纺织学报 ›› 2022, Vol. 43 ›› Issue (03): 185-192.doi: 10.13475/j.fzxb.20210200608

• 机械与器材 • 上一篇    下一篇

基于OPC统一架构的毛衫生产车间信息模型及其应用

金贵阳1,2, 陈罡3(), 孙平范4   

  1. 1.宁波职业技术学院 智能装备研究所, 浙江 宁波 315806
    2.宁波大学 机械工程与力学学院, 浙江 宁波 315210
    3.浙江机电职业技术学院 自动化学院, 浙江 杭州 310059
    4.宁波慈星股份有限公司, 浙江 宁波 315336
  • 收稿日期:2021-02-01 修回日期:2021-11-24 出版日期:2022-03-15 发布日期:2022-03-29
  • 通讯作者: 陈罡
  • 作者简介:金贵阳(1981—),男,副教授,博士。主要研究方向为纺织装备智能制造及纺织车间信息化。
  • 基金资助:
    宁波市科技创新2025重大专项(2019B10075);宁波市科技创新2025重大专项(2020Z072);浙江省博士后择优资助项目(ZJ2021086)

Information model of sweater production workshops based on OPC unified architecture and its application

JIN Guiyang1,2, CHEN Gang3(), SUN Pingfan4   

  1. 1. Intelligent Equipment Research Institute, Ningbo Polytechnic, Ningbo, Zhejiang 315806, China
    2. Faculty of Mechanical Engineering & Mechanics, Ningbo University, Ningbo, Zhejiang 315210, China
    3. School of Automation, Zhejiang Institute of Mechanical & Electrical Engineering, Hangzhou, Zhejiang 310059, China
    4. Ningbo Cixing Co., Ltd., Ningbo, Zhejiang 315336, China
  • Received:2021-02-01 Revised:2021-11-24 Published:2022-03-15 Online:2022-03-29
  • Contact: CHEN Gang

摘要:

为实现毛衫生产数字化车间不同系统间信息的互联互通,针对毛衫生产过程中相关生产信息在企业不同层级之间的网络化信息传递,提出了基于OPC统一架构(OPC UA)的毛衫生产数字化车间互联网络框架。借鉴企业控制系统集成标准(ISA 95)的对象模型,采用OPC UA建模技术,构建了毛衫生产数字化车间的标准信息模型,对其模型结构、静态属性集、过程属性集和功能组件集进行了描述和定义。并以电脑横机为例,给出了模型、实例化和车间系统间信息交互示例。结果表明,基于提出的互联网络架构和标准信息模型,可实现毛衫生产数字化车间内各层级系统间的互联互通互操作,解决了信息异构碎片化问题。

关键词: 毛衫生产, 数字化车间, 信息模型, OPC统一架构, 电脑横机

Abstract:

In order to facilitate information communication between different systems of sweater production digital workshops, and an interconnected network architecture for sweater production digital workshops based on OPC unified architecture (UA) was proposed aiming at the interaction of relevant production information at different levels of the enterprise during the sweater production process. Based on the object model of ISA 95 standard and OPC UA modeling technology, a standard information model of sweater production digital workshops was constructed. The model structure, static attribute set, process attribute set and function component set were described and defined. Taking the computerized flat knitting machine as an example, a representative model, instantiation and information interaction between workshop systems were presented. Based on the proposed interconnected network architecture and the standard information model, the interconnection and interoperation among all levels of systems in sweater production digital workshops were achieved, tackling the problem of heterogeneous and fragmented information.

Key words: sweater production, digital workshop, information model, OPC unified architecture, computerized flat knitting machine

中图分类号: 

  • TH166

图1

OPC UA信息模型结构"

图2

基于OPC UA的毛衫生产车间信息交互网络架构 注:CAPP为智能工业系统,PDM为产品数据工业系统, ERP为企业资源管理系统,SCM为供应链管理系统。"

图3

毛衫生产数字化车间标准信息模型架构示意图"

图4

毛衫个性化订单数字化车间生产流程"

图5

电脑横机标准化信息模型"

图6

电脑横机节点地址空间模型"

图7

电脑横机单机看板"

[1] 郭栋, 尹作重, 秦修功, 等. 企业控制系统集成中的对象模型及应用[J]. 制造业自动化, 2017,39(1):138-148.
GUO Dong, YIN Zuozhong, QIN Xiugong, et al. Objects and applications for enterprise-control system integration[J]. Manufacturing Automation, 2017,39(1):138-148.
[2] GIOVANNI D O. Towards a framework for interoperable and interconnected CPS-populated systems for proactive maintenance[C]// PEDRO M, JOSE B, MICHELE A, et al. 2018 IEEE 16th International Conference on Industrial Informatics. Porto: INDIN 2018 Committees, 2018:146-151.
[3] HASSAN Ali-mohamed, MEHMOOD Aamir. Prognostic and diagnostic coupling framework based on OSA-CBM strategy for photovoltaic generators[J]. Journal of Polytechnic, 2021(10):1-5.
[4] 胡旭东, 沈春娅. 针织行业的智能制造及其实践[J]. 针织工业, 2019(8):1-6.
HU Xudong, SHEN Chunya. Intelligent manufacturing and practice in knitting industry[J]. Knitting Industries, 2019(8):1-6.
[5] 汪松松, 彭来湖, 戴宁, 等. 基于工业互联网的针织机械互联互通结构研究[J]. 纺织学报, 2020,41(1):165-173.
WANG Songsong, PENG Laihu, DAI Ning, et al. Research on knitting machine interconnection and interoperability structure based on industrial internet[J]. Journal of Textile Research, 2020,41(1):165-173.
[6] EICHBERGE D, KMPER B, MULLER J. Integration of industry 4.0 sub-models into e-class and OPC UA companion specifications[M]. Berlin: Springer, 2020:853-864.
[7] 禹鑫燚, 殷慧武, 施甜峰, 等. 基于OPC UA的工业设备数据采集系统[J]. 计算机科学, 2020,47(S2):609-614.
YU Xinyi, YIN Huiwu, SHI Tianfeng, et al. Data acquisition system of industrial equipment based on OPC UA[J]. Computer Science, 2020,47(S2):609-614.
[8] 汪松松, 彭来湖, 胡旭东. OPC统一架构框架下的针织装备信息模型[J]. 纺织学报, 2020,41(5):167-175.
WANG Songsong, PENG Laihu, HU Xudong. Knitting machine information modeling under OPC unified architecture framework[J]. Journal of Textile Research, 2020,41(5):167-175.
doi: 10.1177/004051757104100213
[9] 李锋, 张坤, 原丽娜. 基于OPC UA 的纺织智能染整车间信息模型研究与实现[J]. 纺织学报, 2020,41(2):149-154.
LI Feng, ZHANG Kun, YUAN Li'na. Research and implementation of information model for textile intelligent dyeing and finishing workshop based on OPC UA[J]. Journal of Textile Research, 2020,41(2):149-154.
[10] LIU C, VENGAYIL H, LU Y, et al. A cyber-physical machine tools platform using OPC UA and MTConnect[J]. Journal of Manufacturing Systems, 2019(51):61-74.
[11] WOONGGY K, MINYOUNG S. Standalone OPC UA wrapper for industrial monitoring and control systems[J]. IEEE Access, 2018(6):36557-36570.
[12] TIAGO Coito, MIGUEL Martins, JOAQUIM Viegas, et al. A middleware platform for intelligent automation: an industrial prototype implementation[J]. Computers in Industry, 2020(123):103-108.
[13] 王麟琨, 赵艳领, 闫晓风. 数字化车间制造装备信息集成通用解决方案研究[J]. 中国仪器仪表, 2017(3):21-25.
WANG Linkun, ZHAO Yanling, YAN Xiaofeng. The research on general solution for information integration of manufacturing equipment in digital workshop[J]. China Instrumentation, 2017(3):21-25.
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[14] 陈景波 华强 周平 浦炜 卢达. 高性能电脑横机纱嘴控制方法的设计与实现[J]. 纺织学报, 2013, 34(10): 137-0.
[15] 方园 夏凡甜. 基于UG NX/Motion的电脑横机成圈机构建模与仿真[J]. 纺织学报, 2013, 34(1): 122-127.
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