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Real-time finite element structural analysis in augmented reality

机译:增强现实中的实时有限元结构分析

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摘要

Conventional finite element analysis (FEA) is usually carried out in offsite and virtual environments, i.e., computer-generated graphics, which does not promote a user's perception and interaction, and limits its applications. With the purpose of enhancing structural analysis with augmented reality (AR) technologies, the paper presents a system which integrates sensor measurement and real-time FEA simulation into an AR-based environment. By incorporating scientific visualization technologies, this system superimposes FEA results directly on real-world objects, and provides intuitive interfaces for enhanced data exploration. A wireless sensor network has been integrated into the system to acquire spatially distributed loads, and a method to register the sensors onsite has been developed. Real-time FEA methods are employed to generate fast solutions in response to load variations. As a case study, this system is applied to monitor the stresses of a step ladder under actual loading conditions. The relationships among accuracy, mesh resolution and frame rate are investigated.
机译:传统的有限元分析(FEA)通常是在异地和虚拟环境中进行的,即计算机生成的图形,这种图形不会促进用户的感知和交互,并限制了其应用。为了增强利用增强现实(AR)技术进行结构分析的目的,本文提出了一种将传感器测量和实时FEA仿真集成到基于AR的环境中的系统。通过结合科学的可视化技术,该系统将FEA结果直接叠加在现实世界的对象上,并提供直观的界面以增强数据探索。无线传感器网络已集成到系统中以获取空间分布的负载,并且已经开发了一种在现场注册传感器的方法。实时FEA方法用于响应负载变化生成快速解决方案。作为案例研究,该系统用于监视实际负载条件下阶梯梯的应力。研究了精度,网格分辨率和帧速率之间的关系。

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