Design and Analysis of Tension Control System for Transformer Insulation Layer Winding

The insulation performance of the core transformer is determined by the winding quality of the insulation layer between the coils. It is necessary to assure uniform winding tension in order to ensure the insulation performance of the transformer and improve production efficiency. Thus, in this artic...

Full description

Bibliographic Details
Main Authors: Haixiang Huang, Jiazhong Xu, Kewei Sun, Liwei Deng, Cheng Huang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9096325/
_version_ 1818619846917619712
author Haixiang Huang
Jiazhong Xu
Kewei Sun
Liwei Deng
Cheng Huang
author_facet Haixiang Huang
Jiazhong Xu
Kewei Sun
Liwei Deng
Cheng Huang
author_sort Haixiang Huang
collection DOAJ
description The insulation performance of the core transformer is determined by the winding quality of the insulation layer between the coils. It is necessary to assure uniform winding tension in order to ensure the insulation performance of the transformer and improve production efficiency. Thus, in this article, the dynamic characteristics of the transformer insulation winding process are analyzed, and the insulation winding tension control system is designed to decrease the tension fluctuation caused by the alternating change of the elliptical core radius in the winding process. Firstly, the time-varying characteristics of roll radius and inertia are analyzed, the mechanical structure and dynamic models of unwinding and rewinding are established, and the effects of upstream and downstream span length and dancer inertia on the resonant frequency and response performance of the system are revealed. Later, the influence factors of tension fluctuation and disturbance propagation frequency are investigated, and the tension control model of Hybrid dancer position feedback is established. The variable universe fuzzy PI controller is designed by setting fuzzy rules and universe adjustment factors. Finally, the stability of the controller and the weakening effect on the tension disturbance are verified by simulation, and the performance and application value of the automatic winding tension control system are tested by a series of experiments.
first_indexed 2024-12-16T17:43:59Z
format Article
id doaj.art-2c972db13dc942999ded9ab9d3038a83
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-12-16T17:43:59Z
publishDate 2020-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-2c972db13dc942999ded9ab9d3038a832022-12-21T22:22:31ZengIEEEIEEE Access2169-35362020-01-018950689508110.1109/ACCESS.2020.29955919096325Design and Analysis of Tension Control System for Transformer Insulation Layer WindingHaixiang Huang0https://orcid.org/0000-0001-6747-0312Jiazhong Xu1Kewei Sun2Liwei Deng3Cheng Huang4School of Automation, Harbin University of Science and Technology, Harbin, ChinaSchool of Automation, Harbin University of Science and Technology, Harbin, ChinaSchool of Mechanical Engineering, Harbin University of Science and Technology, Harbin, ChinaSchool of Automation, Harbin University of Science and Technology, Harbin, ChinaSchool of Automation, Harbin University of Science and Technology, Harbin, ChinaThe insulation performance of the core transformer is determined by the winding quality of the insulation layer between the coils. It is necessary to assure uniform winding tension in order to ensure the insulation performance of the transformer and improve production efficiency. Thus, in this article, the dynamic characteristics of the transformer insulation winding process are analyzed, and the insulation winding tension control system is designed to decrease the tension fluctuation caused by the alternating change of the elliptical core radius in the winding process. Firstly, the time-varying characteristics of roll radius and inertia are analyzed, the mechanical structure and dynamic models of unwinding and rewinding are established, and the effects of upstream and downstream span length and dancer inertia on the resonant frequency and response performance of the system are revealed. Later, the influence factors of tension fluctuation and disturbance propagation frequency are investigated, and the tension control model of Hybrid dancer position feedback is established. The variable universe fuzzy PI controller is designed by setting fuzzy rules and universe adjustment factors. Finally, the stability of the controller and the weakening effect on the tension disturbance are verified by simulation, and the performance and application value of the automatic winding tension control system are tested by a series of experiments.https://ieeexplore.ieee.org/document/9096325/Transformer insulation windingtension controldisturbancevariable universe fuzzy PIhybrid dancer
spellingShingle Haixiang Huang
Jiazhong Xu
Kewei Sun
Liwei Deng
Cheng Huang
Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
IEEE Access
Transformer insulation winding
tension control
disturbance
variable universe fuzzy PI
hybrid dancer
title Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
title_full Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
title_fullStr Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
title_full_unstemmed Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
title_short Design and Analysis of Tension Control System for Transformer Insulation Layer Winding
title_sort design and analysis of tension control system for transformer insulation layer winding
topic Transformer insulation winding
tension control
disturbance
variable universe fuzzy PI
hybrid dancer
url https://ieeexplore.ieee.org/document/9096325/
work_keys_str_mv AT haixianghuang designandanalysisoftensioncontrolsystemfortransformerinsulationlayerwinding
AT jiazhongxu designandanalysisoftensioncontrolsystemfortransformerinsulationlayerwinding
AT keweisun designandanalysisoftensioncontrolsystemfortransformerinsulationlayerwinding
AT liweideng designandanalysisoftensioncontrolsystemfortransformerinsulationlayerwinding
AT chenghuang designandanalysisoftensioncontrolsystemfortransformerinsulationlayerwinding