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Application of Virtual Reality Techniques in Design of Ergonomic Manufacturing Workplaces

机译:虚拟现实技术在人体工程学制造场所设计中的应用

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This paper presents possibilities of application of the immersive VR and the haptic technologies during the complex process of design and virtual prototyping of the manufacturing workplaces characterized with a high level of ergonomic quality. Two case studies are presented: a workplace for stud welding and a set of two workplaces, for hole drilling and manual assembly. In the first case study, haptic device with force feedback effect was used to improve ergonomics of main operator activities. In the second case study, immersive approach was used, namely Head-Mounted Device, tracking and gesture recognition systems, to test and improve ergonomics of the whole workplace. Application of VR techniques allows to present the virtual prototype of the workplace in its real operation environment, limiting the need for use of real mock-ups. Therefore, Virtual Reality allows to conduct a number of analyses related to designed prototypes, such as: dimensions of devices and possibilities of adjustment to height of the human operator, and arrangement of control and signaling devices according to the rules of ergonomic design. To conduct these analyses, full interaction between user and workplace must be programmed, including collision detection, kinematics of the devices and possibilities of activating their various functions in relation with other objects in the virtual scene.
机译:本文提出了沉浸式VR和触觉技术在具有高水平人体工程学特征的制造工作场所的复杂设计和虚拟原型制作过程中应用的可能性。提出了两个案例研究:一个用于螺柱焊接的工作场所,以及两个用于钻孔和手工组装的工作场所。在第一个案例研究中,具有力反馈作用的触觉设备被用于改善主要操作员活动的人体工程学。在第二个案例研究中,采用了沉浸式方法,即头戴式设备,跟踪和手势识别系统,以测试和改善整个工作场所的人机工程学。 VR技术的应用允许在其真实的操作环境中呈现工作场所的虚拟原型,从而限制了使用真实模型的需求。因此,虚拟现实技术允许进行与设计原型相关的许多分析,例如:设备的尺寸和操作人员身高调整的可能性,以及根据人体工程学设计规则的控制和信号设备的布置。为了进行这些分析,必须对用户和工作场所之间的完全交互进行编程,包括碰撞检测,设备的运动学以及激活与虚拟场景中其他对象相关的各种功能的可能性。

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