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BSI PD ISO/IEC TR 63306-1:2020:2021 Edition

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Smart manufacturing standards map (SM2) – Framework

Published By Publication Date Number of Pages
BSI 2021 90
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This document describes the framework and the vocabulary that are used for the development of entries in the Smart Manufacturing Standards Map Catalogue. These enable the mapping and linking of standards and standard projects related to various aspects of smart manufacturing (product, production, supply chain, industrial services …).

The framework applies to international standards, de facto standards and consortium specifications; publications or projects; thereafter named “standards”.

The framework part (Clauses 4) briefly describes the principle of structuring the standards catalogue and its use for analysing the standards landscape.

The vocabulary part (Clauses 5 to 13) specifies the characteristics that are used for the classification of standards.

NOTE The vocabulary is not universal but is the best effort to name the concepts used in different domains.

PDF Catalog

PDF Pages PDF Title
2 undefined
4 CONTENTS
10 FOREWORD
12 INTRODUCTION
13 1 Scope
2 Normative references
3 Terms and definitions
4 Principle of the Smart Manufacturing Standards Map (SM2)
4.1 Framework
14 4.2 SM2 Catalogue
Figures
Figure 1 – Principle of the SM2 Framework
15 Figure 2 – Example of populated SM2 Catalogue
16 4.3 Graphical representations
17 Figure 3 – Example mapping of product catalogue data standards
18 Figure 4 – Example mapping structure for production system standards
19 Figure 5 – Example chart “Production system cube” with standard numbers
20 Figure 6 – Example chart “Production system cube” with short title
21 Figure 7 – Example 2D chart with standard numbers
22 Figure 8 – Example 2D chart with short title
23 5 Overview of the SM2 Vocabulary
5.1 Summary of characteristics and blocks
Tables
Table 1 – Block “Identification”: sub-blocks and characteristics
Table 2 – Block “Object”: sub-blocks and characteristics
24 Table 3 – Block “Hierarchy”: sub-blocks and characteristics
Table 4 – Block “Life cycle”: sub-blocks and characteristics
25 Table 5 – Block “Interoperability”: sub-blocks and characteristics
Table 6 – Block “System engineering process”: sub-blocks and characteristics
26 5.2 Values of the characteristics
5.3 Qualifier
Table 7 – Block “Relevance to SM”: sub-blocks and characteristics
Table 8 – Block “Validation”: sub-blocks and characteristics
27 6 Block “Identification”
6.1 Composition
6.2 Qualifier
Table 9 – Composition of the block “Identification”
28 6.3 Sub-block “Reference”
6.3.1 Characteristic “Status”
6.3.2 Characteristic “Standard number”
6.4 Sub-block “Publication”
6.4.1 Characteristic “Edition”
6.4.2 Characteristic “Publication date”
Table 10 – Possible values of “Status”
29 6.5 Sub-block “Project”
6.5.1 Characteristic “Project number”
6.5.2 Characteristic “Forecast publication date”
6.6 Sub-block “Owner”
6.6.1 Characteristic “Organization”
6.6.2 Characteristic “Committee number”
30 6.6.3 Characteristic “Committee title”
6.7 Sub-block “ICS”
6.7.1 Characteristic “International Classification for Standards”
31 6.7.2 Other characteristics
6.8 Sub-block “Title”
6.8.1 Characteristic “Standard title”
6.8.2 Characteristic “Standard short title”
32 7 Block “Object”
7.1 Composition
7.2 Qualifier
7.3 Sub-block “Type of standard”
7.3.1 Description
7.3.2 Characteristics
Table 11 – Composition of the block “Object”
33 Table 12 – Characteristics of “Type of standard”
34 7.4 Sub-block “Type of object”
7.4.1 Description
7.4.2 Characteristics
Table 13 – Characteristics of “Type of object”
35 7.5 Sub-block “Manufacturing process type”
7.5.1 Description
36 7.5.2 Characteristics
8 Block “Hierarchy”
8.1 Composition
Table 14 – Characteristics of “Manufacturing process type”
37 8.2 Qualifier
8.3 Sub-block “Equipment hierarchy”
8.3.1 Description
8.3.2 Characteristics
Table 15 – Composition of the block “Hierarchy”
Table 16 – Characteristics of “Equipment hierarchy”
39 8.4 Sub-block “Functional hierarchy”
8.4.1 Description
8.4.2 Characteristics
40 9 Block “Life cycle”
9.1 Composition
Table 17 – Characteristics of “Functional hierarchy”
41 9.2 Qualifier
9.3 Sub-block “Product type life cycle”
9.3.1 Description
Table 18 – Composition of the block “Life cycle”
42 9.3.2 Characteristics
Figure 9 – Product type life cycle
43 9.4 Sub-block “Product instance life cycle”
9.4.1 Description
9.4.2 Characteristics
9.5 Sub-block “Production system life cycle”
9.5.1 Description
Table 19 – Characteristics of “Product type life cycle”
Table 20 – Characteristics of “Product instance life cycle”
44 9.5.2 Characteristics
10 Block “Interoperability”
10.1 General
Figure 10 – GERA life cycle phases
Table 21 – Characteristics of “Production system life cycle”
45 10.2 Composition
10.3 Qualifier
10.4 Sub-block “Interoperability approach”
10.4.1 Description
10.4.2 Characteristics
Table 22 – Composition of the block “Interoperability”
46 Table 23 – Characteristics of “Interoperability approach”
47 10.5 Sub-block “Interoperability concern”
10.5.1 Description
10.5.2 Characteristics
Table 24 – Characteristics of “Interoperability concern”
48 10.6 Sub-block “Interoperability layer”
10.6.1 Description
10.6.2 Characteristics
11 Block “System engineering process”
11.1 General
Table 25 – Characteristics of “Interoperability layer”
49 11.2 Composition
Table 26 – Composition of the block “System engineering process”
50 11.3 Qualifier
11.4 Sub-block “Agreement processes”
11.4.1 Description
11.4.2 Characteristics
Table 27 – Characteristics of “Agreement processes”
51 11.5 Sub-block “Organizational project-enabling processes”
11.5.1 Description
11.5.2 Characteristics
11.6 Sub-block “Technical management processes”
11.6.1 Description
11.6.2 Characteristics
Table 28 – Characteristics of “Organizational project-enabling processes”
52 11.7 Sub-block “Technical processes”
11.7.1 Description
11.7.2 Characteristics
Table 29 – Characteristics of “Technical management processes”
53 12 Block “Relevance to SM”
12.1 Composition
Table 30 – Characteristics of “Technical processes”
54 12.2 Qualifier
12.3 Characteristic “Relevance level”
12.4 Characteristic “Motivation”
13 Block “Validation”
13.1 Composition
Table 31 – Composition of the block “Relevance to SM”
Table 32 – Possible values of “Relevance level”
55 13.2 Qualifier
13.3 Characteristics specification
Table 33 – Composition of the block “Validation”
56 Annex A (informative)Compilation of definitions of smart manufacturing
62 Annex B (informative)Life cycles
Figure B.1 – Product type life cycle
63 Figure B.2 – Versions of a product type
Figure B.3 – Product type improvement
64 Figure B.4 – Product instance life time
Figure B.5 – Product instance and product type
65 Figure B.6 – Production system life cycle
Figure B.7 – The user and the external actors
Figure B.8 – From the design to maintenance
66 Figure B.9 – Spare component discontinued
Figure B.10 – Supply chain life cycle
67 Table B.1 – Possible values of “RAMI4.0 Life cycle”
68 Table B.2 – Possible values of “IMSA Life cycle”
69 Annex C (informative)Hierarchies
Table C.1 – Possible values of “Equipment hierarchy”
70 Table C.2 – Possible values of “Functional hierarchy”
71 Table C.3 – Possible values of “SGAM Zones”
72 Figure C.1 – RAMI4.0 Hierarchy
Table C.4 – Possible values of “RAMI4.0 Hierarchy level”
73 Table C.5 – Possible values of “IMSA System hierarchy”
74 Table C.6 – Mapping on legacy hierarchies on the equipment hierarchy
75 Table C.7 – Mapping on legacy hierarchies on the equipment hierarchy
76 Annex D (informative)Interoperability
Table D.1 – Possible values of “Interoperability barrier”
78 Table D.2 – Interoperability categories defined by GWAC
79 Figure D.1 – Grouping into interoperability layers
Table D.3 – Possible values of “SGAM Interoperability Layers”
80 Table D.4 – Possible values of “RAMI4.0 Layer”
83 Table D.5 – Possible values of “IMSA Intelligent characteristics”
84 Annex E (informative)Big Picture history
Figure E.1 – Standards landscape
86 Figure E.2 – History of the Big Picture project
87 Bibliography
BSI PD ISO/IEC TR 63306-1:2020
$215.11