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Research paper | Open Access

A digital-twin-based open circuit fault diagnosis method for permanent magnet motor drive system

Leiting Zhao1Zheng Ruan2Kan Liu3( )Liran Li1Yuchao Zou4
Department of AC transmission Development, China Academy of Railway Sciences Corporation Limited, Beijing, China
Fundamental Research and Development Department, China Academy of Railway Sciences Corporation Limited, Locomotive and Car Research Institute, Beijing, China
China Academy of Railway Sciences Corporation Limited, Locomotive and Car Research Institute, Beijing, China
School of Electrical Engineering, Southwest Jiaotong University, Chengdu, China
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Abstract

Purpose

This study aims to implement condition monitoring for urban rail train permanent magnet synchronous motors and inverter systems. Through the construction of a digital twin model, it performs fault diagnosis of potential system failures, enabling rapid fault localization and protection.

Design/methodology/approach

This research begins with a brief introduction to the structure and classification of permanent magnet synchronous motors (PMSMs), followed by a detailed analysis of their mathematical model. Subsequently, it thoroughly investigates the working principle of three-phase two-level inverters and the distribution of space voltage vectors. Based on the analysis of the main circuit topology, a digital twin model matching the external characteristics of the physical circuit is established using the model predictive control method, achieving accurate system simulation. Furthermore, through theoretical analysis and simulation verification of phase current characteristics under inverter switch tube faults, general patterns of phase currents under fault conditions are summarized. The established digital twin model is then employed to validate these patterns, confirming the model’s effectiveness in fault diagnosis.

Findings

This study proposes a fault diagnosis method based on digital twins. Experimental and simulation results demonstrate that the established digital twin model can accurately simulate the external characteristics of the actual physical circuit, validating its effectiveness in inverter fault diagnosis. This approach offers practical value for condition monitoring in actual urban rail train systems.

Originality/value

The study innovatively starts from a mathematical model and simulates the actual physical model through a virtual model, requiring only external characteristics to achieve system fault diagnosis, thereby enhancing diagnostic efficiency.

References

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Railway Sciences
Pages 494-521

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Cite this article:
Zhao L, Ruan Z, Liu K, et al. A digital-twin-based open circuit fault diagnosis method for permanent magnet motor drive system. Railway Sciences, 2025, 4(4): 494-521. https://doi.org/10.1108/RS-04-2025-0008

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Received: 02 April 2025
Revised: 25 April 2025
Accepted: 25 April 2025
Published: 01 August 2025
© Leiting Zhao, Zheng Ruan, Kan Liu, Liran Li and Yuchao Zou. Published in Railway Sciences.

This article is published under the Creative Commons Attribution (CC BY 4.0) licence. Anyone may reproduce, distribute, translate and create derivative works of this article (for both commercial and non-commercial purposes), subject to full attribution to the original publication and authors. The full terms of this licence may be seen at http://creativecommons.org/licences/by/4.0/legalcode