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Journal ArticleDOI

A Data-Driven Fault Diagnosis Methodology in Three-Phase Inverters for PMSM Drive Systems

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TLDR
In this paper, a Bayesian network-based data-driven fault diagnosis methodology of three-phase inverters is proposed to solve the uncertainty problem in fault diagnosis of inverters, which is caused by various reasons, such as bias and noise of sensors.
Abstract
Permanent magnet synchronous motor and power electronics-based three-phase inverter are the major components in the modern industrial electric drive system, such as electrical actuators in an all-electric subsea Christmas tree. Inverters are the weakest components in the drive system, and power switches are the most vulnerable components in inverters. Fault detection and diagnosis of inverters are extremely necessary for improving drive system reliability. Motivated by solving the uncertainty problem in fault diagnosis of inverters, which is caused by various reasons, such as bias and noise of sensors, this paper proposes a Bayesian network-based data-driven fault diagnosis methodology of three-phase inverters. Two output line-to-line voltages for different fault modes are measured, the signal features are extracted using fast Fourier transform, the dimensions of samples are reduced using principal component analysis, and the faults are detected and diagnosed using Bayesian networks. Simulated and experimental data are used to train the fault diagnosis model, as well as validate the proposed fault diagnosis methodology.

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Citations
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Journal ArticleDOI

Data-based fault diagnosis model using a Bayesian causal analysis framework

TL;DR: This paper provides a comprehensive data-driven diagnosis approach applicable to complex manufacturing industries based on the Bayesian network paradigm and an industrial benchmark is utilized to show the ability of the developed framework to make an accurate diagnosis.
Journal ArticleDOI

A Diagnosis Method of Semiconductor Power Switch Open-Circuit Fault in the PMSM Drive System With the MPCC Method

Hai Yu, +2 more
- 02 Aug 2021 - 
TL;DR: In this paper, a predictive current control (MPCC) method has been used in permanent magnet synchronous motor (PMSM) drive systems to diagnose open-circuit faults.
Journal ArticleDOI

Modeling and optimization of OC fault diagnosis for inverters based on GR-PTA-BN

TL;DR: In this article , the authors proposed a novel fault diagnosis methodology of IGBTs stated as GR-PTA-BN organically combining a genetic algorithm-rough set attribute reduction (GR) method with a precision and time performance evaluation algorithm (PTA) based on Bayesian network (BN).
Journal ArticleDOI

Quality-Relevant Batch Process Fault Detection Using a Multiway Multi-Subspace CVA Method

TL;DR: The proposed MMCVA method is capable of indicating the normality or abnormality of the quality variables, while detecting a process fault, and simulation results of a fed-batch penicillin fermentation process illustrate the effectiveness of the proposed method.
Proceedings ArticleDOI

Fault Diagnosis of Micro Grid Inverter Based on Wavelet Transform and Probabilistic Neural Network

TL;DR: The experimental results show that the method that combining wavelet transform and PNN can diagnose the faults of microgrid inverter accurately and effectively.
References
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Journal ArticleDOI

A Survey of Fault Diagnosis and Fault-Tolerant Techniques—Part I: Fault Diagnosis With Model-Based and Signal-Based Approaches

TL;DR: The three-part survey paper aims to give a comprehensive review of real-time fault diagnosis and fault-tolerant control, with particular attention on the results reported in the last decade.
Book

Modeling and Reasoning with Bayesian Networks

TL;DR: This book provides an extensive discussion of techniques for building Bayesian networks that model real-world situations, including techniques for synthesizing models from design, learning models from data, and debugging models using sensitivity analysis.
Journal ArticleDOI

A Survey of Fault Diagnosis and Fault-Tolerant Techniques—Part II: Fault Diagnosis With Knowledge-Based and Hybrid/Active Approaches

TL;DR: This is the second-part paper of the survey on fault diagnosis and fault-tolerant techniques, where fault diagnosis methods and applications are overviewed, respectively, from the knowledge-based and hybrid/active viewpoints.
Journal ArticleDOI

Survey on Reliability of Power Electronic Systems

TL;DR: A comprehensive review of reliability assessment and improvement of power electronic systems from three levels: 1) metrics and methodologies of reliability assess of existing system; 2) reliability improvement of existing systems by means of algorithmic solutions without change of the hardware; and 3) reliability-oriented design solutions that are based on fault-tolerant operation of the overall systems.
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