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An optimized variable structure control for hydraulic AGC of cold rolling mill

机译:冷轧机液压AGC的优化变结构控制

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The hydraulic automatic gauge control (AGC) of cold rolling mill is directly related to the quality and effectiveness of cold rolling aluminum sheet strips. Traditional PID control becomes difficult to satisfy the necessity of improving the control performance of cold rolling mill. A new variable structure control (VSC) based on a co-ordination optimization algorithm has been developed. Both steady state error and control switching frequency are used as the system coordination performance indexes in the co-ordination optimization, while the tuning rate of boundary layer width is employed as the optimized parameter. Based on steady state error in VSC, an optimized boundary layer width tuning rate is designed and added to the nonlinear control term of VSC. Simulation experiment results applied to the control of a hydraulic AGC system show the comprehensive superiority of dynamical and static state performance by using the proposed controller over that of by using VSC without optimized boundary layer width tuning rate. Chattering elimination and high-precision control are successfully coordinated in the hydraulic AGC system of cold rolling mill. The thickness precision of cold rolling aluminum strips may be improved.
机译:冷轧机的液压自动仪表控制(AGC)直接关系到冷轧铝板带的质量和有效性。传统的PID控制难以满足提高冷轧机控制性能的需要。开发了一种基于协调优化算法的新型变结构控制(VSC)。在协调优化中,稳态误差和控制切换频率均被用作系统协调性能指标,而边界层宽度的调谐速率被用作优化参数。基于VSC中的稳态误差,设计了优化的边界层宽度调谐速率,并将其添加到VSC的非线性控制项中。应用于液压AGC系统控制的仿真实验结果表明,与不采用优化的边界层宽度调整率的VSC相比,使用所建议的控制器具有动态和静态性能的综合优势。在冷轧机的液压AGC系统中,成功地消除了颤振并实现了高精度控制。可以提高冷轧铝带的厚度精度。

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