Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults

In this paper, a generalized correntropy filter-based fault diagnosis (FD) and fault tolerant control (FTC) strategy is proposed for stochastic systems with heavy-tailed distributed noises. In order to deal with the non-Gaussian noises involved in the stochastic systems, a generalized correntropy cr...

Full description

Bibliographic Details
Main Authors: Xinying Xu, Yanyun Zhang, Mifeng Ren, Jianhua Zhang, Gaowei Yan
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8288821/
_version_ 1818379675815116800
author Xinying Xu
Yanyun Zhang
Mifeng Ren
Jianhua Zhang
Gaowei Yan
author_facet Xinying Xu
Yanyun Zhang
Mifeng Ren
Jianhua Zhang
Gaowei Yan
author_sort Xinying Xu
collection DOAJ
description In this paper, a generalized correntropy filter-based fault diagnosis (FD) and fault tolerant control (FTC) strategy is proposed for stochastic systems with heavy-tailed distributed noises. In order to deal with the non-Gaussian noises involved in the stochastic systems, a generalized correntropy criterion (GCC) is reviewed first. Then, based on this criterion, an output feedback controller is designed for the healthy stochastic system to make the system output track the set-point as closely as possible. Considering the sensor fault, a GCC filter-based FD method is established, where residuals are used to detect and isolate the sensor fault. Moreover, when the sensor fault is diagnosed, normal signals are used to reconstruct the system so that the system can maintain run normally. Finally, the wind energy conversion system with three types of sensor faults is used to verify the feasibility and efficiency of the proposed FD and FTC method.
first_indexed 2024-12-14T02:06:34Z
format Article
id doaj.art-cbd2aa6600814a9eb82c9b286d2a5953
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-12-14T02:06:34Z
publishDate 2018-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-cbd2aa6600814a9eb82c9b286d2a59532022-12-21T23:20:53ZengIEEEIEEE Access2169-35362018-01-016125981260710.1109/ACCESS.2018.28007308288821Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor FaultsXinying Xu0Yanyun Zhang1https://orcid.org/0000-0003-3306-3457Mifeng Ren2https://orcid.org/0000-0001-5062-0521Jianhua Zhang3Gaowei Yan4College of Information Engineering, Taiyuan University of Technology, Taiyuan, ChinaCollege of Information Engineering, Taiyuan University of Technology, Taiyuan, ChinaCollege of Information Engineering, Taiyuan University of Technology, Taiyuan, ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Beijing, ChinaCollege of Information Engineering, Taiyuan University of Technology, Taiyuan, ChinaIn this paper, a generalized correntropy filter-based fault diagnosis (FD) and fault tolerant control (FTC) strategy is proposed for stochastic systems with heavy-tailed distributed noises. In order to deal with the non-Gaussian noises involved in the stochastic systems, a generalized correntropy criterion (GCC) is reviewed first. Then, based on this criterion, an output feedback controller is designed for the healthy stochastic system to make the system output track the set-point as closely as possible. Considering the sensor fault, a GCC filter-based FD method is established, where residuals are used to detect and isolate the sensor fault. Moreover, when the sensor fault is diagnosed, normal signals are used to reconstruct the system so that the system can maintain run normally. Finally, the wind energy conversion system with three types of sensor faults is used to verify the feasibility and efficiency of the proposed FD and FTC method.https://ieeexplore.ieee.org/document/8288821/Fault diagnosis and tolerant controlgeneralized correntropy criterion (GCC)sensor faultnon-Gaussian systems
spellingShingle Xinying Xu
Yanyun Zhang
Mifeng Ren
Jianhua Zhang
Gaowei Yan
Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
IEEE Access
Fault diagnosis and tolerant control
generalized correntropy criterion (GCC)
sensor fault
non-Gaussian systems
title Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
title_full Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
title_fullStr Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
title_full_unstemmed Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
title_short Generalized Correntropy Filter-Based Fault Diagnosis and Tolerant Control for Non-Gaussian Stochastic Systems Subject to Sensor Faults
title_sort generalized correntropy filter based fault diagnosis and tolerant control for non gaussian stochastic systems subject to sensor faults
topic Fault diagnosis and tolerant control
generalized correntropy criterion (GCC)
sensor fault
non-Gaussian systems
url https://ieeexplore.ieee.org/document/8288821/
work_keys_str_mv AT xinyingxu generalizedcorrentropyfilterbasedfaultdiagnosisandtolerantcontrolfornongaussianstochasticsystemssubjecttosensorfaults
AT yanyunzhang generalizedcorrentropyfilterbasedfaultdiagnosisandtolerantcontrolfornongaussianstochasticsystemssubjecttosensorfaults
AT mifengren generalizedcorrentropyfilterbasedfaultdiagnosisandtolerantcontrolfornongaussianstochasticsystemssubjecttosensorfaults
AT jianhuazhang generalizedcorrentropyfilterbasedfaultdiagnosisandtolerantcontrolfornongaussianstochasticsystemssubjecttosensorfaults
AT gaoweiyan generalizedcorrentropyfilterbasedfaultdiagnosisandtolerantcontrolfornongaussianstochasticsystemssubjecttosensorfaults