Standard is the universal language for international cooperation and connectivity development and the technological foundation of global governance system as well as economic and trade cooperation. Promoting Chinese standards to “go global”faster to serve policy communication, infrastructure connectivity, trade facilitation, capital flows and people-to-people exchange, is of great significance to promote the building of “Belt and Road” Initiative. Bearing this in mind, State Grid has attached great importance to the development of international standards and Chinese electric engineering technologies and standards to become international standards so as to improving the influence and say of China in international electric engineering industry. In May, 2013, Standardization Administration of the People’s Republic of China awarded State Grid with the title of “International Standardization Innovation Demonstration Base” as a recognition and encouragement of our efforts in the area. Since 2009, State Grid has registered 53 and 25 international standards in IEC and IEEE respectively, in which 42 have been officially released. Besides, State Grid has also initiated and established 18 technological report work groups in CIGRE.
- The IEC standard formulated by the company/
- IEC MSB white paper and technical report/
- IEEE standards established by the company/
- CIGRE technical report formulated by the company
No. | Trad Number | Trad Name |
---|---|---|
1 | IEC TS 61973 | High voltage direct current (HVDC) substation audible noise |
2 | IEC TS 62344 | Design of earth electrode stations for high-voltage direct current (HVDC) links - General guidelines |
3 | IEC PAS 62746-10-1 | Systems interface between customer energy managment system and the power management system - Part 10-1:Open automated demand response |
4 | IEC TR 62681 | Electromagnectic Environment Criterion for High-voltage Direct Current (HVDC) Overhead Transmission Lines |
5 | IEC TR 62939-1/TR 62939-2 | Smart grid user interface - Part 1: Interface overview and country perspectives/Smart Grid User Interface –Part 2: An architecture and requirements |
6 | IEC TS 62910 | Utility-interconnected photovoltaic inverters - Test procedure for low voltage ride-through measurements |
7 | IEC TS 62840-1 | Electric vehicle battery swap system–Part 1: General and guidance |
8 | IEC TS 61970-555 | Energy management system application program interface (EMS-API) –Part 555: CIM based efficient model exchange format (CIM/E) |
9 | IEC TS 61970-556 | Energy management system application program interface (EMS-API) –Part 556: CIM based graphic exchange format (CIM/G) |
10 | IEC 61975 | High-voltage direct current (HVDC) installations - System tests |
11 | IEC 62840-2 | Electric vehicle battery swap system –Part 2: Safety requirements |
12 | IEC TS 62786 | Distributed Energy Resources Interconnection with the Grid |
13 | IEC SEG 6 | Final Report of IEC System Evaluation Group 6 Non-conventional Distribution Networks/Microgrids |
14 | IEC TS 63066 | Low-voltage docking connectors for removable energy storage units |
15 | IEC 60051-1 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 1: Definitions and general requirements common to all parts |
16 | IEC 60051-2 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 2: Special requirements for ammeters and voltmeters |
17 | IEC 60051-3 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 3: Special requirements for wattmeters and varmeters |
18 | IEC 60051-4 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 4: Special requirements for frequency meters |
19 | IEC 60051-5 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 5: Special requirements for phase meters, power factor meters and synchroscopes |
20 | IEC 60051-6 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 6: Special requirements for ohmmeters (impedance meters) and conductance meters |
21 | IEC 60051-7 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 7: Special requirements for multi-function instruments |
22 | IEC 60051-8 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 8: Special requirements for accessories |
23 | IEC 60051-9 | Direct acting indicating analogue electrical measuring instruments and their accessories. Part 9: Recommended test methods |
24 | IEC TS 60076-23 | Power transformers-Part 23:DC magnetic bias suppression devices |
25 | IEC TR 63127 | Guideline for the system design of HVDC converter stations with line-commutated converters |
26 | IEC TR 63065 | Guidelines for operation and maintenance of line commutated converter(LCC) HVDC converter station |
27 | IEC TR 63179-1 | Guideline for planning of HVDC systems-Part 1:HVDC systems with line-commutated converters |
28 | IEC 62934 | Grid Integration of Renewable Energy Generation- Terms, Definitions and Symbols |
29 | IEC TR 63043 | Renewable Energy Power Forecasting Technology |
30 | IEC TS 63102 | Grid code compliance assessment methods for grid connection of wind and PV power plants |
31 | IEC 63119-1 | Information exchange for Electric Vehicle charging roaming service –Part 1: General |
32 | IEC 63119-2 | Information exchange for Electric Vehicle charging roaming service – Part 2: Use cases |
33 | IEC 63119-3 | Information exchange for Electric Vehicle charging roaming service –Part 3: Message Structure |
34 | IEC 63119-4 | Information exchange for Electric Vehicle charging roaming service –Part 4: Cybersecurity and information privacy |
35 | IEC TS 63222 | System aspects for electrical energy supply |
36 | IEC TR 115-27 | Performance of voltage sourced converter based high-voltage direct current transmission,Part 1: Steady state |
37 | IEC 63189-1 | Virtual Power Plants- Part 1: Architecture and Functional Requirements |
38 | IEC TS 63189-2 | Virtual Power Plants – Part2: Use Cases |
39 | IEC TR 61850-90-22 | Communication networks and systems for power utility automation – Part 90-22: SCD based substation network auto-routing with visualization and supervision support |
40 | IEC TR 8-2 | Assessment of standard voltages and power quality requirements for LVDC distribution |
41 | IEC 63198 | Technical Guide for Smart Hydroelectric Power Plant |
42 | IEC 60477 ED2 | Laboratory d.c. reisistor |
43 | IEC 60477-2 ED2 | Laboratory resistors. Part 2: Laboratory a.c. resistors |
44 | IEC TR 63262 | Performance of unified power flow controller (UPFC)in electric power systems |
45 | IEC TS 63276 | Guideline for the hosting capacity evaluation of distribution networks for distributed generations |
46 | IEC 60050 | International Electrotechnical Vocabulary (IEV) - Part 447: Measuring relays and protection equipment |
47 | IEC TS 63042-101 | UHV AC transmission systems – Part 101: Voltage regulation and insulation design |
48 | IEC TS 63042-201 | UHV AC Substation Design |
49 | IEC TS 63042-301 | UHV AC transmission systems - Part 301: On-site acceptance tests |
50 | IEC TS 63042-102 | UHV AC transmission systems-General systems design |
51 | IEC TS 63042-202 | UHV AC UHV AC Transmission-Line design |
52 | IEC TS 63042-302 | UHV AC transmission systems–Part 302:Commissioning |
53 | IEC TR 63042-303 | Guideline for the measurement of UHV AC transmission line power frequency parameters |