operation: switch off the regenerative braking mode altogether, select the intensity of regenerative braking, or leave the control system in automatic mode. The last mode is often the only one available on eclectic vehicles, so the driver cannot decide whether to switch off or increase intensity of the regenerative braking. This paper presents a new method for evaluating the energy efficiency of electric vehicle powertrains under urban operating conditions. The presented method uses a procedure for mapping the operating conditions allowing to determine the reference level of energy consumption in relation to those recorded during the identifica-tion tests. Identification tests were carried out in the Tri-City area using electric vehicles of different purposes and operating parameters. Performed tests allowed to evaluate the regenerative braking efficiency of tested vehicle, which varies over a relatively wide range, for vehicle A from 33% to 77%, for vehicle B from 27% to 55% and for vehicle C from 36% to 58%. It can be concluded that one of the main factors determining the regenerative braking efficiency is the level of state of charge of the accumu-lator and the management algorithm used by the vehicle for controlling this parameter.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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