Estimating Rubber Covered Conveyor Belting Cure Times Using Multiple Simultaneous Optimizations Ensemble

Domingo Pavolo, D. Chikobvu
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引用次数: 1

Abstract

Multiple response surface methodology (MRSM) has been the favorite method for optimizing multiple response processes though it has two weaknesses which challenge the credibility of its solutions. The first weakness is the use of experimentally generated small sample size datasets, and the second is the selection, using classical model selection criteria, of single best models for each response for use in simultaneous optimization to obtain the optimum or desired solution. Classical model selection criteria do not always agree on the best model resulting in model uncertainty. The selection of single best models for each response for simultaneous optimization loses information in rejected models. This work proposes the use of multiple simultaneous optimizations to estimate multiple solutions that are ensembled in solving a conveyor belting cure time problem. The solution is compared with one obtained by simultaneous optimization of single best models for each response. The two results were different. However, results show that it is possible to obtain a more credible solution through ensembling of solutions from multiple simultaneous optimizations.
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使用多重同时优化集合估计橡胶覆盖输送机皮带固化时间
多响应面方法(MRSM)一直是优化多响应过程的常用方法,但它有两个缺点,这对其解的可信度构成了挑战。第一个缺点是使用实验生成的小样本数据集,第二个缺点是使用经典模型选择标准,为每个响应选择单个最佳模型,用于同时优化以获得最优或期望的解决方案。经典的模型选择标准并不总是一致的最佳模型,导致模型的不确定性。为每个响应选择单个最佳模型进行同时优化会丢失被拒绝模型中的信息。这项工作提出使用多个同时优化来估计在解决输送带固化时间问题中集成的多个解决方案。并与对每个响应同时优化单个最优模型得到的解进行了比较。这两个结果是不同的。然而,结果表明,通过将多个同时优化的解决方案集成在一起,可以获得更可信的解决方案。
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来源期刊
CiteScore
7.90
自引率
0.00%
发文量
25
审稿时长
15 weeks
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