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DRIVEWISE- A VEHICLE WITH STEER-BY-WIRE AND TORQUE- VECTORING?

机译:驾驶汽车-带有线控转向和扭矩控制的车辆?

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The Drivewise program was designed to create a vehicle with two safety relevant "actuator" systems on it (Steer-by-wire and Torque-vectoring?) is such a way that the combined system is both suitably safe and integrated from a drivers and cost perspective. This means that where practical from a safety viewpoint, sensors and electronic control units are shared by the 2 sub-systems and some faults in one subsystem are actually "covered" at a system level by the other sub-system.The design process used to develop the vehicle is an enhanced version of that proposed by the EU funded EASIS program (EASIS - Electronic Architecture and System Engineering for Integrated Safety Systems (1)). This process has been heavily automated particularly by use of the AutoFMEATM tool (2) which allows a safety analysis to be conducted at an early stage in the program and progressively refined during the program. The speed and flexibility of this tool allowed exploration of various design trade-offs, allowing for example the safety impact of sharing a sensor to be easily investigated.The Steer-by-wire system fitted to the vehicle has a mechanical backup to allow driving on public roads but normally operates in a true steer by wire mode. The torque-vectoring system works on the two rear (driven) wheels and allows complete control of the torque split between the 2 wheels (even if the input torque from the gasoline engine is zero). This means that the torque-vectoring? sub-system is able to generate a yaw motion on the vehicle which is normally used to competent the yaw introduced by the (front) steering. This capability for both systems to generate a yaw motion on the vehicle allows the use of one system as a backup for the other under some fault conditions. The system has been fitted to an Audi A6 vehicle.The paper provides an overview of the design process used, focussing on the safety aspects of the design and the tools used. It then describes the final system and its implementation on the (Audi A6) vehicle. It will also include details of the validation work undertaken on the vehicle as well as some feedback on the performance of the complete system. Testing of the completed system is still ongoing and the latest results will be presented at the conference.
机译:Drivewise程序旨在创建具有两个与安全相关的“执行器”系统的车辆(线控和扭矩矢量控制系统),从而使组合系统既安全又可以从驾驶员那里集成到一起,并且降低了成本看法。这意味着从安全角度出发,在可行的情况下,传感器和电子控制单元由两个子系统共享,而一个子系统中的某些故障实际上是​​在另一个子系统的系统级“覆盖”的。 用于开发车辆的设计过程是欧盟资助的EASIS计划(EASIS-集成安全系统的电子体系结构和系统工程(1))提出的设计过程的增强版本。特别是通过使用AutoFMEATM工具(2),该过程已实现了高度自动化,该工具允许在程序的早期阶段进行安全分析,并在程序过程中逐步完善安全分析。该工具的速度和灵活性允许探索各种设计折衷方案,例如,可以轻松地研究共享传感器的安全影响。 安装在车辆上的线控转向系统具有机械后备系统,可以在公共道路上行驶,但通常以线控模式进行真正的转向。扭矩矢量系统在两个后(驱动)轮上工作,并且可以完全控制两个车轮之间的扭矩分配(即使汽油发动机的输入扭矩为零)。这意味着转矩矢量?子系统能够在车辆上产生偏航运动,通常用于补偿由(前)转向引入的偏航。两种系统在车辆上产生横摆运动的能力允许在某些故障情况下使用一种系统作为另一种系统的后备。该系统已安装到奥迪A6车辆上。 本文提供了所用设计过程的概述,重点是设计的安全性和所使用的工具。然后,它描述了最终系统及其在(Audi A6)车辆上的实现。它还将包括在车辆上进行的验证工作的详细信息,以及有关整个系统性能的一些反馈。完整系统的测试仍在进行中,最新结果将在会议上介绍。

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