Jeon Namju, Lee Hyeongcheol
Department of Electrical Engineering, Hanyang University, Seoul 133-791, Korea.
Department of Electrical and Biomedical Engineering, Hanyang University, Seoul 133-791, Korea.
Sensors (Basel). 2016 Dec 12;16(12):2106. doi: 10.3390/s16122106.
An integrated fault-diagnosis algorithm for a motor sensor of in-wheel independent drive electric vehicles is presented. This paper proposes a method that integrates the high- and low-level fault diagnoses to improve the robustness and performance of the system. For the high-level fault diagnosis of vehicle dynamics, a planar two-track non-linear model is first selected, and the longitudinal and lateral forces are calculated. To ensure redundancy of the system, correlation between the sensor and residual in the vehicle dynamics is analyzed to detect and separate the fault of the drive motor system of each wheel. To diagnose the motor system for low-level faults, the state equation of an interior permanent magnet synchronous motor is developed, and a parity equation is used to diagnose the fault of the electric current and position sensors. The validity of the high-level fault-diagnosis algorithm is verified using Carsim and Matlab/Simulink co-simulation. The low-level fault diagnosis is verified through Matlab/Simulink simulation and experiments. Finally, according to the residuals of the high- and low-level fault diagnoses, fault-detection flags are defined. On the basis of this information, an integrated fault-diagnosis strategy is proposed.
提出了一种用于轮毂独立驱动电动汽车电机传感器的集成故障诊断算法。本文提出了一种将高低级故障诊断相结合的方法,以提高系统的鲁棒性和性能。对于车辆动力学的高级故障诊断,首先选择平面双轨非线性模型,并计算纵向和横向力。为确保系统冗余,分析了车辆动力学中传感器与残差之间的相关性,以检测和分离每个车轮驱动电机系统的故障。为诊断电机系统的低级故障,建立了内置式永磁同步电机的状态方程,并使用奇偶方程诊断电流和位置传感器的故障。利用Carsim和Matlab/Simulink联合仿真验证了高级故障诊断算法的有效性。通过Matlab/Simulink仿真和实验验证了低级故障诊断。最后,根据高低级故障诊断的残差定义故障检测标志。基于此信息,提出了一种集成故障诊断策略。