纺织学报 ›› 2020, Vol. 41 ›› Issue (02): 149-154.doi: 10.13475/j.fzxb.20190203706

• 机械与器材 • 上一篇    下一篇

基于OPC UA的纺织智能染整车间信息模型研究与实现

李锋(), 张坤, 原丽娜   

  1. 东华大学 计算机科学与技术学院, 上海 201620
  • 收稿日期:2019-02-20 修回日期:2019-07-04 出版日期:2020-02-15 发布日期:2020-02-21
  • 作者简介:李锋(1969—),男,教授,博士。主要研究方向为模式识别、深度学习。E-mail: lifeng@dhu.edu.cn
  • 基金资助:
    国家重点研发计划项目(2017YFB0309800);国家工信部2017年智能制造综合标准化项目([2017]468)

Research and implementation of information model for textile intelligent dyeing and finishing workshop based on OPC UA

LI Feng(), ZHANG Kun, YUAN Li'na   

  1. College of Computer Science and Technology, Donghua University, Shanghai 201620, China
  • Received:2019-02-20 Revised:2019-07-04 Online:2020-02-15 Published:2020-02-21

摘要:

为建立纺织染整行业智能染整车间系统,提出了一种基于OPC UA的信息系统建模方案。以平幅连续生产车间为例,在分析重点设备的物理模型的基础上,抽象出“染整设备类型”和“监控单元类型”,用于设备和监控单元公共的属性及控制方法的定义,同时通过各类设备的私有属性定义其特有的性质。模型定义符合OPC UA国际标准,设备能对外提供规范的服务,呈现统一接口和通信规范,实现了设备和系统间的互联互通。在建立设备模型的基础上,搭建了纺织智能染整车间的逻辑模型和整体架构,采用OPC UA通信规范,实现了设备端与制造执行系统的数据通信。该模型和车间架构在实际生产中的应用,为OPC UA技术在纺织行业的应用进行了探索和实践。

关键词: OPC UA, 智能化, 染整车间, 通信规范, 信息模型

Abstract:

In order to establish a system of intelligent dyeing and finishing workshop in textile dyeing and finishing industry, an information system modeling scheme based on OPC UA was proposed. Taking the flat continuous production workshop as an example, the "dyeing and finishing equipment type" and "monitoring unit type" were abstracted on the basis of analyzing the physical model of the key equipment, which were used to define the common attributes, control methods of the equipment and monitoring unit, and unique properties through the private properties of various devices. The model definition fully complies with the OPC UA international standard, enabling the device to provide standardized services to the outside, presenting a unified interface and communication protocal, and achieving interconnection and interoperability between devices and systems. On the basis of establishing the equipment model, the logical model and overall architecture of the textile intelligent dyeing and finishing workshop were built. The data communication between the equipment end and the manufacturing execution system was implemented by using the OPC UA communication protocol. The model and workshop architecture have been applied in actual production, providing important references to use of OPC UA technology in the whole textile industry.

Key words: OPC UA, intelligent, dyeing workshop, communication specification, information model

中图分类号: 

  • TS198

图1

染整车间系统图"

图2

设备物理模型与设备信息模型对应关系"

图3

染整智能设备信息模型结构"

图4

染整设备类型信息模型"

图5

监控单元类型模型"

图6

染整车间实例化信息模型"

图7

丝光机实例化模型"

图8

温度监控单元实例化信息"

图9

丝光机UaModele模型"

图10

染整车间系统架构"

[1] 蒋高明, 高哲, 高梓越. 针织智能制造研究进展[J]. 纺织学报, 2017,38(10):177-183.
JIANG Gaoming, GAO Zhe, GAO Ziyue. Research advance of knitting intelligent manufacturing[J]. Journal of Textile Research, 2017,38(10):177-183.
[2] 李仁旺, 朱泽飞, 张思荣, 等. 印染企业信息化及其关键技术[J]. 纺织学报, 2006,27(2):95-97,104.
LI Renwang, ZHU Zefei, ZHANG Sirong, et al. Information technology of printing and dyeing enter-prises[J]. Journal of Textile Research, 2006,27(2):95-97, 104.
[3] 张策. 面向制造物联网的OPC UA信息模型研究与实现[D]. 武汉:华中科技大学, 2016: 2-3.
ZHANG Ce. Research and implementation of OPC UA information model towards internet of manufacturing things[D]. Wuhan:Huazhong University of Science & Technology, 2016: 2-3.
[4] 蒲宬亘. 基于OPC UA的无线现场设备服务化开放互联技术研究[D]. 重庆:重庆邮电大学, 2016: 5-6.
PU Chenggen. Research of service-oriented open interconnection technology for OPC UA based wireless field devices[D]. Chongqing: Chongqing University of Posts and Telecommunications, 2016: 5-6.
[5] 孙其博, 刘杰, 黎羴, 等. 物联网:概念、架构与关键技术研究综述[J]. 北京邮电大学学报, 2010,33(3):1-9.
SUN Qibo, LIU Jie, LI Shan, et al. Internet of things: summarize on concepts architecture and key technology problem[J]. Journal of Beijing University of Posts and Telecommunications, 2010,33(3):1-9.
[6] BECKMAN D. CIM-OSA: computer integrated manufacturing-open system architecture[J]. International Journal of Computer Integrated Manufacturing, 1989,2(2):94-105.
doi: 10.1080/09511928908944387
[7] FLORIAN Pauker, THOMAS Frühwirth, BURKHARD Kittl, et al. A systematic approach to OPC UA information model design[J]. Procedia CIRP, 2016,57:321-326.
doi: 10.1016/j.procir.2016.11.056
[8] 张兆坤, 邵珠峰, 王立平, 等. 数字化车间信息模型及其建模与标准化[J]. 清华大学学报(自然科学版), 2017,57(2):128-133,140.
ZHANG Zaokun, SHAO Zhufeng, WANG Liping, et al. Digital workshop information and its standardization[J]. Journal of Tsinghua University (Science and Technology), 2017,57(2):128-133, 140.
[9] 苏延召, 李艾华 . 基于 OPC UA 的自动化系统集成技术研究[J]. 测控技术, 2011,30(3):68-71.
SU Yanzhao, LI Aihua. The technology of automation system integration based on OPC UA[J]. Measurement & Control Technology, 2011,30(3):68-71.
[10] SALVATORE Cavalieri, MARCO Giuseppe Salafia, MARCO Stefano Scroppo. Integrating OPC UA with web technologies to enhance interoperability[J]. Computer Standards & Interfaces, 2018,61:45-64.
[11] FERNBACH W, GRANZER W, KASTNER W. Interoperability at the management level of building automation systems: a case study for BACnet and OPC UA[C]// Emerging technologies & factory automation, 2011 IEEE 16th conference ETFA 2001. Toulouse: IEEE. 2011: 1-8.
[12] SCHLEIPEN M. OPC UA supporting the automated engineering of production monitoring and control sys-tems[C]// 2008 IEEE international conference on emerging technologies and factory automation. Hamburg: IEEE, 2008: 640-647.
[13] 邱云, 季振山, 张祖超, 等. 基于OPC UA技术的Labview与PLC通信[J]. 计算机系统应用, 2017,26(2):231-234.
QIU Yun, JI Zhenshan, ZHANG Zuchao, et al. Communication between labview and PLC based on OPC UA[J]. Computer Systems & Applications, 2017,26(2):231-234.
[14] OPC UA Specification Part 3: Address Space Model Release Candidate Version 1.00[EB/OL]. 2006- 07- 28. http://www.opcfoundation.org/UA/Part3.
[15] 江城, 张英俊, 谢斌红. OPC UA信息建模:煤矿监控系统集成案例研究[J]. 电脑开发与应用, 2014,27(10):1-4.
JIANG Cheng, ZHANG Yingjun, XIE Binhong. OPC UA information modeling: a case study of coal mine supervisory control system[J]. Computer Development & Applications, 2014,27(10):1-4.
[16] 王民, 曹鹏军, 宋铠钰, 等. 基于OPC UA的数控机床制造数字化车间信息交互模型[J]. 北京工业大学学报, 2018,44(7):1040-1046.
WANG Min, CAO Pengjun, SONG Kaiyu, et al. Information interaction model of digital workshop based on OPC UA for CNC machine tools manufacturing[J]. Journal of Beijing University of Technology, 2018,44(7):1040-1046.
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