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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Development of ABS ECU with Hardware-in-the-Loop Simulation Based on Labcar System
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Development of ABS ECU with Hardware-in-the-Loop Simulation Based on Labcar System

机译:基于Labcar系统的半实物仿真ABS ECU的开发。

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摘要

This paper presents how hardware-in-the-loop (HIL) simulations have been used for testing during the development of ABS (Anti-lock Braking System). The Labcar system of ETAS is a popular tool for HIL tests. The vehicle model which is built in Matlab/Simulink is downloaded to run in RTPC (Real-time PC). The Labcar software, Integration Platform (IP), can configure boards which is a link between the model and ABS ECU. In this paper, a classical logic threshold control algorithm is adopted in ABS ECU. Through Labcar Experiment Environment (EE) various parameters can be monitored and modified conveniently. The HIL test of ABS ECU is implemented on high or low - adhesion road respectively. The results show that, although response lag exists in the hydraulic braking system, the curves of velocity and pressure in wheel cylinders can be close to those on real road with proper adjustment of control parameters. So HIL simulations are invaluable, when considering the short development time required in the automotive industry.
机译:本文介绍了如何在开发ABS(防抱死制动系统)期间使用硬件在环(HIL)仿真进行测试。 ETAS的Labcar系统是用于HIL测试的流行工具。下载在Matlab / Simulink中内置的车辆模型以在RTPC(实时PC)中运行。 Labcar软件集成平台(IP)可以配置板,该板是模型与ABS ECU之间的链接。本文在ABS ECU中采用经典的逻辑阈值控制算法。通过Labcar实验环境(EE),可以方便地监视和修改各种参数。 ABS ECU的HIL测试分别在高附着力或低附着力道路上进行。结果表明,尽管液压制动系统存在响应滞后,但通过适当调整控制参数,可使轮缸中的速度和压力曲线与实际道路上的曲线接近。因此,在考虑汽车行业所需的较短开发时间时,HIL仿真是无价的。

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