BSI PD ISO/TR 20123:2023
$215.11
Automation systems and integration. Industrial data. Nuclear digital ecosystem specifications
Published By | Publication Date | Number of Pages |
BSI | 2023 | 96 |
PDF Catalog
PDF Pages | PDF Title |
---|---|
2 | undefined |
7 | Foreword |
8 | Introduction |
9 | 1 Scope 2 Normative references 3 Terms, definitions and abbreviated terms 3.1 Terms and definitions |
12 | 3.2 Abbreviated terms |
14 | 4 Overview of the nuclear industry 4.1 Nuclear fuel cycle 4.2 Nuclear power plant (NPP) safety leadership and management |
16 | 4.3 Differences between nuclear industry and other industries |
17 | 5 Review of national reports 5.1 General |
18 | 5.2 New build 5.3 Operations and maintenance (O&M) |
19 | 5.4 Decommissioning 5.5 Summary of national reports |
20 | 5.6 High level requirements and some generic use cases 5.7 Business case based on the adoption of industrial data standards |
21 | 6 Framework for enterprise interoperability 6.1 General |
22 | 6.2 Generic barriers to interoperability 6.2.1 General 6.2.2 Organizational |
23 | 6.2.3 Methodology and technology 6.2.4 Semantics 6.3 Nuclear industry specific barriers to interoperability |
24 | 6.4 Cybersecurity 6.4.1 General 6.4.2 Main cybersecurity challenges |
25 | 6.4.3 Main applicable security regulations, norms and standards 6.5 Maturity roadmap 7 Fundamental pillars of a nuclear digital ecosystem (NDE) 7.1 General |
26 | 7.2 Configuration management (CM) |
27 | 7.3 Requirements management |
28 | 7.4 Breakdown structure management |
31 | 7.5 Reference data management |
32 | 8 Model-based systems engineering (MBSE) and standardized industrial models 8.1 Systems engineering and model-based systems engineering (MBSE) |
33 | 8.2 Standardized industrial models 8.2.1 General |
34 | 8.2.2 ISO 15926 series |
36 | 8.2.3 ISO 10303 series |
38 | 8.2.4 BIM standards for the build environment |
39 | 9 Advanced methodologies and technologies for model-based systems engineering (MBSE) 9.1 General 9.2 Property modelling |
41 | 9.3 Process modelling |
42 | 9.4 Semantic modelling of reference data 9.5 Knowledge representation 9.6 Data quality |
43 | 9.7 3-D geometry and topology 9.8 Digital twin (DT) |
45 | 9.9 Long term archiving (LOTAR) |
46 | 9.10 Alternative methods, standards and tools to be explored 10 Proposed strategy and high-level road map 10.1 General |
47 | 10.2 Proposed strategy |
48 | 10.3 Strategic structured roadmap for future standards development 10.3.1 General |
49 | 10.3.2 Strong, simple, shared framework |
50 | 10.3.3 Methodology of application 10.3.4 Technical guidelines 10.3.5 Future work items |
51 | 10.4 Orientation for managers and practitioners of the nuclear industry 10.4.1 General 10.4.2 Systems engineering |
52 | 10.4.3 Methods and knowledge representation 10.4.4 Impact of digital technology on standards for the nuclear ecosystem |
53 | Annex A (informative) Nuclear power in China |
60 | Annex B (Informative) Nuclear power in France |
65 | Annex C (informative) Nuclear power in Japan |
69 | Annex D (informative) Nuclear power in the Netherlands |
77 | Annex E (informative) Nuclear power in the Republic of Korea |
79 | Annex F (informative) Nuclear power in the United Kingdom |
82 | Annex G (informative) Nuclear power in the United States of America (USA) |
90 | Bibliography |