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Co-simulation and simulation integration for a full vehicle dynamic system

机译:整车动态系统的协同仿真和仿真集成

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The electric power steering (EPS) mechanism ensures improved vehicle safety and fuel economy. The development of a concurrent simulation technique and a simulation integration technique for analysing an EPS control system with a dynamic vehicle system is described in this paper. A full vehicle model interacting with an EPS control algorithm was concurrently simulated on a single-bump road condition. The dynamic responses of the vehicle chassis and the steering system resulting from impact with the road surface were evaluated and compared with experimental data obtained at the proving ground. Reasonable agreement was obtained for tie-rod load, rack displacement, steering wheel torque, and tyre centre acceleration. The concurrent simulation capability was employed for EPS performance evaluation and calibration as well as for vehicle-handling performance integration and synthesis.
机译:电动助力转向(EPS)机制可确保提高车辆安全性和燃油经济性。本文描述了同时仿真技术和仿真集成技术的发展,用于分析具有动态车辆系统的EPS控制系统。在单颠簸路况下同时模拟了与EPS控制算法交互的完整车辆模型。评估了车辆底盘和转向系统因与路面碰撞而产生的动态响应,并将其与在试验场获得的实验数据进行了比较。在拉杆负载,齿条位移,方向盘扭矩和轮胎中心加速度方面取得了合理的共识。并行仿真功能用于EPS性能评估和校准以及车辆处理性能集成和综合。

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