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Multidisciplinary design optimization of an accumulator for a large elasticity range of flexible webs

机译:柔性幅材大弹性范围的蓄能器的多学科设计优化

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This paper concerns the optimization of an accumulator used in an industrial elastic web processing plant (paper, fabric, polymer, metal ...). A nonlinear model of an industrial accumulator is first detailed which enables to deduce a linear model. These models are derived from the physical laws describing web tension and velocity dynamics in each web span. The effects of time-varying rheological and mechanical parameters, such as web Young modulus, web length and rolls inertia, on accumulator dynamics and performances are analyzed. The second part presents several optimizations of industrial PI controllers using evolutionary algorithm for a realistic non-linear model, in conjunction with the controllers interpolation strategy. Finally, simulations made in the Matlab/SLmulink software environment show performances improvements compared to hand tuned controllers.
机译:本文涉及在工业弹性幅材加工厂(纸张,织物,聚合物,金属...)中使用的蓄能器的优化。首先详细介绍了工业蓄能器的非线性模型,该模型可以推导出线性模型。这些模型是从描述每个纸幅跨度中纸幅张力和速度动态的物理定律得出的。分析了随时间变化的流变学和机械参数,例如纸幅杨氏模量,纸幅长度和辊惯性对蓄能器动力学和性能的影响。第二部分结合控制器插值策略,针对实际的非线性模型,使用进化算法对工业PI控制器进行了一些优化。最后,与手动调整的控制器相比,在Matlab / SLmulink软件环境中进行的仿真显示出性能上的提高。

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