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Analysis and Design of Rapier Loom’s Feedforward and Feedback Tension Control System
SONG Ya-nan;XU Rong-hua;WANG Qin-ruo
   2011, 31 (4): 173-177.   DOI: 10.3969/j.issn.1006-1355-2011.04.041
Abstract2036)            Save
Based on the analysis of noise source and noise characteristics in rapier loom’s tension-control system, the design method of the control structure and controller is proposed. On the base of the concept of the degree of control difficulty, a suitable analog low-pass filter is chosen for filtering the high-frequency signal and random noise. While in the periodical low-frequency noise processing,the frequency spectrum analysis is used to determine the period of the noise and the coherent mean method is used to obtain the signal. Then, the periodical vibration noise behind the analog low-pass filter can be estimated. Based on the estimation of the noise, a digital filter and feedback compensation are designed and employed to improve the control system’s performance. On the other hand, this method is also used to estimate the periodical vibration noise in front of the analog low-pass filter, and the digital filter and the feedforward compensation are designed to improve the control system’s performance. The effectiveness of the analysis and design methods is verified through matlab programming and simulink simulation. The analysis, methods and results proposed in this work provide some data for actual rapier loom’s tension control filter and controller design.
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