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首页> 外文期刊>International Journal of Automotive Technology >THE MECHATRONIC VEHICLE CORNER OF DARMSTADT UNIVERSITY OF TECHNOLOGY-INTERACTION AND COOPERATION OF A SENSOR TIRE, NEW LOW-ENERGY DISC BRAKE AND SMART WHEEL SUSPENSION
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THE MECHATRONIC VEHICLE CORNER OF DARMSTADT UNIVERSITY OF TECHNOLOGY-INTERACTION AND COOPERATION OF A SENSOR TIRE, NEW LOW-ENERGY DISC BRAKE AND SMART WHEEL SUSPENSION

机译:达姆施塔特工业大学的机电车弯角-传感器轮胎,新型低能耗碟刹和智能车轮悬架的相互作用与配合

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摘要

Future on-board vehicle control systems can be further improved through new types of mechatronic systems. In particular, these systems' capacities for interaction enhance safety, comfort and economic viability. The Automotive Engineering Department (fzd) of Darmstadt University of Technology is engaged in research of the mechatronic vehicle corner, which consists of three subsystems: sensor tire, electrically actuated wheel brake and smart suspension. By intercommunication of these three systems, the brake controller receives direct, fast and permanent information about dynamic events in the tire contact area provided by the tire sensor as valuable control input. This allows to control operation conditions of each wheel brake. The information provided by the tire sensor for example helps to distinguish between straightline driving and cornering as well as to determine μ-split conditions. In conjunction with current information of dynamic wheel loads, tire pressures and friction tyre/road, the ideal brake force distribution can be achieved. Alike through integration of adaptive suspension bushings, elastokinematic behaviour and wheel positions can be adapted to manoeuver-oriented requirements.
机译:通过新型机电一体化系统,可以进一步改善未来的车载控制系统。特别是,这些系统的交互能力增强了安全性,舒适性和经济可行性。达姆施塔特工业大学的汽车工程系(fzd)从事机电汽车转弯的研究,该系统由三个子系统组成:传感器轮胎,电动车轮制动器和智能悬架。通过这三个系统的互通,制动控制器接收到有关轮胎接触区域中由轮胎传感器提供的动态事件的直接,快速和永久信息,作为有价值的控制输入。这允许控制每个车轮制动器的操作条件。轮胎传感器提供的信息例如有助于区分直线行驶和转弯以及确定μ分裂状况。结合动态车轮负载,轮胎压力和摩擦轮胎/道路的当前信息,可以实现理想的制动力分配。同样,通过集成自适应悬架衬套,弹性运动特性和车轮位置也可以适应机动性要求。

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