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| GB/T 35702.1-2017 | English | 494 |
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Power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems -- Part 1: General requirements
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GB/T 35702.1-2017
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Basic data | Standard ID | GB/T 35702.1-2017 (GB/T35702.1-2017) | | Description (Translated English) | Power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems -- Part 1: General requirements | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | K46 | | Classification of International Standard | 29.200; 29.240 | | Word Count Estimation | 26,285 | | Date of Issue | 2017-12-29 | | Date of Implementation | 2018-07-01 | | Regulation (derived from) | National Standards Bulletin 2017 No. 32 | | 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 |
GB/T 35702.1-2017: Power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems -- Part 1: General requirements ---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.
Power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems - Part 1. General requirements
ICS 29.200; 29.240
K46
National Standards of People's Republic of China
High voltage DC system voltage source converter valve loss
Part 1. General requirements
Powerlossesinvoltagesourcedconverter (VSC) valvesforhigh-voltagedirect
current (HVDC) systems-Part 1.Generalrequirements
(IEC 62751-1.2014, IDT)
2017-12-29 Posted
2018-07-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
China National Standardization Administration released
Directory
Foreword Ⅲ
1 Scope 1
2 Normative references 1
3 Terms and definitions 1
3.1 Converter Type 1
3.2 Semiconductor devices 2
3.3 inverter running status 2
3.4 Equipment Features 3
3.5 Other definitions 4
4 general conditions 4
4.1 Overview 4
4.2 power loss generation 5
4.3 valve loss classification 5
4.4 operating conditions 6
4.5 The actual measurement data applications 6
5 on-state loss 7
5.1 Overview 7
5.2 IGB T on-state loss 9
5.3 diode on-state loss 10
5.4 Other on-state loss of valve 10
6 DC voltage-related losses 10
7 DC capacitor loss of valve 11
8 switching loss 11
8.1 Overview 11
8.2 IGB T Switching Loss 11
8.3 diode turn-off loss 12
Other losses 13
Damping Circuit Loss 13
9.2 valve electronic circuit power loss 14
10 converter station valve total loss 14
Appendix A (Informative) HVDC converter station to determine the power loss of other equipment 16
References 20
Foreword
GB/T 35702 "HVDC system voltage source converter valve loss" is divided into the following two parts.
--- Part 1. General requirements;
--- Part 2. Modular multi-level converter.
This section GB/T 35702 Part 1.
This section drafted in accordance with GB/T 1.1-2009 given rules.
This section uses the translation method is equivalent to using IEC 62751-1.2014 "high voltage DC system voltage source converter valve loss Part 1.
General requirements".
The documents of our country that are consistent with the corresponding international documents that are normative references in this section are as follows.
--- GB/T 4023-2015 Semiconductor devices and discrete components and integrated circuits - Part 2. Rectifier diodes (IEC 60747-
2.2000, IDT);
--- GB/T 13498-2017 HVDC terms (IEC 60633.2015, MOD).
This section made the following editorial changes.
--- According to our habit of the text "R0" changed to "r0" (see 5.2 ~ 5.3).
This part is proposed by China Electrical Equipment Industry Association.
This part of the National Power Electronic Systems and Equipment Standardization Technical Committee (SAC/TC60) centralized.
This section drafted unit. Xi'an West Power System Co., Ltd., Xi'an Institute of High Voltage Electric Co., Ltd., State Grid Beijing economy
Technology Research Institute, China Southern Power Grid Research Institute Co., Ltd., Global Energy Internet Institute, Monternet Rongxin Technology Group Co., Ltd.
Company, China Southern Power Grid Co., Ltd. EHV Transmission and Maintenance Testing Center.
The main drafters of this section.Guo Ruifeng, Luo Ni, Tian Enwen, Ma Weimin, willow, Yang Xiaohui, Yang Xiaoping, Li Qiang, Sun Xiaoping, Zhou Hui,
Zhang Jinbo, Yu Qiong, Tang Jinkun, Lei Ying, Zhang Yanzhu, Ning Da Long, Peng Cheng, Le Bo, Ma Yulong, Peng Yanghan, Gao Chong, Yang Yiming, Wu Fangtao, Gao Yiming.
High voltage DC system voltage source converter valve loss
Part 1. General requirements
1 Scope
This section GB/T 35702 gives the voltage source converter (VSC) in high voltage direct current (HVDC) converter power loss
The general principle of calculation, which has nothing to do with the topology of the converter. This section Chapter 6, Chapter 8, 9.1, 9.2 and A.2.12 also applies
The dynamic brake valve (when used) is calculated for power loss and is calculated as the valve's power loss in a STATCOM
guide.
Except for the converter valve, the power loss of other equipment in the HVDC converter station is beyond the scope of this standard. Most VSC converter station
Power Loss Calculation of Several Devices and Calculation Rule of Losses in HVDC Systems Using Line Commutation Converters (LCC) in IEC 61803
similar. For methods that affect the determination of the power loss of other equipment, Appendix A gives the LCCHVDC converter station and VSCHVDC
The main difference between converter stations.
This section does not apply to the commutation converter in the HVDC system commutation converter.
2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version applies to this article
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
GB/T 29332-2012 Discretes semiconductor devices Part 9. Insulated Gate Bipolar Transistors (IGB T) (IEC 60747-
9.2007, IDT)
GB/T 34118-2017 voltage source converter for high voltage direct current system terminology (IEC 62747.2014, IDT)
IEC 60633 HVDC Terminology for high-voltage direct current (HVDC) transmis-
sion]
IEC 60747-2 Semiconductor devices - Discretes and integrated circuits - Part 2. Rectifier diodes
devices-Discretedevicesandintegratedcircuits-Part 2.Rectifierdiodes)
3 Terms and definitions
GB/T 34118-2017, GB/T 29332-2012, IEC 60633 and IEC 60747-2 as defined by the following terms and definitions
Applies to this document.
Note 1. Related terms and definitions can be found in other relevant sections of IEC /T R62543, IEC 62751-2 and IEC 60747.
Note 2. In this section, the term "insulated gate bipolar transistor" is used to indicate that the semiconductor device can be turned off. Therefore, this section also applies to such as GTO, IGCT,
ETO, IEGT and other types of turn-off semiconductor devices.
3.1 Converter Type
3.1.1
Two-level converter 2-levelconverter
The voltage between the AC terminal of the voltage source converter unit and the midpoint of the voltage source converter unit is between two independent DC voltage levels
Switching between the converter.
Note. The midpoint of the VSC cell is defined in 3.5.9.
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