GB/T 26863: Evolution and historical versions
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| GB/T 26863-2022 | English | RFQ |
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Terminology of monitoring and control system of thermal power station
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GB/T 26863-2022
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| GB/T 26863-2011 | English | RFQ |
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Terminology of monitoring and control system of thermal power station
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GB/T 26863-2011
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PDF similar to GB/T 26863-2022
Basic data | Standard ID | GB/T 26863-2022 (GB/T26863-2022) | | Description (Translated English) | Terminology of monitoring and control system of thermal power station | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | F22 | | Classification of International Standard | 01.040.29 | | Word Count Estimation | 160,183 | | Date of Issue | 2022-12-30 | | Date of Implementation | 2023-07-01 | | Older Standard (superseded by this standard) | GB/T 26863-2011 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 26863-2022: Terminology of monitoring and control system of thermal power station---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.
ICS 01.040.29
CCSF22
National Standards of People's Republic of China
Replacing GB/T 26863-2011
Thermal Power Station Monitoring System Terminology
Posted on 2022-12-30
2023-07-01 implementation
State Administration for Market Regulation
Released by the National Standardization Management Committee
table of contents
Preface I
1 Scope 1
2 Normative references 1
3 Basic terms 1
4 Control methods and levels 2
5 Measurement (sensing), instruments and actuators, intelligent tools (apparatus) 5
6 Monitoring function and system 28
7 Control function and system 32
8 Protection functions and systems 46
9 Computer Control System 52
10 Information Systems 66
11 Functional safety and cybersecurity 77
12 Credibility 92
13 Other 103
References 107
Index 109
foreword
This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules for Standardization Documents"
drafting.
This document replaces GB/T 26863-2011 "Terms for Thermal Power Station Monitoring System". Compared with GB/T 26863-2011, except for structural adjustment
In addition to editorial changes, the main technical changes are as follows.
a) Added the terms "solar thermal power station", "geothermal power station" and "biomass thermal power station" (see 3.5~3.7), and deleted the term "system
system" (see 3.10 of the.2011 edition);
b) Added the terms "smart power plant" (see 4.7), "digital power plant, virtual power plant, centralized control building, network control building, network relay
Room" (see 4.8, 4.9, 4.11.1, 4.11.2, 4.11.9), changed the definition of "automation level" (see 4.6, 11.6 of the.2011 edition),
- Deleted the term "main control building" (see 11.8.3 of the.2011 edition);
c) Added the terms "explosive atmosphere" (see 5.1.52), "equipment protection level, level Ma, level Mb, level Ga, level Gb, level Gc, level Da
Level, Db level, Dc level" (see 5.1.54), "COD analyzer" (see 5.2.66), "detector, combustible gas detector, toxic gas
Detector" (see 5.2.67), "pyranometer" (see 5.2.78), "pyramidometer" (see 5.2.79), "sensing, sensing equipment, mode
Recognition, Image Recognition, Computer Vision, Machine Vision, Biometric Recognition, Voiceprint Recognition, Face Recognition, Iris Recognition, Fingerprint Recognition
Gender, radio frequency identification, inspection robot" (see 5.5), changed the definition of "fieldbus" (see 5.4.1, 4.4.1 of the.2011 edition);
d) Added terms "tertiary frequency modulation, automatic reactive voltage control, ancillary services, black start, mirror field control system, heliostat array control
device, direct light characteristic calibration system, collector field control system, solar closed-loop control system” (see 7.29.1.7, 7.29.11~
7.29.13, 7.37~7.41), changed the definition of "intelligent control, secondary frequency regulation, automatic power generation control, auxiliary workshop centralized control system"
meaning (see 7.12, 7.29.1.6, 7.29.8, 7.42, 6.12, 6.29.1.6, 6.29.8, 6.37 of the.2011 edition);
e) The terms "gas turbine unit protection system, overspeed control device, overspeed blocking device, fuel shut-off valve, overtemperature control device,
Over-temperature protection device, over-temperature detector, ignition failure blocking device, flameout blocking device, alarm protection system, low fuel pressure
Protection device, [lubricating] oil pressure too low protection device, [lubricating] oil temperature too high protection device, axial displacement protection device, manual shutter
disconnecting device" (see 8.8);
f) Added the term "computer network, power network computer monitoring system" (see 9.7, 9.19), and changed the definition of "configuration" (see
9.14.12, 8.13.12 of the.2011 edition), "programmable logic controller" (see 9.16, 8.15 of the.2011 edition), the term was deleted
"Decentralized process computer system" (see 8.5 of the.2011 edition);
g) Added terms "data lake, digital twin, graph database" (see 10.42, 10.44, 10.50), "data center, host room, auxiliary
area, support area, administrative management area" (see 10.37), "embedded system, special purpose instruction set processor, field programmable gate array, special purpose
Integrated circuits, single-chip systems, systems-on-chips, networks-on-chips, industrial Internet, cloud computing, cloud services, resource pooling, and cloud deployment models
type, hybrid cloud, private cloud, public cloud, edge, edge computing, big data, data mining, data analysis, data fusion, software definition
Storage, Software Defined Networking, Network Virtualization, Virtual Machines, Virtual Reality, Augmented Reality, Containers, Live Migration of VMs, Blocks
Chain, blockchain as a service, Byzantine fault tolerance mechanism, decentralized application, distributed ledger, public distributed ledger system, private distributed
Distributed ledger system, smart contract" (see 10.58~10.83.7), changed "risk management, enterprise resource planning, smart data
Library" definition (see 10.29, 10.46, 10.51, 9.29, 9.43, 9.47 of the.2011 edition), delete the term "digital power plant" (see
9.68 of the.2011 edition);
h) Added the term "functional safety and network security" (see Chapter 11), and changed the definition of "firewall, safety integrity level" (see
11.2.50, 11.1.21, 8.8.47, 7.11 of the.2011 edition), delete the term "network security isolation gatekeeper" (see
9.57);
i) Change "reliability" to "credibility" (see Chapter 12, Chapter 10 of the.2011 edition), and add "failure mechanism, failure mode,
Failure detection, time to failure detection, service life, corrective maintenance, preventive maintenance, planned maintenance, condition monitoring" terms (see
12.3, 12.4, 12.11, 12.12, 12.16, 12.48, 12.49, 12.50, 12.53), changed the "failure, failure, latent failure, intermittent
Fault, persistent fault, fault location, fault diagnosis, repair, reliability, maintainability, maintainability, availability, reliability, flatness
Average working time before failure, Mean working time between failures, Available time, Redundancy, Working redundancy, Standby redundancy, Fault tolerance, Failure
Safety, reliability models, failure mode and effects analysis, fault trees, predictive maintenance, condition-based maintenance, reliability-centred maintenance
"repair" definition (see 12.2, 12.5, 12.6, 12.8, 12.9, 12.13~12.15, 12.23~12.30, 12.32~12.36, 12.38,
12.41, 12.42, 12.51, 12.52, 12.54, 10.28, 10.2, 10.5, 10.7, 10.8, 10.13~10.15 of the.2011 edition,
10.23~10.27, 10.29~10.31, 10.33~10.37, 10.39, 10.42, 10.43, 9.61, 9.62), the term "failure
Mechanism, transient fault, fault identification, fault identification time, fault resolution" (see 10.3, 10.6, 10.10,.2011 edition
10.11, 10.12).
Please note that some contents of this document may refer to patents. The issuing agency of this document assumes no responsibility for identifying patents.
This document is proposed by China Electricity Council.
This document is under the jurisdiction of the National Power Plant Process Monitoring and Information Standardization Technical Committee (SAC/TC376).
This document is drafted by. General Electric Power Planning Institute Co., Ltd., China Electric Power Engineering Consulting Group North China Electric Power Design Institute Co., Ltd., CNNC
Wuhan Nuclear Power Operation Technology Co., Ltd., Dongfang Electric Group Science and Technology Research Institute Co., Ltd., University of Electronic Science and Technology of China, Shanghai Pudong Development
Development Bank Co., Ltd., China Power Engineering Consulting Group Co., Ltd., State Power Investment Corporation Inner Mongolia Baiyinhua Coal and Electricity Co., Ltd.
Power Generation Branch, Beijing Donghua Botai Technology Co., Ltd., Chengdu Textile College, Rundian Energy Science and Technology Co., Ltd., etc.
The main drafters of this document. Zhang Jinbin, Du Zhongming, Kang Chengjie, Ma Xinxin, Zhang Xuliang, Li Yunbo, Yuan Xiaoshu, Wang Qiujin, Zhang Jiawei,
Liu Bin, Zeng Desen, Liu Yuxin, Li Zhongbing, Zhang Chao, Peng Yangzi, Xu Canling, Guo Yinchang, Zhang Tongfeng, Guo Zhongkai, Wang Shuai, Zhu Feng.
The release status of previous versions of this document and the documents it replaces are as follows.
---It was first published as GB/T 26863-2011 in.2011;
--- This is the first revision.
Thermal Power Station Monitoring System Terminology
1 Scope
This document defines the terms and definitions related to thermal power station monitoring system.
This document is applicable to conventional thermal power plants, solar thermal power plants, geothermal power plants, biomass thermal power plants, conventional islands of nuclear power plants and auxiliary
system.
2 Normative references
The contents of the following documents constitute the essential provisions of this document through normative references in the text. Among them, dated references
For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to
this document.
GB/T 4208 enclosure protection level (IP code)
GB/T 17626 (all parts) Electromagnetic compatibility test and measurement technology
3 Basic terms
3.1
The process of obtaining electrical energy from other forms of energy.
3.2
[power plant
Facilities for generating electricity.
Note. Usually includes buildings (structures), energy conversion equipment and all necessary auxiliary equipment.
3.3
Thermal power station
thermalpowerplant
A power station that generates electricity by converting thermal energy.
Note. Heat energy may be obtained from multiple energy sources.
3.4
conventional thermal power plant
Burn coal, oil, natural gas or other hydrocarbon fuels, and convert the obtained heat energy into mechanical energy to drive the generator set to produce electric energy
thermal power station.
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