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Construction of a computer-simulated mixed reality environment for virtual factory layout planning

机译:构建用于虚拟工厂布局规划的计算机模拟混合现实环境

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To survive the cut-throat competition in the manufacturing industry, many companies have introduced digital manufacturing technology. Digital manufacturing technology not only shortens the product development cycle times but also improves the precision of engineering simulation. However, building the virtual objects needed for a digital manufacturing environment requires skilled human resources; it is also costly and time-consuming. A high precision environment with the similar resources is also needed for a high precision simulation. In this paper, we propose a method of constructing a mixed reality-based digital manufacturing environment. The method integrates real objects, such as real images, with the virtual objects of a virtual manufacturing system. This type of integration minimizes the cost of implementing virtual objects and enhances the user’s sense of reality. We studied several methods and derived a general framework for the system. Finally, we developed our idea into a virtual factory layout planning system. To assign the pose and position of real objects in virtual space, we applied a circle-based tracking method which uses a safety sign instead of the planar-square-shaped marker generally used for registration. Furthermore, we developed the framework to encapsulate simulation data from legacy data and process data for visualization based on mixed reality.
机译:为了在制造业的激烈竞争中生存,许多公司引入了数字制造技术。数字制造技术不仅缩短了产品开发周期,而且提高了工程仿真的精度。但是,构建数字制造环境所需的虚拟对象需要熟练的人力资源。这也是昂贵且费时的。高精度仿真还需要具有相似资源的高精度环境。在本文中,我们提出了一种构建基于混合现实的数字制造环境的方法。该方法将诸如真实图像的真实对象与虚拟制造系统的虚拟对象集成在一起。这种类型的集成使实现虚拟对象的成本最小化,并增强了用户的真实感。我们研究了几种方法,并得出了该系统的通用框架。最后,我们将想法发展成虚拟的工厂布局规划系统。为了分配虚拟空间中真实对象的姿势和位置,我们应用了基于圆的跟踪方法,该方法使用安全标志代替通常用于注册的平面正方形标记。此外,我们开发了一种框架,用于封装来自遗留数据和过程数据的模拟数据,以基于混合现实进行可视化。

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