首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Model-based fault-tolerant control for an automotive air suspension control system
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Model-based fault-tolerant control for an automotive air suspension control system

机译:汽车空气悬架控制系统的基于模型的容错控制

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This paper presents a new fault-tolerant control (FTC) algorithm for an automotive air suspension control (ASC) system. The FTC algorithm proposed in this paper provides the fault detection, diagnosis, and management of a closed-loop air suspension control system. A new model-based fault detection and isolation algorithm for the height sensors, which are critical but vulnerable components of the ASC system, is also proposed. The height sensor fault is detected on the basis of the geometric relationships of the suspension and is isolated by implementing the analytical redundancy of the height sensors using roll and pitch angle estimates derived by a Kalman filter. An adaptive threshold is designed and applied in order to enhance the robustness of the fault detection and isolation against model uncertainties. The effectiveness of the proposed model-based FTC algorithm is verified via simulation and actual vehicle tests.
机译:本文提出了一种用于汽车空气悬架控制(ASC)系统的新的容错控制(FTC)算法。本文提出的FTC算法提供了闭环空气悬浮控制系统的故障检测,诊断和管理。还提出了一种新的基于模型的高度传感器故障检测和隔离算法,该算法是ASC系统的关键但易受攻击的组件。高度传感器故障根据悬架的几何关系进行检测,并通过使用卡尔曼滤波器得出的侧倾角和俯仰角估计值实现高度传感器的分析冗余度,从而将其隔离。设计并应用了自适应阈值,以增强故障检测和隔离模型不确定性的鲁棒性。通过仿真和实际车辆测试验证了所提出的基于模型的FTC算法的有效性。

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