Department of Electrical Engineering, Hanyang University, Seoul 04763, Korea.
Chassis System Control Development Team, Hyundai Motor Company, 150 Hyundaiyeonguso-ro, Namyang-eup, Hwaseong-si 18280, Korea.
Sensors (Basel). 2018 Aug 18;18(8):2720. doi: 10.3390/s18082720.
Vehicle control systems such as ESC (electronic stability control), MDPS (motor-driven power steering), and ECS (electronically controlled suspension) improve vehicle stability, driver comfort, and safety. Vehicle control systems such as ACC (adaptive cruise control), LKA (lane-keeping assistance), and AEB (autonomous emergency braking) have also been actively studied in recent years as functions that assist drivers to a higher level. These DASs (driver assistance systems) are implemented using vehicle sensors that observe vehicle status and send signals to the ECU (electronic control unit). Therefore, the failure of each system sensor affects the function of the system, which not only causes discomfort to the driver but also increases the risk of accidents. In this paper, we propose a new method to detect and isolate faults in a vehicle control system. The proposed method calculates the constraints and residuals of 12 systems by applying the model-based fault diagnosis method to the sensor of the chassis system. To solve the inaccuracy in detecting and isolating sensor failure, we applied residual sensitivity to a threshold that determines whether faults occur. Moreover, we applied a sensitivity analysis to the parameters semi-correlation table to derive a fault isolation table. To validate the FDI (fault detection and isolation) algorithm developed in this study, fault signals were injected and verified in the HILS (hardware-in-the-loop simulation) environment using an RCP (rapid control prototyping) device.
车辆控制系统,如 ESC(电子稳定控制系统)、MDPS(电动助力转向系统)和 ECS(电子控制悬架),提高了车辆的稳定性、驾驶员的舒适性和安全性。近年来,作为辅助驾驶员达到更高水平的功能,ACC(自适应巡航控制系统)、LKA(车道保持辅助系统)和 AEB(自动紧急制动系统)等车辆控制系统也得到了积极研究。这些 DAS(驾驶员辅助系统)通过车辆传感器实现,这些传感器可以观察车辆状态并向 ECU(电子控制单元)发送信号。因此,每个系统传感器的故障都会影响系统的功能,不仅会给驾驶员带来不适,还会增加事故的风险。在本文中,我们提出了一种新的方法来检测和隔离车辆控制系统中的故障。该方法通过将基于模型的故障诊断方法应用于底盘系统的传感器,计算了 12 个系统的约束和残差。为了解决检测和隔离传感器故障的不准确性问题,我们将残差灵敏度应用于确定故障是否发生的阈值。此外,我们对参数半相关表进行了灵敏度分析,得出了故障隔离表。为了验证本研究中开发的 FDI(故障检测和隔离)算法,我们使用 RCP(快速控制原型)设备在 HILS(硬件在环仿真)环境中注入和验证了故障信号。