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An Intelligent Technology Based Method For interpreting Sensory Evaluation Data provided By Multiple Panels

机译:基于智能技术的多面板感官评估数据解释方法

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This paper presents an intelligent technology based method for analyzing and interpreting sensory data provided by multiple panels in evaluation of industrial products. In order to process the uncertainty existing in these sensory data, we first transform all sensory data on an unified optimal scale. Based on these normalized data sets, we compute the dissimilarities or distances between different panels and between different evaluation terms used by them, defined according to the degree of consistency of data variation. The obtained distances are then transformed into fuzzy numbers for physical interpretation. These fuzzy distances permit to characterize the evaluation behaviour of each panel and the quality of the evaluation terms used. Also, based on a Genetic Algorithm with punishment policy and the dissimilarity between terms, we develop a procedure for interpreting terms of one panel using those of another panel. This method has been applied to the fabric hand evaluation for a number of samples of knitted cotton in order to identify consumers' preference of different populations.
机译:本文提出了一种基于智能技术的方法,用于分析和解释多个面板在工业产品评估中提供的感官数据。为了处理这些感官数据中存在的不确定性,我们首先在统一的最佳尺度上变换所有感官数据。根据这些归一化的数据集,我们根据数据变化的一致性程度,计算不同面板之间以及它们使用的不同评估术语之间的差异或距离。然后将获得的距离转换为模糊数以进行物理解释。这些模糊距离允许表征每个面板的评估行为以及所使用评估术语的质量。此外,基于带有惩罚策略的遗传算法和术语之间的相似性,我们开发了一种程序来解释一个小组使用另一小组的术语。该方法已应用于许多针织棉样品的织物手感评估,以识别不同人群的消费者偏好。

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