Virtual coupling of permanent magnetic maglev trains: An improved cooperative tracking and collision avoidance control protocol

Author:

Guo Zhenyu12ORCID,Li Zhongqi1

Affiliation:

1. School of Electrical Engineering East China Jiaotong University Nanchang China

2. Ganjiang Innovation Academy Chinese Academy of Sciences Ganzhou China

Abstract

AbstractIn the cooperative tracking task of multiple permanent magnetic maglev trains, system uncertainty, external disturbances, and collision avoidance control are issues that must be considered. Therefore, the cooperative tracking and collision avoidance control for train virtual coupling with external disturbances are studied. First, according to the idea of multi‐agent consensus control and active disturbance rejection control, a cooperative tracking controller based on a novel nonlinear extended state observer (NESO) is designed. Second, a collision avoidance control method based on an improved artificial potential field (APF) is designed. Finally, an improved cooperative tracking and collision avoidance control protocol is proposed, and the stability proof is given. Compared with the conventional protocol, the proposed protocol can achieve smooth coupling and high‐precision cruise while ensuring safe collision avoidance. It has the advantages of higher tracking accuracy and stronger anti‐interference performance.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Law,Mechanical Engineering,General Environmental Science,Transportation

Reference36 articles.

1. Zhao Q.‐Q.:Research on multi‐train collaborative formation method based on reinforcement learning. M.S. Thesis Department of Control Engineering Beijing Jiaotong University Beijing China(2021)

2. Event‐based finite‐time control for nonlinear multi‐agent systems with asymptotic tracking;Li Y.‐M.;IEEE Trans on Auto. Contr.,2022

3. Increase of capacity on the shinkansen high-speed line using virtual coupling

4. Research on virtual marshalling train operation control technology;Zhang L.;Rail. Tech. Stand.,2022

5. Wang T.‐Z.:Distributed control of high‐speed trains based on multi‐agent consensus technology. M.S. Thesis Department of Control Engineering Beijing Jiaotong University Beijing China(2020)

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