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Influence of Road Excitation and Steering Wheel Input on Vehicle System Dynamic Responses

机译:道路激励和方向盘输入对车辆系统动力响应的影响

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Considering the importance of increasing driving safety, the study of safety is a popular and critical topic of research in the vehicle industry. Vehicle roll behavior with sudden steering input is a main source of untripped rollover. However, previous research has seldom considered road excitation and its coupled effect on vehicle lateral response when focusing on lateral and vertical dynamics. To address this issue, a novel method was used to evaluate effects of varying road level and steering wheel input on vehicle roll behavior. Then, a 9 degree of freedom (9-DOF) full-car roll nonlinear model including vertical and lateral dynamics was developed to study vehicle roll dynamics with or without of road excitation. Based on a 6-DOF half-car roll model and 9-DOF full-car nonlinear model, relationship between three-dimensional (3-D) road excitation and various steering wheel inputs on vehicle roll performance was studied. Finally, an E -Class (SUV) level car model in CARSIM ? was used, as a benchmark, with and without road input conditions. Both half-car and full-car models were analyzed under steering wheel inputs of 5°, 10° and 15°. Simulation results showed that the half-car model considering road input was found to have a maximum accuracy of 65%. Whereas, the full-car model had a minimum accuracy of 85%, which was significantly higher compared to the half-car model under the same scenario.
机译:考虑到提高驾驶安全性的重要性,安全性研究是汽车工业研究中的一个流行且至关重要的课题。具有突然转向输入的车辆侧倾行为是未脱扣侧翻的主要来源。但是,以前的研究很少关注侧向和垂直动力学时的道路激励及其对车辆横向响应的耦合效应。为了解决这个问题,使用了一种新颖的方法来评估不同的道路高度和方向盘输入对车辆侧倾行为的影响。然后,建立了一个包含垂直和横向动力学的9自由度(9-DOF)的全车侧倾非线性模型,以研究有或没有道路激励的车辆侧倾动力学。基于6自由度半车侧倾模型和9自由度全车非线性模型,研究了三维(3-D)道路激励与各种方向盘输入之间的关系,研究了车辆侧倾性能。最后,CARSIM中的E级(SUV)级汽车模型是什么?在有和没有道路输入条件的情况下,以基准为基准。半车模型和全车模型都在5°,10°和15°的方向盘输入下进行了分析。仿真结果表明,考虑道路输入的半车模型的最大精度为65%。相比之下,全车模型的最低精度为85%,与相同情况下的半车模型相比,其准确性要高得多。

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