Adaptive integral sliding mode fault‐tolerant control for diesel engine air path system via disturbance observer

Author:

Wu Wenjie1,Wang Shaoping123ORCID,Zhang Yuwei14,Wang Xingjian123,Zhang Jian5

Affiliation:

1. School of Automation Science and Electrical Engineering Beihang University Beijing China

2. Tianmushan Laboratory Hangzhou China

3. Ningbo Institute of Technology Beihang University Ningbo China

4. State Key Laboratory of Fluid Power and Mechatronic Systems Zhejiang University Hangzhou China

5. Shanghai Marine Diesel Engine Research Institute Shanghai China

Abstract

AbstractThis paper proposes a fault‐tolerant control strategy for the air path system of a turbocharged diesel engine, considering the simultaneous presence of matched and mismatched external disturbances, additive and loss of effectiveness fault modes in the EGR and VGT subsystems. Firstly, a disturbance observer based on theory is designed for estimating additive faults and external disturbances, and the upper bound of observation error is obtained. Based on the observation information, an integral sliding mode surface is designed, and the effectiveness of the sliding mode surface is analyzed. For the loss of effectiveness faults in the actuators, a novel adaptive update sliding mode controller is designed. The proposed control algorithm can get the fault information of the system and achieve fault‐tolerant control of through controller reconstruction. Ultimately, the effectiveness of the proposed method is validated through simulations and comparative analysis.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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