Knight James F, Baber Chris
Electronic, Electrical and Computing Engineering, University of Birmingham, Birmingham, B15 2TT, UK.
Hum Factors. 2005 Spring;47(1):77-91. doi: 10.1518/0018720053653875.
Wearable computer comfort can be affected by numerous factors, making its assessment based on one value with one scale inappropriate. This paper presents a tool that measures wearable comfort across six dimensions: emotion, attachment, harm, perceived change, movement, and anxiety. The dimensions for these comfort rating scales were specifically developed for wearable equipment assessment by applying multidimensional scaling to a comfort term association matrix developed using the results of groupings of wearable computer comfort terms. Testing the scales on four different types of wearable computer showed that the scales can be used to highlight differences in comfort between different types of technology for different aspects of comfort. An intraclass correlation of .872 suggested that the scales were used with a high level of reliability. A second study showed that modifications made to a wearable computer resulted in improvements in comfort, although they were not significant (p > .05). A potential application for this research is as an aid to designers and researchers for assessing the wearability, in terms of comfort, of wearable computer devices and to determine the effectiveness of any modifications made to the design of a wearable device.
可穿戴计算机的舒适度会受到众多因素的影响,因此仅基于一个维度的单一数值来评估是不合适的。本文介绍了一种工具,该工具可从六个维度衡量可穿戴设备的舒适度:情绪、依恋感、伤害、感知变化、运动和焦虑。这些舒适度评级量表的维度是专门为可穿戴设备评估而开发的,通过将多维标度法应用于一个舒适度术语关联矩阵,该矩阵是利用可穿戴计算机舒适度术语分组结果构建而成的。在四种不同类型的可穿戴计算机上对这些量表进行测试表明,这些量表可用于突出不同类型技术在舒适度不同方面的差异。组内相关系数为0.872,表明这些量表的使用具有较高的可靠性。第二项研究表明,对可穿戴计算机进行的改进虽然不显著(p>0.05),但确实提高了舒适度。这项研究的一个潜在应用是帮助设计师和研究人员评估可穿戴计算机设备在舒适度方面的可穿戴性,并确定对可穿戴设备设计所做的任何改进的有效性。