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Anthropometric Shape Analysis Strategy for Design of Personal Wear

机译:人体磨损设计的人体形状分析策略

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The diversity of morphologies may be a source of annoyance to the designer of personal equipment. For those involved in design problems, the user population seems to have considerable variability in the size and shape of body parts. However, traditionally available anthropometric data provides only the independent value for each measurement with no information on the shapes of the contours and curvatures. This type of data appears to be insufficient for the design of personal equipment such as shoes, helmets, or a guard for a specific body part. Therefore, interfacing any human body part and equipment should begin with the objective knowledge of the full range of body sizes and shapes. The size variability can be tackled by developing fitting schemes by covering segments of a multivariate normal population. The main difficulty is apprehending the anatomical shapes and their variation relative to three dimensional space. Further, for offering the proper fit, it becomes imperative that variability in such anatomical shapes be incorporated in the design. This paper describes the shape analysis strategy which should be useful in approximating non-linear dimensions of human body part for design. The method is illustrated by selecting the curvatures along a foot outline. The curvatures are defined as a set of discrete points and then analyzed by statistical and numerical methods for arriving at an optimized shape. The shape differences and similarities within and between the two methods are examined graphically and discussed. Results show that the technique of integrating the fitting scheme and anatomical shape approximation describes the human body shapes in geometric terms with moderate accuracy.
机译:形态的多样性可能是个人设备设计师烦恼的源泉。对于参与设计问题的人,用户人口似乎具有身体部位的尺寸和形状具有相当大的变化。然而,传统上可用的人类测量数据仅提供每个测量的独立值,而没有关于轮廓和曲率的形状的信息。这种类型的数据似乎不足以设计个人设备,如鞋子,头盔或针对特定身体部位的保护。因此,接口任何人体部位和设备都应从全系列身体尺寸和形状的客观知识开始。通过覆盖多变量正常群体的段,可以通过开发拟合方案来解决尺寸变异性。主要困难是伪造解剖形状及其相对于三维空间的变化。此外,为了提供适当的拟合,必须在设计中包含这种解剖结构的可变性。本文介绍了形状分析策略,其在近似人体部位的非线性尺寸方面是设计的。通过沿脚轮廓选择曲率来说明该方法。曲率被定义为一组离散点,然后通过统计和数值方法分析,用于以优化的形状到达。图形和讨论了两种方法内和之间的形状差异和相似性。结果表明,整合拟合方案和解剖形状近似的技术描述了以中等精度的几何术语中的人体形状。

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