Diagnosis of active dynamic control systems using virtual sensors and observers

K. Kashi, D. Nissing, D. Kesselgruber, D. Soffker
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引用次数: 4

Abstract

During the last decade modern advanced mechatronical systems consisting of sensors, processor units, electronics, and actuators have been introduced to passenger cars. The applications ranging from adaptive cruise control, steering assist, stability control and active suspension systems offer great benefits for the handling, comfort, and safety of the vehicles. At the same time any malfunction of these systems could compromise the safety of the driver and the passengers. Due to this fact the operation of the system should be monitored and faults occurring to the system shall be detected and isolated as fast as possible. In order to avoid additional sensors, hence increasing cost and decreasing reliability, model-based approaches have been gaining more and more grounds in this field. In this contribution a model-based fault detection applied on a vehicle control system is presented which rely on mathematical descriptions of the system and which yields a robust fault detection and isolation of faults affecting the system
基于虚拟传感器和观测器的主动动态控制系统诊断
在过去的十年中,由传感器、处理器、电子设备和执行器组成的现代先进机电系统已被引入乘用车。自适应巡航控制、转向辅助、稳定控制和主动悬架系统的应用为车辆的操控性、舒适性和安全性提供了巨大的好处。同时,这些系统的任何故障都可能危及驾驶员和乘客的安全。因此,应该对系统的运行进行监控,并尽可能快地检测和隔离系统发生的故障。为了避免额外的传感器,从而增加成本和降低可靠性,基于模型的方法在该领域得到了越来越多的应用。本文提出了一种应用于车辆控制系统的基于模型的故障检测方法,该方法依赖于系统的数学描述,产生了鲁棒的故障检测和影响系统的故障隔离
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