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Haptically enabled interactivity and immersive virtual assembly

机译:触觉启用的交互性和沉浸式虚拟装配

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摘要

Virtual training systems are attracting paramount attention from the manufacturing industries due to their potential advantages over the conventional training practices such as general assembly. Within this virtual training realm for general assembly, a haptically enabled interactive and immersive virtual reality (HIVEx) system is presented. The idea is to imitate real assembly training scenarios by providing comprehensive user interaction as well as by enforcing physical constraints within the virtual environment through the use of haptics technology. The developed system employs a modular system approach providing flexibility of reconfiguration and scalability as well as better utilization of the current multi-core computer architecture. The user interacts with the system using haptics device and data glove while fully immersed into the virtual environment with depth perception. An evaluation module, incorporated into the system, automatically logs and evaluates the information through the simulation providing user performance and improvements over time. A ruggedized portable version of the system is also developed and presented with full system capabilities allowing easy relocation with different factory environments. A number of training scenarios has been developed with varying degree of complexity to exploit the potential of the presented system. The presented system can be employed for teaching and training of existing assembly processes as well as the design of new optimised assembly operations. Furthermore, the presented system can assist in optimizing existing practices by evaluating the effectiveness and the level of knowledge transfer involved in the process. Within the aforementioned conceptual. framework, a working prototype is developed.
机译:虚拟培训系统由于比常规培训实践(例如大会)具有潜在的优势,因此吸引了制造业的极大关注。在此用于大会的虚拟培训领域中,提出了一种具有触觉功能的交互式沉浸式虚拟现实(HIVEx)系统。这个想法是通过提供全面的用户交互以及通过使用触觉技术在虚拟环境中加强物理约束来模仿真实的组装培训方案。开发的系统采用模块化系统方法,可提供灵活的重新配置和可伸缩性,以及更好地利用当前的多核计算机体系结构。用户使用触觉设备和数据手套与系统进行交互,同时以深度感知完全浸入虚拟环境。集成到系统中的评估模块通过模拟自动记录和评估信息,从而随着时间的推移提供用户性能和改进。还开发了坚固耐用的系统便携式版本,并具有完整的系统功能,可以轻松地在不同的工厂环境中进行迁移。已经开发了许多具有不同复杂程度的训练方案,以利用所提出的系统的潜力。所提出的系统可用于教学和培训现有的装配过程,以及设计新的优化装配操作。此外,所提出的系统可以通过评估过程中涉及的知识的有效性和水平来帮助优化现有实践。在上述概念之内。框架,开发了一个有效的原型。

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