基于WLTC的电动汽车运动方式对牵引电池老化的影响分析

N. Shchurov, A. A. Shtang, S. I. Dedov, Wu Xiaogang
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引用次数: 1

摘要

考虑到电化学储能的发展,本文考虑了电动汽车的增长速度。确定了非均匀负载条件下锂电池的主要老化机理和再生制动过程中充电电池短模式能量交换过程的可逆性。为了评估锂电池的老化情况,以WLTC行驶循环为基础,根据WLTC行驶循环形成电动汽车储能单元负载。以一辆配备不同能量强度储能单元(ESU)的日产聆风(Nissan Leaf)为测试样本。得到了单个电芯的电流图,给出了电动机车车辆在各种控制方式下的最小、平均和最大电流,以及牵引、制动和停车方式的持续时间。对未来一段时间内ESU能量强度的增长进行了假设,并确定了其对蓄电池负荷的影响。根据所进行的数据处理,揭示了与ESU能量强度增加有关的电源过程中的主要变化
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 Electric Vehicles Motion Modes Influence on Traction Batteries Aging Based on WLTC
The paper considers the growth rates of electric vehicles, taking into account the development of electrochemical energy storage. The main lithium batteries aging mechanisms under conditions of uneven load and reversible nature of energy exchange processes with short modes of recharging batteries during regenerative braking are determined. To assess the aging of the lithium battery, the WLTC driving cycle was taken as a basis, in accordance with which the load on the electric vehicle energy storage unit the was formed. A Nissan Leaf equipped with energy storage units (ESU) of different energy intensity was adopted as a test sample. Current diagrams were obtained for one battery cell, minimum, average and maximum currents, as well as durations of traction, braking and stopping modes in various control modes of electric rolling stock are given. An assumption is made about the growth of the energy intensity of the ESU in the future period and its influence on the load of the storage battery is determined. On the basis of the data processing carried out, the main changes in the processes occurring in the power source, associated with an increase in the energy intensity of the ESU, have been revealed
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