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FDI Based Fault-Tolerant Control for Steer-by-Wire Systems

机译:基于FDI的逐线系统的容错控制

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Vehicle Steer-by-Wire (SbW) system is an electronically controlled steering system with no mechanical linkage and is able to improve vehicle safety through better steering capability. The SbW system failure, however, may lead to performance degradation or even result in instability. This paper proposes a fault-tolerant control scheme for the SbW systems based on model predictive control (MPC) and fault detection and isolation (FDI). In this scheme, the MPC controller attempts to restore the original functionality of the SbW systems by using the output of FDI to update the fault information while the FDI module uses a two-stage Kalman filter algorithm to provide simultaneous control parameter and state estimation to modify the internal model in MPC formulation for accommodating partial actuator failure. The simulation and experimental results show that it outperforms a conventional MPC without FDI.
机译:车辆转向绕线(SBW)系统是一种电子控制转向系统,没有机械连接,并且能够通过更好的转向能力来改善车辆安全性。然而,SBW系统故障可能导致性能下降甚至导致不稳定。本文提出了基于模型预测控制(MPC)和故障检测和隔离(FDI)的SBW系统的容错控制方案。在该方案中,MPC控制器尝试通过使用FDI的输出来恢复SBW系统的原始功能,以在FDI模块使用两级卡尔曼滤波器算法以提供同时控制参数和状态估计来修改故障信息适用于适应部分执行器故障的MPC配方中的内模。模拟和实验结果表明,它不具有FDI的传统MPC。

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