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Assembly simulations in virtual environments with optimized haptic path and sequence

机译:虚拟环境中的装配模拟,具有优化的触觉路径和顺序

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摘要

Virtual assembly and disassembly simulations can be accomplished in intuitive and effective ways using haptic information in virtual environments (VEs). Potential problems in a given assembly scheme can be predicted by a user who may be able to suggest an alternative scheme in the VE. This paper describes an intelligent virtual assembly system in which an optimal assembly algorithm is used to allow haptic interactions during virtual assembly operations. This algorithm provides optimal paths for haptic guidance as well as an assembly sequence of the parts to be assembled. The performance of the given assembly schemes was simulated using a virtual assembly system. Experimental results showed that the haptic-path sequence-guidance (HSG) mode gave the best performance improvement in terms of accumulated assembly time (28.33%) and travel distance (15.05%) compared to the unguided mode, while the sequence-guidance (SG) mode alone increased performance by 15.33% for assembly time and 11.36% for travel distance. The experimental results were analyzed by the sub-tasks of gripper selection, inter-part movement, and part assembly. For the HSG mode, the greatest contributor to the time and distance reductions was the optimized haptic path, while for the SG mode, the reduced numbers of gripper exchanges and orientation change made the greatest contributions to reducing the assembly time and the travel distance. As a result, the optimized haptic path, as well as sequence guidance, enhanced the working performance of virtual assembly tasks.
机译:可以使用虚拟环境(VE)中的触觉信息以直观有效的方式完成虚拟组装和拆卸模拟。给定组装方案中的潜在问题可以由能够在VE中建议替代方案的用户预测。本文介绍了一种智能虚拟装配系统,其中使用最佳装配算法在虚拟装配操作过程中允许触觉交互。该算法为触觉指导以及要组装的零件的组装顺序提供了最佳路径。使用虚拟装配系统模拟了给定装配方案的性能。实验结果表明,与非引导模式相比,触觉路径序列引导(HSG)模式在累计装配时间(28.33%)和行进距离(15.05%)方面表现出最佳的性能改进,而序列引导(SG )模式仅可将组装时间的性能提高15.33%,将行驶距离提高11.36%。通过抓爪选择,零件间运动和零件组装等子任务分析了实验结果。对于HSG模式,减少时间和距离的最大原因是优化的触觉路径,而对于SG模式,减少的of纸牙更换和方向改变为减少装配时间和行进距离做出了最大贡献。结果,优化的触觉路径以及顺序导航增强了虚拟装配任务的工作性能。

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