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Car-in-the-Loop Complete Vehicle Test Rig

机译:汽车换档完整车辆试验台

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During the last years mechatronic systems developed into one of the biggest drivers of innovation in the automotive industry. The start of production of systems like dual clutch transmission, lane departure warning systems and active suspensions proves this statement. These systems have an influence on the longitudinal, steering and vertical dynamics of the vehicle. That is why the interaction on vehicle level is crucial for an optimal result in the fields of efficiency, comfort, safety and dynamics. To optimize the interaction of mechatronic systems, in this paper a new test rig concept for a complete vehicle is presented. The so-called Car-in-the-Loop-concept is capable of realistically reproducing the loads, which act on the powertrain, the steering and the suspension during a test drive. The resulting advantages are the possibility to exactly reproduce test procedures, the independence from weather conditions and a minimization of the risk of human injuries during testing of safety functions. A prototype of this concept, which includes parts of the powertrain, the steering and the chassis corresponding to the left front side of a BMW Mini Countryman, was built at the lab of the Institute for Mechatronic Systems in Mechanical Engineering of the TU Darmstadt. A test rig shaft connects the wheelhub of the BMW Mini Countryman to actuators, which generate realistic loads corresponding to the current driving situation. To provide the needed adaptiveness for the steering and suspension movement constant velocity joints and ball-spline supported length compensations are included in the test rig shaft. A highly dynamic test drive is being reproduced on the prototype to prove the functionality of the Car-in-the-Loop-concept.
机译:在过去几年中,机电系统开发为汽车行业最大的创新驱动因素之一。系统的开始,如双离合器传输,车道出发警告系统和主动悬浮液都证明了这一说法。这些系统对车辆的纵向,转向和垂直动力产生影响。这就是为什么车辆水平的互动对于效率,舒适,安全性和动态领域的最佳结果至关重要。为了优化机电系统的相互作用,在本文中,提出了一种用于完整车辆的新型测试台概念。所谓的循环概念能够现实地再现负载,该负载在试驾期间用动力系,转向和悬架作用。由此产生的优点是精确再现测试程序,独立于天气条件的独立性以及在安全功能测试期间人类伤害的风险。这种概念的原型包括电动系,转向和与BMW Mini Countryman的左前侧对应的部分,建立在Tu Darmstadt机械工程研究所的机械工程研究所的实验室。试验台轴将BMW Mini Countryman的车轮连接到执行器,从而产生与当前驾驶情况相对应的现实载荷。为了提供所需的转向和悬架运动恒定速度关节和球花束支撑的长度补偿,包括在试验台中。在原型上再现高度动态的测试驱动器,以证明循环概念的功能的功能。

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