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Hybrid fault tolerant control for air-fuel ratio control of internal combustion gasoline engine using Kalman filters with advanced redundancy

机译:具有先进冗余的卡尔曼滤波器的内燃汽油发动机空燃比空燃比控制混合容耐控制

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In this paper, a hybrid fault tolerant control system is proposed for air-fuel ratio control of internal combustion gasoline engines based on Kalman filters and triple modular redundancy. Hybrid fault tolerant control system possesses properties of both active fault tolerant control system and passive fault tolerant control system. As part of active fault tolerant control system, fault detection and isolation unit is designed using Kalman filters to provide estimated values of the sensors to the engine controller in case of faults in the sensors. As part of passive fault tolerant control system, a dedicated proportional-integral feedback controller is incorporated to maintain air-fuel ratio by adjusting the throttle actuator in the fuel supply line in faulty and noisy conditions for robustness to faults and sensors' noise. Redundancy is proposed in the sensors and actuators as a simultaneous failure of more than one sensor, and failure of the single actuator will cause the engine shutdown. Advanced redundancy protocol triple modular redundancy is proposed for the sensors and dual redundancy is proposed for actuators. Simulation results in the MATLAB Simulink environment show that the proposed system remains stable during faults in the sensors and actuators. It also maintains air-fuel ratio without any degradation in the faulty conditions and is robust to noise. Finally, the probabilistic reliability analysis of the proposed model is carried out. The study shows that the proposed hybrid fault tolerant control system with redundant components presents a novel and highly reliable solution for the air-fuel ratio control in internal combustion engines to prevent engine shutdown and production loss for greater profits.
机译:本文基于Kalman滤波器和三重模块化冗余,提出了一种混合容错控制系统,用于内燃机发动机的空燃比控制。混合容错控制系统具有主动容错控制系统和无源容错控制系统的性能。作为主动容错控制系统的一部分,故障检测和隔离单元使用卡尔曼滤波器设计,以便在传感器中的故障情况下为发动机控制器提供传感器的估计值。作为被动容错控制系统的一部分,通过在故障和嘈杂的条件下调节燃料供应管线中的节气门致动器,以使鲁棒性和传感器噪声的鲁棒性和传感器噪声的稳健性和传感器噪声的鲁棒性和传感器噪声的燃料条件中的节流阀致动器调整气门致动器来保持空燃比,以保持空燃比。在传感器和执行器中提出冗余作为多于一个传感器的同时故障,单个执行器的故障将导致发动机关闭。提出了先进的冗余协议三重模块化冗余,并为执行器提出了双冗余。 Matlab Simulink环境的仿真结果表明,在传感器和执行器的故障期间,所提出的系统保持稳定。它还保持空燃比,在故障条件下没有任何降解,并且对噪声具有鲁棒性。最后,进行了所提出的模型的概率可靠性分析。该研究表明,具有冗余组件的提议的混合容错控制系统具有用于内燃机中的空燃比控制的新颖且高度可靠的解决方案,以防止发动机关闭和生产损失以获得更大的利润。

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