Development of Cloud-Edge Collaborative Digital Twin System for FDM Additive Manufacturing

Liang Guo, Yunxi Cheng, Yu Zhang, Y. Liu, Changcheng Wan, Jingyi Liang
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引用次数: 4

Abstract

The physical and virtual access of manufacturing equipment to the cloud platform is an important direction of cloud manufacturing research, but the current research results in this direction are not enough to support the "landing" and wide application of cloud manufacturing model. In the traditional cloud manufacturing model, the direct access of manufacturing equipment to the cloud brings huge network pressure and unbearable latency, and also poses a privacy and security risk. Aiming at the cloudification of manufacturing equipment in the cloud manufacturing environment, the 3D printer is selected as the research object, and a cloud-edge collaboration architecture for 3D printers based on digital twin is proposed. To solve the lack of network reliability brought about by traditional cloudification, time-sensitive services are deployed at the edge, realizing the local extension of cloud services. The digital twin information model of FDM additive manufacturing is defined. Real time controlling and monitoring based on digital twin is realized. By cloud-edge collaboration, an application case is implemented, which verifies the effectiveness of the system and provides a reference solution for the cloudification of other manufacturing equipment in the environment of cloud manufacturing.
面向FDM增材制造的云边缘协同数字孪生系统开发
制造设备对云平台的物理和虚拟接入是云制造研究的一个重要方向,但目前该方向的研究成果不足以支撑云制造模式的“落地”和广泛应用。在传统的云制造模式中,制造设备直接接入云带来了巨大的网络压力和难以承受的延迟,同时也带来了隐私和安全风险。针对云制造环境下制造设备的云化问题,以3D打印机为研究对象,提出了一种基于数字孪生的3D打印机云边缘协同架构。为解决传统云化带来的网络可靠性不足的问题,将对时间敏感的业务部署在边缘,实现云服务的本地扩展。定义了FDM增材制造的数字孪生信息模型。实现了基于数字孪生的实时控制与监控。通过云边缘协作,实现了一个应用案例,验证了系统的有效性,为云制造环境下其他制造设备的云化提供了参考解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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