DocumentCode :
3603861
Title :
Soft-Switchable Dual-PI Controlled Axial Loading System for High-Speed EMU Axle-Box Bearing Test Rig
Author :
Bo-Qian Fan ; Kok-Meng Lee ; Xiao-Ping Ouyang ; Hua-Yong Yang
Author_Institution :
State Key Lab. of Fluid Power Transm. & Control, Zhejiang Univ., Hangzhou, China
Volume :
62
Issue :
12
fYear :
2015
Firstpage :
7370
Lastpage :
7381
Abstract :
A high-speed electric multiple unit (HS-EMU) bearing test rig that simulates the working conditions of axle-box bearings is an important performance evaluation device. Because of heavy working loads at high speed, two problems have been commonly encountered in testing industrial HS-EMU axle-box bearings on a conventional test rig, which are highly unbalanced axial load on its support bearings and adverse clearance effects on test bearings. This paper presents a new HS-EMU bearing test-rig design with a relatively complete dynamic model for its analysis and a direct force control strategy to overcome these problems. In this strategy, a dual proportional-integral (PI) controller with a fuzzy logic selectable soft switch has been developed. The control strategy can be easily implemented on an industrial programmable logic controller as it relies only on measured force values and requires a small amount of calculation. The bearing test-rig controlled system has been experimentally evaluated against a conventional PI controller.
Keywords :
PI control; axles; force control; fuzzy control; industrial control; machine bearings; programmable controllers; HS-EMU bearing test-rig design; PI controller; adverse clearance effects; bearing test-rig controlled system; direct force control strategy; dual proportional-integral controller; dynamic model; force value measurement; fuzzy logic selectable soft switch; high-speed EMU axle-box bearing test rig; high-speed electric multiple unit; industrial programmable logic controller; performance evaluation device; soft-switchable dual-PI controlled axial loading system; test bearings; unbalanced axial load; working conditions; working loads; Actuators; Damping; Force; Load modeling; Loading; Switches; Bearing; EMU; bearing; electric multiple unit (EMU); fuzzy logic; hydraulic force control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2015.2458303
Filename :
7163323
Link To Document :
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