Analysis of Regenerative Braking Effect for E-REV Bus According to Driving Cycle Based on Simulation

Jong-dae Choi, Jongryeol Jeong, S. Cha, Yeongil I. Park
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Abstract

Among eco-friendly vehicles, extended range electric vehicle (E-REV) is concept for electric vehicle that has light engine for extended range driving. One of the most important features of these vehicles based electricity is their ability to recover significant amounts of braking energy. Recovering the braking energy and reusing it can significantly improve the fuel economy of the vehicle which is subject to frequent braking events such as a city bus. To develop the E-REV bus, the regenerative braking effect should be checked in advance. However, because of many technical constraints, regenerative braking should consider some conditions like vehicle speed, accelerator pedal signal, brake pedal signal, battery voltage and so on. Hence, regenerative braking torque is assumed as 2D and 3D maps with these conditions based on simulation. Fuel economy simulations are conducted to analyze regenerative braking effect according to driving cycle. They consist of E-REV bus without regenerative braking and with regenerative braking torque maps. Fuel economy difference between two cases was calculated and driving cycles were analyzed. Among the characteristic analyzed, the aggressiveness means harshness of driving cycle. And the inclination between the aggressiveness and the fuel economy difference is verified. The smaller absolute value of the aggressiveness is, the smaller fuel economy difference is. In short, the aggressiveness and the regenerative braking effect have direct proportion. According to the obvious tendency, proper regenerative braking should be determined.
基于仿真的E-REV客车循环工况再生制动效果分析
在环保汽车中,增程电动汽车(E-REV)是为实现增程行驶而配备轻型发动机的电动汽车的概念。这些基于电力的车辆最重要的特点之一是它们能够回收大量的制动能量。回收并再利用制动能量可以显著提高城市公交车等频繁发生制动事件的车辆的燃油经济性。为了开发E-REV客车,应提前对其再生制动效果进行检查。但由于技术上的诸多限制,再生制动应考虑车速、加速踏板信号、制动踏板信号、电池电压等条件。因此,在仿真的基础上,假设再生制动力矩为二维和三维映射。通过燃油经济性仿真,分析了不同工况下的再生制动效果。它们由没有再生制动和再生制动扭矩图的E-REV总线组成。计算了两种工况的燃油经济性差异,并对其行驶工况进行了分析。在所分析的特性中,侵略性是指行驶工况的严酷性。并验证了侵略性的倾斜度与燃油经济性差异之间的关系。侵略性绝对值越小,燃油经济性差异越小。总之,侵略性与再生制动效果成正比。根据明显的趋势,应确定适当的再生制动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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