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The development of a physics and constraint-based haptic virtual assembly system

机译:基于物理和约束的触觉虚拟装配系统的开发

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Purpose - This paper aims to report the development and key features of a novel virtual reality system for assembly planning and evaluation called Haptic Assembly and Manufacturing System (HAMS). The system is intended to be used as a tool for training, design analysis and path planning. Design/methodology/approach - The proposed system uses the physics-based modelling (PBM) to perform assemblies in virtual environments. Moreover, dynamic assembly constrains have been considered to reduce the degrees of freedom of virtual objects and enhance the virtual assembly performance. Findings - To evaluate the effectiveness and performance of HAMS, the assembly of various mechanical components has been carried out, and the results have shown that it can be effectively used to simulate, evaluate, plan and automatically formalise the assembly of complex models in a more natural and intuitive way. Research limitations/implications - The collision detection performance is the bottleneck in any virtual assembly system. New methods of collision shape representation and collision detection algorithms must be considered. Originality/value - HAMS introduces the use of dynamic assembly constraints to enhance the virtual assembly performance. HAMS also uses features not yet reported by similar systems in the literature. These features include: automatic or manual definition of assembly constraints within the virtual assembly system; the implementation of control panels and widgets to modify simulation parameters during running time to evaluate its influence on simulation performance; assembly data logging such as trajectories, forces and update rates for post-processing, further analysis or its presentation in the form of chronocyclegraphs to graphically analyse the assembly process.
机译:目的-本文旨在报告用于装配计划和评估的新型虚拟现实系统Haptic装配与制造系统(HAMS)的开发和主要功能。该系统旨在用作培训,设计分析和路径规划的工具。设计/方法/方法-提议的系统使用基于物理的建模(PBM)在虚拟环境中执行装配。此外,已经考虑了动态装配约束以减小虚拟对象的自由度并增强虚拟装配性能。研究结果-为了评估HAMS的有效性和性能,已经进行了各种机械组件的组装,结果表明它可以有效地用于模拟,评估,计划和自动形式化复杂模型的组装。自然而直观的方式。研究局限性/含义-碰撞检测性能是任何虚拟装配系统中的瓶颈。必须考虑碰撞形状表示和碰撞检测算法的新方法。创意/价值-HAMS引入了动态装配约束的使用,以增强虚拟装配的性能。 HAMS还使用文献中类似系统尚未报告的功能。这些功能包括:在虚拟装配系统中自动或手动定义装配约束;实施控制面板和小部件以在运行期间修改模拟参数,以评估其对模拟性能的影响;装配数据记录,例如轨迹,力和更新率,用于后处理,进一步分析或以计时周期图的形式呈现,以图形化方式分析装配过程。

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