首页> 外文期刊>International Journal of Automotive Technology >PREDICTION OF ANTILOCK BRAKING SYSTEM CONDITION WITH THE VEHICLE STATIONARY USING A MODEL-BASED APPROACH
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PREDICTION OF ANTILOCK BRAKING SYSTEM CONDITION WITH THE VEHICLE STATIONARY USING A MODEL-BASED APPROACH

机译:使用基于模型的方法与车辆平稳地预测防抱死制动系统条件

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摘要

An Antilock Braking System (ABS) is one of the most important safety facilities equipped in modern vehicles. A self-test is therefore embedded into its ECU to identify any electronic malfunction. However there is no effective method to predict or check its mechanical conditions routinely to ensure its functionality. Because the ABS system is merely actuated above a particular speed in emergency stops, the current brake test facilities are not adequate for ABS test. Because of the dangers involved it would not be acceptable to use a public road to implement such a practice for fault detection so an alternative means must be sought. To provide a safe and convenient solution this paper proposes a novel method to predict ABS faults whilst the vehicle is stationary. In this situation a model-based approach is applied to predict various faults from the ABS, especially from its hydraulic subsystem. As such, a mathematic model is developed to describe the operating processes of ABS including possible faulty conditions. An autonomous control strategy is also designed to actuate the control module independently without the knowledge of the control algorithms embedded in an ABS control module. This approach is evaluated through a Simulink simulation.
机译:防抱死制动系统(ABS)是现代车辆中最重要的安全设施之一。因此,自检被嵌入到其ECU中以识别任何电子故障。但是,没有有效的方法来常规地预测或检查其机械状况以确保其功能。由于ABS系统仅在紧急停车时以高于特定速度的速度被致动,因此当前的制动测试设备不足以进行ABS测试。由于所涉及的危险,使用公共道路来实施这种故障检测实践是不可接受的,因此必须寻求替代方法。为了提供安全便捷的解决方案,本文提出了一种在车辆静止时预测ABS故障的新方法。在这种情况下,将基于模型的方法应用于ABS尤其是其液压子系统的各种故障的预测。因此,开发了一个数学模型来描述ABS的操作过程,包括可能的故障条件。自主控制策略也被设计为独立地致动控制模块,而无需了解嵌入在ABS控制模块中的控制算法。该方法通过Simulink仿真进行评估。

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