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A control-oriented thermal model for a moving dual-layer substrate

机译:用于移动双层基板的对导向的热模型

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This paper describes an early lumping approach for generating a mathematical model of the heating process of a moving dual-layer substrate. The heat is supplied by convection and nonlinearly distributed over the whole considered spatial extend of the substrate. Using CFD simulations as a reference, two different modelling approaches have been investigated in order to achieve the most suitable model type. It is shown that due to the possibility of using the transition matrix for time discretization, an equivalent circuit model achieves superior results when compared to the Crank-Nicolson method. In order to maintain a constant sampling time for the in-visioned-control strategies, the effect of variable speed is transformed into a system description, where the state vector has constant length but a variable number of non-zero entries. The handling of the variable transport speed during the heating process is considered as the main contribution of this work. The result is a model, suitable for being used in future control strategies.
机译:本文介绍了一种用于产生移动双层基板的加热过程的数学模型的早期绝地形方法。热量通过对流和非线性分布在整体上被认为是基板的空间延伸。使用CFD仿真作为参考,研究了两种不同的建模方法,以实现最合适的模型类型。结果表明,由于使用过渡矩阵进行时间离散化,与曲柄-Nicolson方法相比,等效电路模型达到了优异的结果。为了保持用于静止控制策略的恒定采样时间,将变速的效果变换为系统描述,其中状态向量具有恒定长度但是可变数量的非零条目。在加热过程中处理可变运输速度被认为是这项工作的主要贡献。结果是模型,适合于在未来的控制策略中使用。

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