首页> 外文期刊>International Journal of Pressure Vessels and Piping >The applicability and implementation of the discrete Big Bang-Big Crunch optimisation technique for discontinuous objective function in multi-material laminated composite pressure vessels
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The applicability and implementation of the discrete Big Bang-Big Crunch optimisation technique for discontinuous objective function in multi-material laminated composite pressure vessels

机译:不同材料层压复合容器中不连续物镜函数的离散大爆炸优化技术的适用性与实现

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摘要

The Big Bang-Big Crunch (BB-BC) algorithm is implemented to optimise lay-up configurations of filament wound laminated cylindrical pressure vessels subject to internal pressure. The vessels are composed of a combination of two different types of lamina, a chopped strand mat and a direct roving lamina with different fibre orientations. These two types of layers are combined into one discrete design variable, creating a complex discontinuous objective function surface. Two optimisation cases are presented, in the first case, the inverse of the Tsai-Wu Strength Ratio is minimised, and in the second case, a cost factor is introduced to shift the global minimum to a singularity. To assess the performance of the BB-BC algorithm, the results of the optimisation runs are compared with the global optimum obtained by a brute-force method. In this study, an analysis of the effect of varying the population size on the efficiency and accuracy of the results, is presented. In addition, the influence of previous best fit candidate on the performance of the algorithm is also investigated. It is shown that the BB-BC algorithm is robust in optimising layup sequences even when the number of layers is high and when two different types of layers are present. In particular, it is shown that higher population sizes increases the accuracy of the results although it lowers the efficiency. In the presence of a singularity in the objective function, it is necessary that the new generations subject to further optimisation represent more the previous best fit candidate.
机译:实现了大爆炸(BB-BC)算法,以优化经受内部压力的细丝卷曲层压圆柱形压力容器的放置配置。该容器由两种不同类型的椎板,切碎的股线垫和具有不同纤维取向的直接粗纱的组合组成。这两种类型的层组合成一个分立的设计变量,产生复杂的不连续物镜函数表面。提出了两种优化案例,在第一种情况下,TSAI-WU强度比的倒数最小化,并且在第二种情况下,引入成本因数以将全局最小值转移到奇点。为了评估BB-BC算法的性能,将优化运行的结果与通过蛮力方法获得的全局最佳值进行比较。在这项研究中,提出了分析对结果效率和准确性的影响效果。此外,还研究了先前最佳拟合候选者对算法性能的影响。结果表明,即使在层数高,当存在两种不同类型的层时,BB-BC算法也在优化叠层序列方面是稳健的。特别地,表明较高的人口尺寸增加了结果的准确性,尽管它降低了效率。在目标函数中存在奇点,新一代需要进一步优化的必要代表以前的最佳拟合候选者。

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