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基于Gim轮胎的四轮驱动汽车牵引力控制地面驱动力修正方法
引用本文:姜立标,黄树程,刘巍,邱少健,马乐.基于Gim轮胎的四轮驱动汽车牵引力控制地面驱动力修正方法[J].机床与液压,2016,44(21):52-57.
作者姓名:姜立标  黄树程  刘巍  邱少健  马乐
作者单位:1. 华南理工大学机械与汽车工程学院,广东广州,510640;2. 浙江吉利汽车研究院有限公司,浙江杭州,311200;3. 华南理工大学广州学院,广东广州,510800
基金项目:国家自然科学基金资助项目(51275175),广东省自然科学基金资助项目(2014A030313254)
摘    要:针对四轮驱动汽车牵引力控制系统的研究,直接将Gim轮胎模型得出的轮胎纵向力作为地面对轮胎的驱动力存在偏差。提出了地面驱动力的修正方法,并在高、低附着系数路面模拟地面驱动力偏差对车速的影响。仿真结果表明,高附着系数路面上地面驱动力偏差几乎为0;低附着系数路面上地面驱动力偏差对整车车速的影响显著;低附着系数路面存在着较大地面驱动力偏差,显著影响到四轮驱动汽车牵引力控制系统的控制精度,所提出的地面驱动力修正方法提高了牵引力控制系统的准确性。

关 键 词:四轮驱动汽车  牵引力控制  地面驱动力  偏差  修正方法  离线仿真

Correction Method for Ground Driving Force of Four wheel Drive Vehicle Traction Control Based on Gim Tire Model
Abstract:In the study of four-wheel drive vehicle traction control system, there is a deviation regarding the tire longitudinal force from Gim tire model as ground driving force directly. A correction method for ground driving force was proposed, and simulations on both high and low adhesion coefficient ground were carried out to simulate the influence on the vehicle velocity with the deviation of ground driving force. The simulation results show that the deviation of ground driving force is almost zero on the high adhesion coeffi-cient road. But on the low adhesion coefficient road, the deviation of ground driving force has a significant influence on vehicle velocity. There is a larger deviation of ground driving force on the low adhesion coefficient road, which significantly affects the control precision of the four-wheel drive vehicle traction control system. The proposed correction method for ground driving force improves the accuracy of the traction control system.
Keywords:Four-wheel drive vehicle  Traction control  Ground driving force  Deviation  Correction method  Off-line simulation
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