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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A study to trial the use of inertial non-optical motion capture for ergonomic analysis of manufacturing work
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A study to trial the use of inertial non-optical motion capture for ergonomic analysis of manufacturing work

机译:试验使用惯性非光学运动捕获对制造工作的符合人体工程学分析的研究

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摘要

>It is going to be increasingly important for manufacturing system designers to incorporate human activity data and ergonomic analysis with other performance data in digital design modelling and system monitoring. However, traditional methods of capturing human activity data are not sufficiently accurate to meet the needs of digitised data analysis; qualitative data are subject to bias and imprecision, and optically derived data are hindered by occlusions caused by structures or other people in a working environment. Therefore, to meet contemporary needs for more accurate and objective data, inertial non-optical methods of measurement appear to offer a solution. This article describes a case study conducted within the aerospace manufacturing industry, where data on the human activities involved in aircraft wing system installations was first collected via traditional ethnographic methods and found to have limited accuracy and suitability for digital modelling, but similar human activity data subsequently collected using an automatic non-optical motion capture system in a more controlled environment showed better suitability. Results demonstrate the potential benefits of applying not only the inertial non-optical method in future digital modelling and performance monitoring but also the value of continuing to include qualitative analysis for richer interpretation of important explanatory factors.
机译: >制造系统设计人员将与数字数据中的其他性能数据纳入人类活动数据和符合人体工程学分析,这将越来越重要设计建模与系统监控。然而,传统的捕获人类活动数据的方法不足以满足数字化数据分析的需求;定性数据受到偏见和不精确的影响,并且光学派生的数据被由工作环境中的结构或其他人引起的闭塞阻碍。因此,为了满足更准确和客观数据的当代需求,惯性非光学测量方法似乎提供了解决方案。本文介绍了航空航天制造业在航空航天制造业内进行的案例研究,其中首先通过传统的民族图方法收集了飞机机翼系统装置的人类活动数据,并发现了对数字建模的准确性和适合性有限,但随后类似的人类活动数据在更受控的环境中使用自动非光学运动捕获系统收集显示得更好。结果表明,不仅在未来的数字建模和性能监测中申请的潜在好处,而且还持续存在对更丰富地解释重要解释因素的定性分析的价值。

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