Apply discrete integral variable structure control to synchronization and tension control of dual motor rolling systems

C. Chuang, Chieh-Chuan Feng
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Abstract

In industrial manufacturing systems, the one or the more client motors are often arranged to follow the velocity of the master motor. The speed difference between these motors will affect the tension of the product. Hence, the synchronized control and the tension control are the important research topics in the manufacturing process. This project proposes a novel modified MIMO DTVSC for the synchronism and tension control of dual motor system. By Grey model theory, the unknown model of tension control can be on-line established to be a pseudo grey model. Based on these pseudo grey models, the model based multi-input-multi-output (MIMO) discrete integral variable structure control (DIVSC) can proceed with the design procedures. At the same time, a prototype of the dual motor system is developed for testing the performance of the proposed control scheme. Experimental results will show the robust potential and the practicability of the proposed controller.
将离散积分变结构控制应用于双电机轧制系统的同步和张力控制
在工业制造系统中,一个或多个客户端电机经常被安排跟随主电机的速度。这些电机之间的速度差会影响产品的张力。因此,同步控制和张力控制是制造过程中重要的研究课题。本课题提出了一种新型的改进MIMO DTVSC,用于双电机系统的同步和张力控制。利用灰色模型理论,将张力控制的未知模型在线建立为伪灰色模型。基于这些伪灰色模型,基于模型的多输入多输出(MIMO)离散积分变结构控制(DIVSC)可以进入设计程序。同时,开发了双电机系统的原型,以测试所提出的控制方案的性能。实验结果表明该控制器具有良好的鲁棒性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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