虚拟现实技术在工业机器人运动仿真与控制中的应用

Wei Zhao
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引用次数: 0

摘要

针对工业机器人在研究、设计和开发过程中的运动轨迹跟踪与控制问题,本文将以常见的六轴工业机器人为研究对象,利用VR技术、3D建模技术和Web3D交互技术的应用优势,以3ds Max为建模工具,Unity3D虚拟现实引擎为开发平台,并从虚拟机器人与真实机器人视觉交互的角度构建工业机器人虚拟现实仿真实验系统,为工业机器人虚拟运动仿真与控制的研究提供全面可行的解决方案。整个系统采用B/S架构,按照APS中的MVC模式完成整个功能的设计和部署。,从而支持不同角色的用户在虚拟现实环境中测试工业机器人各组成模块的功能,并模拟工业机器人在不同场景下的轨迹规划和运动效果控制。该系统将大大提高工业机器人的研发效率,增加工业机器人的效率和灵活性,突破传统测试方法对时间和空间的限制,为工业机器人的智能化发展提供经验和参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of virtual reality technology in motion simulation and control of industrial robot
Aiming at the problem of tracking and controlling the motion path of industrial robots in the process of research, design and development, this paper will take the common six-axis industrial robots as the research object, take advantage of the application advantages of VR technology, 3D modeling technology and Web3D interactive technology, take 3ds Max as the modeling tool and Unity3D virtual reality engine as the development platform, and build a virtual reality simulation experiment system of industrial robots from the perspective of visual interaction between virtual robots and real robots, so as to provide a comprehensive and feasible solution for the research of virtual motion simulation and control of industrial robots. The whole system adopts B/S architecture and completes the design and deployment of the whole function according to MVC mode in APS.NET environment, so as to support users with different roles to test the functions of each component module of industrial robot in virtual reality environment, and also simulate the trajectory planning and motion effect control of industrial robot in different scenes. The system will greatly improve the research and development efficiency of industrial robots, increase the efficiency and flexibility of industrial robots, break through the limitations of traditional testing methods on time and space, and provide experience and reference for the intelligent development of industrial robots.
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