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Industrial automation systems and integration -- Functional architecture of manufacturing execution system
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GB/T 25485-2010
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Basic data | Standard ID | GB/T 25485-2010 (GB/T25485-2010) | | Description (Translated English) | Industrial automation systems and integration -- Functional architecture of manufacturing execution system | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | J07 | | Classification of International Standard | 35.240.50 | | Word Count Estimation | 61,611 | | Date of Issue | 2010-12-01 | | Date of Implementation | 2011-05-01 | | Quoted Standard | GB/T 19892.1-2005 | | Regulation (derived from) | National Standard Approval Announcement 2010 No.9 (Total No.164) | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | | Summary | This standard specifies the manufacturing execution system (hereinafter referred to as MES) is defined in the entire manufacturing enterprise integrated systems, main functions of MES, hierarchical system of classification, MES generic functional architecture. And provides a reference sample of actual companies MES. This standard applies to the guidance of MES software product development, selection and integration with other systems, can be used as selection or evaluation of enterprise MES systems, foundational basis for system implementation and system integration time. The target user of this standard include: MES system product development organization, MES systems using tissue, independent software testing organizations, MES implementation and consulting services and software industry associations, regional information industry department and so on. |
GB/T 25485-2010: Industrial automation systems and integration -- Functional architecture of manufacturing execution system ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Industrial automation systems and integration. Functional architecture of manufacturing execution system
ICS 35.240.50
J07
National Standards of People's Republic of China
Industrial automation systems and integration
Manufacturing Execution System Functional architecture
Issued on. 2010-12-01
2011-05-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Introduction Ⅲ
Introduction Ⅳ
1 Scope 1
2 Normative references 1
3 Terms and definitions
4 MES definitions 6
5 MES functional level Definition 6
5.1 Functional description 6 levels
5.2 The main activities of Manufacturing Execution layer 7
5.3 interaction between the various levels of production information 7
6 MES functional architecture 9
6.1 Functional Architecture Model 9
6.2 Production Management Model 10
The main function of the model affect the production of 19 6.3
Other features affecting production model 6.4 23
MES architecture Appendix A (Informative Appendix) AMR 26
MES architecture Appendix B (Informative Appendix) MESA 29
Industry characteristics Appendix C (Informative Appendix) MES functionality 32
Annex D (informative) discrete industries MES Solution Reference Example 36
Annex E (informative) Process industry MES Solution Reference Example 44
References 55
1 manufacturing enterprises functional level 6
Figure 2 interactive production information 7
Figure 3 MES functional architecture model 9
4 Production Management Model 10
Interactive product definition information management module Figure 5 11
Information resource management module 6 interaction 12
Information exchange 7 production scheduling module 13
8 production dispatch module interactive information 14
Figure 9 operating information management module interaction 15
10 data collection module 16 of the information exchange
11 production tracking module interactive information 17
Information exchange 12 18 Performance Analysis Module
13 production statistics module information exchange 19
14 "production, maintenance, quality, inventory," the interaction between information 22
Three-layer structure model in Figure A.1 MES 26
Figure A.2 MES integrated system model 27
Figure A.3 REPAC model 28
Figure B.1 MES external system model 29
Figure B.2 MES functional model 30
Figure D.1 A2MES overall function of the frame 36
Figure D.2 A2MES system topologies 36
Figure D.3 factory modeling and business process definitions subsystem functional framework 37
Figure D.4 data preparation and maintenance subsystem functional framework 38
Figure D.5 production management subsystem functional framework 39
Figure D.6 plant material management subsystem functional framework 39
Figure D.7 Data Acquisition Management Subsystem functional framework 40
Figure D.8 production process monitoring subsystem functional framework 41
Figure D.9 quality information management subsystem functions framework 42
Figure D.10 plant equipment management subsystem functional framework 43
Figure D.11 system management framework 43
Figure E.1 MES-Suite architecture 44
Figure E.2 based data modeling tool 45
Figure E.3 material balance technology architecture 46
Figure E.4 run performance measures and analytical framework 47
Figure E.5 production quality management functional block 48
Figure E.6 equipment maintenance management function block diagram 49
Figure E.7 energy metering management functional block 50
Figure E.8 material movement schematic 51
Figure E.9 production scheduling system functional flow diagram 52
Figure E.10 product mix system architecture diagram 53
Foreword
The Standard Appendix A, Appendix B, Appendix C, Appendix D and Appendix E are informative appendices.
The standard proposed by China Machinery Industry Federation.
The standard automation systems and integration by the National Standardization Technical Committee (SAC/TC159) centralized.
This standard is mainly drafted by. Zhejiang University Intelligent Systems and Control Research Institute, Beijing Institute of Machinery Industry Automation.
Participated in the drafting of this standard. Zhejiang Software Technology Co., Ltd., Chinese Academy of Sciences Institute of Software, Huazhong University of Science and Technology, Dalian Polytechnic University
Science, CIMS Engineering Research Center of Tsinghua University, PCITC Information Technology Co.
The main drafters of this standard. SU Hongye, Xiao Yong force, Rong Gang, Wang Hongan, Miao Yu, Zhang Guojun, Liu Bing, Chen Qinghong, Huang Shuangxi, Lu Yi,
Liu Wei, Sun Jie incense.
This standard was first formulated.
Introduction
The purpose of this standard is to build a manufacturing execution system (hereinafter referred to as MES) functional architecture, a manufacturing execution system with other tube
The relationship between the management information system, to build a MES system functions provide the basis for an integrated system to provide the technical framework.
The main contents of this standard include. Chapter 1 Scope; Chapter 2 Normative references; Chapter 3 Terms and definitions; Chapter 4
The definition of MES; Chapter 5 MES level function definitions; Chapter 6 MES functional architecture; and five appendices, which were introduced
MES architecture of his organization, industry characteristics MES functions, as well as the reference sample enterprise MES actual product.
This standard is the theoretical stage and integrate information on MES data for practical application of industrial enterprises, in line with domestic
Status and manufacturing systems development and implementation of the implementation of demand for industrial automation level.
This standard and other national standards GB/T 18757-2008 "industrial automation systems Enterprise Reference Architecture and Method of recommendations
On demand "supporting the use. These two standards for promoting China's manufacturing enterprises information technology standardization and enterprise modeling is important.
Industrial automation systems and integration
Manufacturing Execution System Functional architecture
1 Scope
This standard defined the manufacturing execution system (hereinafter referred to as MES) is defined in the entire manufacturing enterprises integrated systems, MES main
Level classification function, system, MES general functional architecture, and provides a reference example of the actual business of MES. This standard applies
To guide integrated MES software product development, selection and with other systems, as companies choose to or comment MES system, system implementation and
Fundamental basis of system integration time.
The standard target users include. MES system product development organization, MES System organizations, independent software testing organization,
MES implementation and consulting services and software industry associations, the regional information industry department and so on.
2 Normative references
The following documents contain provisions which, through reference in this standard and become the standard terms. For dated references, subsequent
Amendments (not including errata content) or revisions do not apply to this standard, however, encourage the parties to the agreement are based on research
Whether the latest versions of these documents. For undated reference documents, the latest versions apply to this standard.
GB/T 19892.1-2005 Batch Control Part 1. Models and Terminology (IEC 61512-1.1997, IDT)
3 Terms and Definitions
The following terms and definitions apply to this standard.
3.1
Abstract abstraction
Narrowing the time or space without prejudice to perception, it used to distinguish between the objective world and objective world model.
3.2
Activities activity
All or part of the function.
Note. The business activities performed by companies who consume inputs and rationing time and resources to produce the output of the basic task of composition.
3.3
Area (field) area
Combined into one physical, geographical, or logical determined by the place.
Note. It may contain process units, production units and production lines.
3.4
Property attribute
A description of the nature of the information entity.
3.5
Available capacity availablecapacity
Production capacity can be achieved partially, but not committed for the current or future production.
3.6
Behavior behavior
Integral part of the way of action or reaction system or to fulfill a function taken.
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