基于虚拟现实技术的造纸机械光机电一体化实训模拟系统  被引量:3

Virtual Reality Technology Based on Paper Machinery Optical-Mechatronics Training Simulation System

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作  者:邵静[1] SHAO Jing(Xinjiang Shihezi Vocational and Technical College,Shihezi 832000,China)

机构地区:[1]新疆石河子职业技术学院,新疆石河子832000

出  处:《造纸科学与技术》2021年第2期41-45,共5页Paper Science & Technology

摘  要:针对传统的造纸机械光机电一体化实训模拟系统由于误操作过多导致的容错能力差的问题,提出基于虚拟现实技术的造纸机械光机电一体化实训模拟系统。在硬件设计上,采用多源传感器采集真实场景的数据,基于TCP/IP实现数据与虚拟现实平台的连接,利用Blueprint构建虚拟现实场景并设计相应的数据接口;在软件设计上,构造光机电一体化设备模型,将模型以数字方法表示,实现模型的各种实训操作,同时避免模型穿透情况发生,设计判断公式对模型的操作加以控制。至此,系统设计完成。实验结果表明:设计的基于虚拟现实技术的造纸机械光机电一体化实训模拟系统面对误操作故障能够快速恢复稳定,在不同刷新频率下也能保持着较高的渲染速度,系统的容错能力得到了提升。In response to the problem of poor fault tolerance caused by too much misoperation of the traditional paper machine opto-mechanical integration practical training simulation system, the paper machine opto-mechanical integration practical training simulation system based on virtual reality technology is proposed. In the hardware design, multi-source sensors are used to collect data from real scenes, and the data is connected to the virtual reality platform based on TCP/IP, and Blueprint is used to build virtual reality scenes and design the corresponding data interface;in the software design, the model of the optical-mechanical integration equipment is constructed, and the model is expressed in a digital way to realize various practical training operations of the model, while avoiding model penetration. In the software design, the model is constructed, the model is represented digitally, and the various training operations of the model are realized, while avoiding model penetration. So far, the system design is completed. The experimental results show that the designed virtual reality-based paper machinery opto-mechanical integration training simulation system can quickly restore stability in the face of malfunction, and maintain a high rendering speed under different refresh frequencies, and the fault tolerance of the system has been improved.

关 键 词:虚拟现实技术 造纸机械 光机电一体化 实训模拟 

分 类 号:N945.13[自然科学总论—系统科学]

 

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