基于锥形楔形的电子楔形制动机构在汽车制动系统中的试验评价

Q2 Engineering
Sharil Izwan Haris, F. Ahmad, Mohd Hanif Che Hassan, Ahmad Kamal Mat Yamin
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引用次数: 1

摘要

制动系统是车辆避免事故技术中最关键的部分之一。制动系统的最终重点是保证有足够的止动力来阻止车辆的纵向运动。因此,必须从分析制动系统的性能和在实际车辆上实施制动系统的角度来检验制动系统的停车能力。本研究对基于锥形楔形的电子楔形制动器(CW-EWB)在汽车制动系统上的性能进行了评价。通过动态评估,即采用MATLAB Simulink软件仿真方法进行40、60和90 km/h等速下的突然制动试验,并采用硬件在环仿真(HILS)进行实验研究。在仿真研究中,将采用CW-EWB的车辆制动系统性能与采用传统液压制动器的车辆制动性能进行了比较。结果表明,CW-EWB在所需制动扭矩输出方面与液压制动相似,但响应时间更快,在0.5 - 1 s之间。通过HILS试验研究,对该系统在实际车辆上的性能进行了评价。该方法在可变响应时间小于6%的情况下,将HILS结果与仿真结果进行了验证。评估了车辆的车身速度、车轮速度、轮胎纵滑和停车距离。研究结果表明,所提出的CW-EWB是相当有效和足够可靠的车辆制动系统,特别是在防抱死制动系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Experimental Evaluation of Cone Wedge Shape based Electronic Wedge Brake Mechanism in Vehicle Braking System
The brake system is one of the most critical parts of a vehicle's technology for avoiding accidents. The ultimate focus of the braking system is to guarantee that adequate stopping force is available to stop the vehicle's longitudinal movement. Therefore, the ability of a brake system to stop a vehicle must be examined in terms of analyzing the brake system's performance and the implementation of the brake system on actual vehicles. This study offers a performance evaluation of the Electronic Wedge Brake based on the Cone Wedge Shape (CW-EWB) on the vehicle brake systems. The evaluation was carried out through dynamic assessments, namely sudden braking tests at constant speeds of 40, 60, and 90 km/h using the MATLAB Simulink software simulation method and an experimental study using hardware-in-loop simulation (HILS). In the simulation study, the performance of the vehicle brake system using CW-EWB was compared with the brake performance of the vehicle using the conventional hydraulic brake (CHB). The results showed that CW-EWB behaved similarly to the hydraulic brake in terms of required brake torque output but with a faster response time, i.e., between 0.5 – 1 s. The HILS experimental study was conducted to evaluate the performance of the CW-EWB on actual vehicles. This method confirmed the HILS results against the simulation results with a variable response time of less than 6%. Vehicle body speed, wheel speed, longitudinal tire slip, and stopping distance experienced by the vehicle were all evaluated. The study's findings show that the proposed CW-EWB is quite effective and sufficiently dependable to be used as a vehicle brake system, notably in Antilock Braking Systems.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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