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Vehicle Suspension Performance Analysis Based on Full Vehicle Model for Condition Monitoring Development

机译:基于整车模型的车辆悬架性能分析在状态监测中的应用

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摘要

The objective of this research is to develop a mathematical model using a seven degree-of-freedom full car. The simulation analyses were conducted to predict the response of the vehicle when driven across speed bumps of different shapes and at range of speeds. Three bump sizes were considered in this study including bump 1 (500 mm x 50 mm), bump 2 (500 mm x 70 mm), and bump 3 (500 mm x 100 mm). These were run through the model at speeds of 8 km/hr, 16 km/hr, 24 km/hr and 32 km/hr. The model was validated using experimental data, which was collected by driving the vehicle across the bump 1 at a speed of 8km/h.\udThe performance of the suspension in terms of ride comfort, road handling and stability of the vehicle were analysed and presented. The vibration analysis for different speed levels of 8 km/hr, 16 km/hr, 24 km/hr and 32 km/hr indicated that, the effect of vehicle speeds on the vibration of the vehicle body increases at lower speeds up to a maximum value after which it began to decrease from the optimum point with increasing vehicle speeds. The model has been used for fault detection of under-inflation of vehicle Tyre by 35%, and also to predict possible future suspension faults.
机译:这项研究的目的是使用七自由度的完整汽车来开发数学模型。进行了仿真分析,以预测车辆在不同形状和速度范围内的减速带行驶时的响应。在本研究中考虑了三种凸块尺寸,包括凸块1(500 mm x 50 mm),凸块2(500 mm x 70 mm)和凸块3(500 mm x 100 mm)。这些模型分别以8 km / hr,16 km / hr,24 km / hr和32 km / hr的速度运行。使用实验数据对模型进行了验证,该实验数据是通过以8km / h的速度驾驶车辆越过颠簸1收集的。\ ud对悬架的行驶舒适性,道路操纵性和稳定性进行了分析。对8 km / hr,16 km / hr,24 km / hr和32 km / hr的不同速度水平的振动分析表明,车速对车体振动的影响在较低的速度下会增加,直到最大此值随车速的增加而从最佳点开始减小。该模型已用于车辆轮胎充气不足35%的故障检测,并预测未来可能发生的悬架故障。

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