新型电动轮毂悬架的优化设计

Chaolei Chen, Yuanxiong Cheng, F. Meng
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引用次数: 3

摘要

传统电动车轮存在着严重的技术问题,即轮毂电机带来的较大的非簧载质量引起的垂直振动负效应。提出了一种新型的带轮内悬架的多功能集成电动轮结构。新的结构避免了非簧载质量的增加。基于四分之一车辆模型,采用数值模拟和仿真的方法研究了该悬架系统的车轮垂直动力学性能。车辆动力性能指标采用均方值评价,模型输入采用路面随机激励。根据轮内悬架的大小,采用线性加权和法计算出最优的刚度和阻尼系数,以实现最优的车辆动态性能。
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Optimum Design of a Novel In-Wheel Suspension of the Electric Wheel
The conventional electric wheels suffer from serious technical problem, called as vertical vibration negative effect caused by large unsprung mass brought by in-wheel motor. The paper presents a novel configuration of multi-functional integrated electric wheel with in-wheel suspension. New configuration avoids the increase of unsprung mass. Based on quarter-vehicle model, wheel vertical dynamics performance is investigated for the proposed suspension system by numerical modeling and simulation method. The vehicle dynamic performance index is evaluated by the mean square value, while model input is taken from the random excitation of the road surface. According to the size of the suspension within the wheel, the optimal stiffness and damping coefficient are calculated by using the linear weighted sum method to achieve the most excellent vehicle dynamic performance.
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