首页> 外文会议>2012 IET International Conference on Information Science and Control Engineering >Development of hardware-in-loop and virtual reality co-simulation platform for automotive anti-lock braking system
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Development of hardware-in-loop and virtual reality co-simulation platform for automotive anti-lock braking system

机译:汽车防抱死制动系统硬件在环与虚拟现实协同仿真平台的开发

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摘要

To improve the development efficiency of automotive anti-lock braking system (ABS), a simulation test approach is proposed, this test approach is based on hardware-in-loop simulation and virtual reality technology. Real braking system, accelerator pedal, brake pedal and steering system are used as external I/O, with NIPXI real-time emulator to run the vehicle dynamic model, the real-time simulation interface to connect external I/O and vehicle model data are established. A wheel speed acquisition system is developed to send the wheel speed to the ECU, ECU control electromagnetic valve according to the received data. At the same time, a virtual reality system based on 3D engine technology is developed. Virtual reproduction of the vehicle running is realized according to the received real-time data. Simulation tests on the platform for ABS under different conditions are done, the results show that the platform can reproduce the simulation process and shorten the ABS development cycle.
机译:为了提高汽车防抱死制动系统(ABS)的开发效率,提出了一种仿真测试方法,该测试方法基于硬件在环仿真和虚拟现实技术。真实的制动系统,油门踏板,制动踏板和转向系统用作外部I / O,使用NIPXI实时仿真器运行车辆动态模型,实时模拟接口连接外部I / O和车辆模型数据,成立。开发了一种轮速采集系统,根据接收到的数据将轮速发送到ECU,ECU控制电磁阀。同时,开发了基于3D引擎技术的虚拟现实系统。根据接收到的实时数据实现车辆行驶的虚拟再现。在不同条件下对ABS平台进行了仿真测试,结果表明该平台可以重现仿真过程,缩短ABS开发周期。

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