Valid

GB/T 23025-2024Integration of informatization and industrialization management systems—Classification and application guidelines for production equipment operation control information models (English PDF)

信息化和工业化融合管理体系 生产设备运行管控信息模型分类与应用指南

Open the GB/T 23025-2024 preview as PDF

Preview — first pages of GB/T 23025-2024 (full document: 31 pages)

This is a limited preview

Buy now to download the full PDF (31 pages)

Issued by

SAMR; SAC

Level / Type

National · Recommended

Issue date

November 28, 2024

Implementation date

March 1, 2025

Scope

GB/T 23025-2024 is the English-translated version of 信息化和工业化融合管理体系 生产设备运行管控信息模型分类与应用指南.

GB/T 23025-2024 is the Chinese national standard covering the data model a factory uses to describe how its production equipment is run and monitored — the functional architecture of operation control and the common interface between its function modules, the main types of information model and the entity set, the description rules and the entity relationship network that lets two systems refer to the same machine, and the object, capability, process and rule types that carry the definitions. First edition, under the Ministry of Industry and Information Technology. In force from 1 March 2025. Issued on 28 November 2024, it has been in force since 1 March 2025.

Document preview — GB/T 23025-2024

National Standard of the People's Republic of China

ICS
35.240
Classification
L 57

Issued by: State Administration for Market Regulation; Standardization Administration of the PRC

Contents

  • PrefaceIII
  • IntroductionIV
  • 1 Scope1
  • 2 Normative references1
  • 3 Terms and Definitions1
  • 4 Abbreviations2
  • 5 Functional architecture of production equipment operation control2
  • 5.1 Overall framework of production equipment operation control function architecture2
  • 5.2 General interface of production equipment operation control function module2
  • 5.3 Production Equipment Operation Control Functional Architecture Layer 14
  • 5.4 Production Equipment Operation Control Functional Architecture Layer 25
  • 6 Classification of production equipment operation control information model8
  • 6.1 Main types of production equipment operation control information models8
  • 6.2 General information entity set for production equipment operation control9
  • 6.3 General information entity description rules for production equipment operation control10
  • 6.4 General information entity relationship network for production equipment operation control11
  • 7 Definition of production equipment operation control information model13
  • 7.1 Overview13
  • 7.2 Object Types13
  • 7.3 Capability Types17
  • 7.4 Process Types19
  • 7.5 Rule Types24
  • 8 Application of production equipment operation control information model28
  • References29

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for standardization work Part 1: Structure and drafting rules for standardization documents" Drafting is required.

Please note that some of the contents of this document may involve patents. The issuing organization of this document does not assume the responsibility for identifying patents.

This document was proposed by the Ministry of Industry and Information Technology of the People's Republic of China.

This document is under the jurisdiction of the National Technical Committee for Standardization of Information and Industrialization Integration Management (SAC/TC 573).

This document was drafted by: National Industrial Information Security Development Research Center, Tsinghua University, SINOMACH Intelligent Technology Research Institute Co., Ltd., China Aviation Manufacturing Technology Research Institute, Saisheng Digital Economy Research Center (Shenzhen) Co., Ltd., China Aviation Comprehensive Technology Research Institute, Beijing Aviation University of Aeronautics and Astronautics, Chengdu Aircraft Industry (Group) Co., Ltd., Xuzhou Xugong Excavator Co., Ltd., Shandong Inspur Intelligent Production Technology Co., Ltd., Jiangsu Lianhuan Pharmaceutical Co., Ltd., Industrial Cloud Manufacturing (Sichuan) Innovation Center Co., Ltd., Zhejiang Huagan Technology Co., Ltd.

Hangzhou Jikeyun Network Technology Co., Ltd., Qingdao Yanbo Data Information Technology Co., Ltd., Wuhan Yinianyuan Environmental Technology Co., Ltd., Dezhong (Shenzhen) Laser Intelligent Technology Co., Ltd., Huizhou Huaying Electronic Technology Co., Ltd., Chengdu Delisi Industrial Co., Ltd., Zhuhai Qu Printing Technology Co., Ltd., Shanghai Yu'ang Water-based New Materials Technology Co., Ltd., Shenzhen Kuludi Machinery Equipment Co., Ltd., Dalian Kangfeng Technology Co., Ltd., Dalian Medela Industrial Automation Co., Ltd., Heze Smart Water Co., Ltd., Shandong Future Network Research Institute (Purple Mountain Laboratory Industrial Internet Innovation and Application Base), Hubei Huazhong Electric Power Technology Development Co., Ltd., Henan Xuji Instrument Co., Ltd.

Company, Zhuhai Xuji Electric Co., Ltd., Hunan Visionbit Robotics Co., Ltd., State Grid Beijing Electric Power Company Electric Power Research Institute, State Grid Jibei Electric Power Co., Ltd. Intelligent Distribution Network Center, Shenzhen Xintianze Fire Engineering Co., Ltd., Longjian Science and Technology (Heilongjiang) Co., Ltd.

Ltd., Longnan Dingtai Electronic Technology Co., Ltd., Shanxi Yangmei Chemical Machinery (Group) Co., Ltd., Tianjin Optoelectronics Jueneng Communication Co., Ltd.

Ltd., CISDI Information Technology (Chongqing) Co., Ltd., Shenzhen Hualong Xunda Information Technology Co., Ltd., Hangzhou Baizijian Technology Co., Ltd. Limited company.

The main drafters of this document are: Li Jun, Zhou Yong, Dou Keqin, Li Qing, Liu Jinsong, Tang Yiqiang, Xu Shunyi, Lü Haiyang, Zhang Jiaye, Ning Xinze, Miao Jianjun, Xiao Wenlei, Deng Dong, Zhang Xunbing, Tu Bin, Hu Changkun, Zhang Jifeng, Liu Botao, Lu Wuping, Yuan Zhigang, Liu Yi, Chen Yunpeng, Feng Wei, He Shengmao, Wang Linbo, Tang Wei, Guo Jinpeng, Wang Yu, Wang Xiaonan, Ren Chunhua, Yan Zhiyong, Zhao Xiaoyi, Liang Xinye, Zhang Hui, Feng Jun, Zhao Zhenjiang, Liu Qi, Kong Qunjing, Zhang Wei, Hu Lu, Qiu Shuwei, Zhang Lu, Ren Yougang, Cai Huimin, Ren Fengjun, Yan Hongsheng, Wang Jinglei, Bi Shunli, Yang Bo, Hu Lihua, Long Xiaoang, Ge Ming.

Introduction

With the deep integration of new generation information technology and manufacturing, the value of industrial information models is becoming increasingly apparent, helping enterprises Various innovative development models such as collaborative interaction in R&D design, dynamic optimization of production and manufacturing, and remote control of operation and maintenance services have become a driving force for manufacturing.

The key factor for high-quality development of the industry.

Production equipment is the basic carrier of manufacturing activities and the core asset of manufacturing enterprises. Its operation and management level directly affects the production, Under the background of continuous improvement in the digitalization, networking and intelligence of production equipment, the operation of production equipment The level of information management and application in production control activities determines to a certain extent the effectiveness of the production equipment asset value.

Scientific management, model building and efficient application of production equipment operation control information have become the key to promoting the steady improvement of production equipment operation control level.

An effective means of upgrading.

The production equipment operation control information model refers to a model that abstractly expresses and organizes the information related to the production equipment operation control.

It is mainly used to standardize the description of information entities, entity attributes and relationships between entities involved in production equipment operation control activities.

It plays an important supporting role in the production planning and scheduling, process route planning and equipment operation and maintenance of the industry.

The classification and application of production equipment operation control information models are carried out to support the coordinated interaction and Efficient utilization will help enterprises improve their digital operation and control capabilities of production equipment and accelerate digital transformation and high-end development.

Management system integrating informatization and industrialization Classification and application of production equipment operation control information model Application Guide

1 Scope

This document gives the functional architecture of production equipment operation control, and provides the main types and descriptions of the production equipment operation control information model.

Rules, specific definitions and application guidance.

This document is applicable to manufacturing enterprises to classify and apply production equipment operation control information models, and to carry out production equipment research and development.

It provides reference and basis for equipment manufacturers, manufacturing enterprises, technical service providers, scientific research institutes, etc. for manufacturing, application management and operation maintenance.

2 Normative references

GB/T 23021-2022

GB/T 23022-2022

3 Terms and definitions

The terms and definitions defined in GB/T 23021-2022, GB/T 23022-2022 and the following apply to this document.

3.1 Information model

An organizational framework for defining, describing, and relating given information resources, covering information entities, entity attributes, and relationships between entities. System network.

[Source. GB/T 33863.1-2017, 3.2.12, modified]

3.2 information entity

The basic unit in the information model that exists objectively and has unique semantics, used to represent specific things in the real world or abstract concepts in human thinking. Elephant concept.

3.3 Production equipment operation control

In order to ensure that the production equipment operates stably and efficiently under the specified working conditions, a series of management measures and control methods are adopted to Activities that systematically plan, organize, coordinate and control all aspects of equipment operation, monitoring, repair and maintenance.

3.4 Production equipment operation control information model

Abstractly express and organize relevant information entities, entity attributes, and relationship networks between entities in production equipment operation control activities Management model.

......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 31 pages — is available in the English PDF.

Referenced standards

Editions of GB/T 23025

EditionTitleRevisionStatus
GB/T 23025-2024Integration of informatization and industrialization management systems - Classification and application guidelines for production equipment operation control information modelscurrent editionCurrent

This page sells the current edition, GB/T 23025-2024. Earlier editions are listed for reference only.

How to Buy GB/T 23025-2024

  1. 1Add to cart. Click the "Buy GB/T 23025-2024" button on this page. You can add more standards before checkout.
  2. 2Checkout. Enter your email and billing details. Payment is processed securely by Stripe (cards, Apple Pay, Google Pay supported).
  3. 3Instant delivery (0–9 sec). Delivery is automatic: within seconds of payment you'll receive an email with a secure download link. The link stays valid for 72 hours.
  4. 4Invoice included. A tax invoice is attached to the confirmation email. Need a custom invoice? Contact us.

Related Standards

English PDF
31 pages
Instant delivery (0–9 sec)
Invoice included
View Cart

Secure payment via Stripe

Payments accepted

VisaMastercardAmerican ExpressApple PayGoogle PayStripe

GB/T 23025-2024

$560.00

$475.00for partners