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Fault diagnostics in the differential brake control system using the analytical redundancy technique

机译:使用分析冗余技术的差动制动控制系统中的故障诊断

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This paper presents a novel analytical redundancy technique for fault diagnostics of a differential brake control system. The proposed diagnostic algorithm builds upon open loop and closed loop state estimators to generate residuals and identify failures. By judiciously utilizing the residual information, it is possible to detect faults at the component level rather than at the system level. In addition, robust and adaptive estimators are shown to effectively combat with two perennial nuisances of fault diagnostic algorithms: sensitivity to disturbance and false alarms. Hardware-in-the-loop simulation studies show how reliably the proposed diagnostic algorithm detects faults in the differential brake control system that is expected to play a crucial role in active vehicle safety.
机译:本文提出了一种新颖的分析冗余技术,用于差动制动控制系统的故障诊断。所提出的诊断算法建立在开环和闭环状态估计器的基础上,以产生残差并识别故障。通过明智地利用剩余信息,可以在组件级别而不是系统级别检测故障。此外,显示出鲁棒且自适应的估计器可有效解决两个长期困扰的故障诊断算法:对干扰的敏感性和虚假警报。硬件在环仿真研究表明,所提出的诊断算法能够可靠地检测出差动制动控制系统中的故障,该故障有望在主动车辆安全中发挥关键作用。

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