Researching low frequency vibration of automobile-robot

Yujie Jia, Vanliem Nguyen
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Abstract

Automobile-robot (self-driving automobile) is being researched and developed vigorously. When the automobile-robot is moving on the road surface, the low frequency vibration excitation not only influences the ride comfort of the automobile-robot but also strongly affects the durability of the vehicle’s structures. To research the automobile-robot’s vibration in the low frequency region, a dynamic model of the vehicle is established to calculate the vibration equations in the time region. Based on the theory of the Laplace transfer function, the automobile-robot’s vibration equations in the time region are transformed and converted to the vibration equations in the frequency region. Then, the effect of the design parameters and operation parameters on the characteristic of the automobile-robot’s acceleration-frequency is simulated and analyzed to evaluate the ride comfort as well as the durability of the automobile-robot’s structures in the frequency region. The research results show that the design parameters of the stiffness, mass, and road wavelength remarkably affect the characteristic of the automobile-robot’s acceleration-frequency. To reduce the resonant amplitude of the acceleration-frequency in the vertical and pitching direction of the automobile-robot, the stiffness parameters of the automobile-robot's and tires should be reduced while the mass of the automobile-robot’s body should be increased. Additionally, the road’s roughness also needs to be decreased or the road’s quality needs to be enhanced to reduce the resonant amplitude of the automobile-robot’s acceleration-frequency.
汽车-机器人低频振动研究
汽车机器人(自动驾驶汽车)正在得到大力研究和开发。当汽车-机器人在路面上行驶时,低频振动激励不仅影响汽车-机器人的乘坐舒适性,而且对车辆结构的耐久性也有很大影响。为了研究汽车-机器人在低频区域的振动,需要建立一个汽车动态模型来计算时间区域的振动方程。根据拉普拉斯传递函数理论,将汽车-机器人在时间区域的振动方程转换为频率区域的振动方程。然后,模拟分析了设计参数和运行参数对汽车机器人加速度-频率特性的影响,以评估汽车机器人结构在频率区的乘坐舒适性和耐久性。研究结果表明,刚度、质量和路面波长等设计参数对汽车机器人的加速频率特性有显著影响。为了降低汽车机器人在垂直方向和俯仰方向的加速度频率共振振幅,应降低汽车机器人和轮胎的刚度参数,同时增加汽车机器人车身的质量。此外,还需要降低道路的粗糙度或提高道路的质量,以降低汽车-机器人加速度-频率的共振频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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