主动驾驶性控制的传动系统建模分析

Chaohong Fang, Z. Cao, M. Ektesabi, A. Kapoor, A. Sayem
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引用次数: 8

摘要

现代汽车需要高度的改进,包括驾驶性能,以满足驾驶员的期望。在不影响加速性能的前提下,主动驾驶性控制是一种提高驾驶舒适性的常用方法。电动汽车由于传动系统周围安装较少,车厢内背景噪声较小,因此在侧倾操纵中存在较多的驾驶性能问题。研究传动系统建模技术对于开发新的控制算法是很重要的。本文通过Matlab仿真对比分析了目前传动系统的建模方法。建立了包含轮胎动力学的传动系统模型,并通过仿真验证了该模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Driveline modelling analysis for active driveability control
Modern vehicles require a high degree of refinement, including the driveability, to meet the driver's expectation. Active driveability control is a popular method to improve the drive comfort without impact on acceleration performance. Electric vehicles have more driveability concern in tip-in manoeuver because of less mounting around driveline and less background noise in compartment. It is important to investigate the driveline modelling techniques for development of new control algorithms. This paper presents the analysis of the current driveline modelling methods through comparison simulations in Matlab. A driveline model including the tyre dynamics is developed and its effectiveness has been demonstrated by simulations.
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