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Incorporating the Qualitative Variable Comfort Into the Design of a Wearable Body Sensor System

机译:将定性可变舒适性融入可穿戴体传感器系统的设计中

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摘要

The design of mechatronic devices commonly includes qualitative design objectives that can play a significant role in the consumer appeal and the success of the product. This article presents an approach to incorporate the qualitative design objective comfort into the design process of a wearable device by determining the most suitable locations to mount such hardware. The objective is modeled through multiple criteria to represent comfort. The model is formulated through the theory of fuzzy measures and the Choquet integral. The fuzzy measures are determined through two different and new methods. One method uses a least squares algorithm and the other determines fuzzy measures using a preference ranking of alternatives. In this approach, the preference rankings are locations, ordered from the most comfortable to the least comfortable. This order of locations can be replicated with the determined fuzzy measures and Choquet integral, to build the comfort model. An error that quantifies the inaccuracy in the order of preferred to nonpreferred alternatives is introduced. The comfort model that is established in this article is validated using a training set and a test set. A comparison between the two methods that determine the fuzzy measures is presented.
机译:机电装置的设计通常包括定性设计目标,可以在消费者吸引力和产品的成功中发挥重要作用。本文提出了一种方法,通过确定最合适的位置来安装这种硬件,该方法将定性设计目标舒适性与可穿戴设备的设计过程合并到可穿戴设备的设计过程中。目标是通过多个标准建模的,以表示舒适度。该模型是通过模糊措施理论和Choquet积分制定的。通过两种不同和新方法确定模糊措施。一种方法使用最小二乘算法,另一个方法使用偏替选择的偏好排名来确定模糊尺寸。在这种方法中,偏好排名是位置,从最不舒适的最舒适的订购。该位置的顺序可以通过确定的模糊措施和Choquet积分来复制,以构建舒适模型。介绍了以优选的非优选替代品的顺序量化不准确的错误。在本文中建立的舒适模型是使用训练集和测试集进行验证的。提出了模糊措施的两种方法之间的比较。

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