首页> 外文会议>International Conference on Virtual, Augmented and Mixed Reality;International Conference on Human-Computer Interaction >Mixed Mock-up Meets ErgoCAM: Feasibility Study for Prospective Ergonomic Evaluation of Manual Assembly Processes in Real-Time Using Augmented Reality and Markerless Posture Analysis
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Mixed Mock-up Meets ErgoCAM: Feasibility Study for Prospective Ergonomic Evaluation of Manual Assembly Processes in Real-Time Using Augmented Reality and Markerless Posture Analysis

机译:混合模型满足ErgoCAM:可行性研究,使用增强现实和无标记姿势分析实时进行人工装配过程的人体工程学评估

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The sustainable planning of production systems and processes requires a high degree of flexibility in the processes, both in terms of the production methods used and scalability, in order to be able to react to changing requirements at short notice. These requirements often hamper companies' efforts to guarantee health-promoting working conditions and systems as the workload involved in a correspondingly short-cycle analysis and evaluation of stressors would be too great. As a result, the individual needs of employees, such as adapting the workplace to suit personal constitutional traits, are often not taken into account sufficiently. In order to address this problem, two prototypical systems for digitally supported workplace design are tested in this paper. The focus lies on a mixed mock-up demonstrator, which combines classic mock-up planning with augmented reality technology and enables the generation of individualized manual assembly workstations. This demonstrator is used and examined in conjunction with ErgoCAM, a prototype of a markerless system, to evaluate individual postures in real time. The aim is to ascertain which benefits the combination of the systems offers with regard to the flexible and early ergonomic evaluation of assembly workstations in practice. Specifically, in a feasibility study, it is examined to which extent a reliable ergonomic evaluation of assembly operations is possible by combining the two prototypes.
机译:生产系统和过程的可持续规划要求过程具有高度的灵活性,无论是在使用的生产方法还是在可扩展性方面,以便能够在短时间内对不断变化的需求做出反应。这些要求通常会阻碍公司努力保证健康的工作条件和系统,因为相应的短周期分析和评估压力源所涉及的工作量会很大。结果,常常没有充分考虑雇员的个人需求,例如适应工作场所以适应个人体质特征。为了解决这个问题,本文测试了两个用于数字化支持的工作场所设计的原型系统。重点在于混合的样机演示器,该演示器将经典的样机计划与增强现实技术相结合,并能够生成个性化的手动组装工作站。该演示器与ErgoCAM(无标记系统的原型)一起使用和检查,可以实时评估各个姿势。目的是确定在实践中对组装工作站进行灵活且早期的人体工程学评估方面,系统组合所带来的好处。具体而言,在可行性研究中,研究了通过组合两个原型在何种程度上可以进行可靠的人体工程学评估,以进行组装操作。

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