A Conjugate Gradient Method for the Solution of the Inverse Heating Problem in Thermoforming

M. Chy, B. Boulet
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引用次数: 5

Abstract

Finding the setpoints of heater temperatures such that the sheet will achieve the desired temperature at the end of the heating cycle is known as the inverse heating problem (IHP) in thermoforming. Although a major portion of the heat is transferred from the oven to the sheet by radiation, conduction and convection also have a significant contribution in sheet heating. This makes the inverse heating problem more complex. In addition, the IHP is often ill-posed in a thermoforming process, making the solution unstable. In this paper, a conjugate gradient method is used to solve the IHP in the control of sheet temperature. In developing the method, computational cost is considered such that it can be implemented as a real-time algorithm in the controller. The performance of the proposed method for solving IHP, and thereby the corresponding sheet temperature controller, are tested in simulation at different operating conditions and compared with the conventional method of solving IHP based on the pseudo-inverse of the view factor matrix. The efficiency of the proposed method for the estimation of heater setpoints and the accuracy of the controller are evidenced by the results, showing promise for prospective real-time applications.
求解热成形反加热问题的共轭梯度法
找到加热器温度的设定值,使板材在加热循环结束时达到所需的温度,这被称为热成型中的逆加热问题(IHP)。虽然大部分热量是通过辐射从烤箱传递到薄板的,但传导和对流在薄板加热中也有重要贡献。这使得逆加热问题更加复杂。此外,在热成型过程中,IHP通常是病态的,使得溶液不稳定。本文采用共轭梯度法求解薄板温度控制中的IHP问题。在开发该方法时,考虑了计算成本,使其可以作为控制器中的实时算法实现。通过不同工况下的仿真测试,验证了该方法的性能,并与传统的基于视因子矩阵伪逆的求解方法进行了比较。结果证明了所提出的加热器设定值估计方法的有效性和控制器的准确性,显示了潜在的实时应用前景。
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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