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Inverse Problem of Textile Material Design at Low Temperature Solved by a Hybrid Stochastic Algorithm

机译:混合随机算法求解的低温纺织材料设计反问题

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The inverse problem of textile material design (IPTMD) aims to determine textile materials with optimum thermal conductivities for the thickness designed in terms of the thermal comfort requirements of the wearer. In this paper, an IPTMD is presented on the basis of the physical nature of steady heat and moisture transfer in a human body-clothing-environment system. A globally convergent algorithm, the modified particle collision algorithm (MPCA), is proposed and its validity is verified. The MPCA is applied to solve the IPTMD for single-layer textile materials at low temperature. Numerical simulation results of the IPTMD proved the suitability of the IPTMD and effectiveness of the MPCA in solving complex global optimisation problems. The encouraging results indicate that the modelling method above and optimisation algorithm can be used for further applications.
机译:纺织材料设计(IPTMD)的反问题旨在根据穿着者的热舒适性要求,为设计的厚度确定具有最佳导热率的纺织材料。本文基于人体服装环境系统中稳定的热量和水分传递的物理特性,提出了IPTMD。提出了一种全局收敛算法,即改进的粒子碰撞算法(MPCA),并验证了其有效性。 MPCA用于解决低温下单层纺织材料的IPTMD问题。 IPTMD的数值模拟结果证明了IPTMD的适用性和MPCA在解决复杂的全局优化问题上的有效性。令人鼓舞的结果表明,上述建模方法和优化算法可用于进一步的应用。

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