基于阻力系数和道路角度的电动汽车性能分析

P. Prathibha, E. R. Samuel
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引用次数: 1

摘要

交通运输业是最大的能源使用者,我们在这方面高度依赖石油储备。石油价格日益飙升,世界石油储量正在以更快的速度减少。按照目前的趋势,到2050年,全球人口可能从60亿增加到100亿。因此,车辆数量的增加增加了总污染。因此,发展清洁和可持续的交通系统是当务之急。因此,电动汽车(ev)正变得非常重要,并将监督清洁汽车市场。电动汽车的设计方法是多学科的,有各种各样的技术来评估车辆的性能。本文提出了一种计算总牵引力的方程放置策略。考虑上坡时作用在车辆上的各种阻力,从而得到车辆的总牵引力。分析了车辆动力学参数与车辆牵引力需求之间的关系。通过改变气动阻力系数和道路角度来达到特定的最终速度,提供了一个比较。在MATLAB平台上对车辆动力学方程进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Electric Car Based on Drag Coefficients and Road Angles
Transportation sector is the largest energy user and we are highly dependable on oil reserves for this purpose. Oil prices are skyrocketing day by day and the oil reserves in the world are diminishing at a faster rate. With the current trend, the global population may increase from 6 billion to 10 billion by 2050. Hence an increase in vehicle numbers adds on to total pollution. Therefore, it is high time to develop a clean and sustainable transportation system. Thus, Electric Vehicles (EVs) are attaining huge importance and will oversee the clean vehicle market. The electric vehicle design approach is multidisciplinary and there are various techniques to evaluate the performance of the vehicles. The paper presents an equation placed strategy to calculate the total tractive power. The various resistive forces acting on a vehicle during uphill condition is considered in order to get the total tractive force. The paper analyses the relationship between the dynamic vehicle parameters and the tractive force requirement of the vehicle. A comparison is provided by varying the aerodynamic drag coefficients and road angles for achieving a particular final velocity. Vehicle dynamic equations are simulated in MATLAB platform.
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