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电动迷你越野车悬挂系统的优化与测试

Optimization and testing of suspension system of electric mini off-road vehicles.

作者信息

Yu Bin, Wang Zhice, Zhu Dayou, Wang Guoye, Xu Dongxin, Zhao Jie

机构信息

Beijing Institute of Space Launch Technology, Beijing, China.

China Agricultural University, Beijing, China.

出版信息

Sci Prog. 2020 Jan-Mar;103(1):36850419881872. doi: 10.1177/0036850419881872. Epub 2019 Oct 15.

Abstract

Mini vehicles with a small wheelbase are extremely sensitive to road roughness. The aim of this study is to explore the influence of road information on ride comfort and enhance the ride comfort of mini vehicles. According to the 5-degree-of-freedom vibration model of an electric mini off-road vehicle, the partial differential matrix equation of system motion is established using the Lagrange method, and the frequency response characteristic of the system is analyzed. The input matrix of pavement unevenness is obtained by considering the mutual power spectrum density between front and rear wheels. Road surface roughness information is obtained using an instrument for measuring road roughness. A comprehensive objective function and a constraint condition are established for comfort and safety. Based on the parameters obtained through the optimum design of a 1/4 vehicle model, the optimized stiffness and damping coefficient of suspension are obtained using a MATLAB optimization program. The law of the vibration performance of off-road vehicles with respect to suspension stiffness and the damping coefficient is obtained through the analysis of optimized results. A driving simulation and a test are conducted on the electric mini off-road vehicle. The results show that the use of the measured pavement data as simulation input is closer to the actual situation and provides higher accuracy compared to the simulated pavement model. According to the optimization and test results, the parameters optimized by a 1/2 vehicle (5 degrees of freedom) vibration model are better than those optimized by the 1/4 vehicle vibration model. The optimization results confirm reduction in acceleration, acceleration power spectrum density, and the root mean square of the weighted acceleration of the seat. This shows that the electric mini off-road vehicle provides better ride comfortability after optimization.

摘要

轴距较小的微型车辆对路面不平度极为敏感。本研究旨在探讨道路信息对乘坐舒适性的影响,并提高微型车辆的乘坐舒适性。根据电动微型越野车的五自由度振动模型,采用拉格朗日方法建立系统运动的偏微分矩阵方程,并分析系统的频率响应特性。通过考虑前后轮之间的互功率谱密度获得路面不平度的输入矩阵。使用路面不平度测量仪获取路面粗糙度信息。为舒适性和安全性建立了综合目标函数和约束条件。基于通过1/4车辆模型优化设计获得的参数,利用MATLAB优化程序获得悬架的优化刚度和阻尼系数。通过对优化结果的分析,得出越野车振动性能随悬架刚度和阻尼系数的变化规律。对电动微型越野车进行了驾驶模拟和测试。结果表明,将实测路面数据用作模拟输入比模拟路面模型更接近实际情况,且精度更高。根据优化和测试结果,由1/2车辆(五自由度)振动模型优化的参数优于由1/4车辆振动模型优化的参数。优化结果证实了座椅加速度、加速度功率谱密度和加权加速度均方根的降低。这表明电动微型越野车优化后具有更好的乘坐舒适性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a1a/10358550/b7d6682222b4/10.1177_0036850419881872-fig1.jpg

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