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Mid-Air Gestures for Multi-Fingered Virtual Assembly System with Leap Motion

机译:具有Leap Motion的多指虚拟装配系统的中空手势

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With the development of human-computer interaction and virtual reality technology, virtual assembly shows its advantages in the fields of robotic and mechanical assembly. However, the traditional virtual assembly is based on the mouse and keyboard devices to interact with the virtual environment with low interactivity and poor sense of reality. This paper proposed a novel approach for designing and implementing a virtual assembly training system based on multi-fingered mid-air gestures with Leap Motion controller. The procedures included the construction of assembly scene, the functional identification of the mid-air gestures and the design of the assembly process. This framework is validated through a sample assembly process of a single-stage gear reducer. Experimental results indicated that the system works well to implement assembly operations with immersive experience and high gesture recognition accuracy. From the results, it can be seen that the proposed system has the potential to be a useful tool for mechanical assembly education and industrial design and manufacturing.
机译:随着人机交互和虚拟现实技术的发展,虚拟装配在机器人和机械装配领域中显示了其优势。然而,传统的虚拟组件基于鼠标和键盘设备与虚拟环境相互作用,具有低交互性和差的现实感。本文提出了一种基于跨运动控制器的多指中途空气手势的设计和实现虚拟装配训练系统的新方法。该程序包括组装场景的构建,内部空气手势的功能识别和装配过程的设计。该框架通过单级齿轮减速器的样品组装过程进行验证。实验结果表明,该系统效果很好地实现了沉浸式经验和高手势识别准确性的装配操作。从结果中,可以看出,所提出的系统有可能成为机械装配教育和工业设计和制造的有用工具。

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