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Intelligrid methodology for developing requirements for energy systems
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GB/Z 28805-2012
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Basic data | Standard ID | GB/Z 28805-2012 (GB/Z28805-2012) | | Description (Translated English) | Intelligrid methodology for developing requirements for energy systems | | Sector / Industry | National Standard | | Classification of Chinese Standard | K04 | | Classification of International Standard | 29.020 | | Word Count Estimation | 82,842 | | Adopted Standard | IECPAS 62559-2008, IDT | | Regulation (derived from) | National Standards Bulletin 2012 No. 28 | | Issuing agency(ies) | Ministry of Health of the People's Republic of China | | Summary | This standard specifies the user needs to describe and define a set of smart grid systems engineering approach. The technical guidance document for the development of the project to determine the user or system functional and performance requirements of t |
GBZ28805-2012: Intelligrid methodology for developing requirements for energy systems---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.
Intelligrid methodology for developing requirements for energy systems
ICS 29.020
K04
People's Republic of China national standardization of technical guidance documents
Smart grid approach to energy system needs development
(IEC /PAS62559.2008, IDT)
Posted on.2012-11-05
2013-05-01 Implementation
General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
China National Standardization Administration released
Directory
Preface Ⅰ
1 Overview 1
1.1 Scope 1
1.2 Method Overview 1
1.3 Objectives of this guidance document
1.4 The application of the guidance of technical documents 5
2 Reference 5
3 Abbreviations 5
4 Terms and definitions 7
5 Smart Grid Architecture Introduction 8
5.1 Background and source by 8
5.2 Basic Concepts 8
5.3 pyramid structure 9
5.4 business needs and functional requirements 10
5.5 Development Phase 10
5.6 Parallel Development Stream 11
5.7 Scope of this Guidance Technical Document 12
The first phase. The responsible person identifies the business needs and develops the project plan
6.1 Determine business and dominant rules 13
6.2 Select Item 13
6.3 Identify candidate technologies 13
6.4 Define high-level business use cases 13
6.5 Adjust the process according to the organization settings 13
6.6 Clear Stakeholders 13
6.7 to establish a project team 14
6.8 Select Project Team 14
Stage 2 Stakeholders Determine User Needs Based on Use Cases 14
7.1 Use Case Methodology 14
7.2 Use Case Development Workshop Requirements 16
7.3 Use Case Analysis 19
The third to the fifth phase of technology selection and deployment of 22
8.1 Architecture Design 22
8.2 Selection Techniques 25
Appendix A (informative) How to develop use cases 28
Appendix B (Informative) Smart Grid Use Case Template 45
Appendix C (Informative) Power System Synchronization Phasor Use Case 49
Appendix D (Informative) Examples of User Use Cases
Foreword
This instructional document has been drafted in accordance with the rules given in GB/T 1.1-2009.
This guidance document uses the translation method equivalent to the smart grid using IEC /PAS62559.2008 "Energy System Requirements Development
method".
The following editorial changes have been made to this technical document.
Replace "thisPubliclyAvailableSpecification" or "PAS" in the original text with "this Guidance Document";
Chapter 3, "Abbreviations," adds the explanations of some abbreviations appearing in this guidance document to facilitate the guidance of this guideline
User of the file
Chapter 4 "Terms and Definitions" adds the terms appearing in this technical document to guide the use.
Please note that some of this document may be patentable. The issuing agencies of this document do not bear the responsibility of identifying these patents.
This Guidance Document is proposed and managed by the National Technical Committee for Voltage and Current Leveling and Frequency Standardization (SAC/TC1).
The main drafting of the technical guidance of this document. China Electric Power Research Institute, China Machine Productivity Promotion Center, Hebei Electric Power Research Institute,
Wuhan National Measurement Technology Co., Ltd., Shanxi Electric Power Company Electric Power Research Institute, Xi'an Boyu Electric Co., Ltd., Rongxin Power Electronics
Co., Ltd., State Power Nanjing Automation Co., Ltd., State Grid Electric Power Research Institute, Anhui University, Ministry of Education Power Quality Engineering Research
Research Center.
The guidance of technical documents to participate in the drafting unit. International Copper Association, China Railway Fourth Survey and Design Group Co., Ltd., Shenzhen City,
Technology Co., Ltd.
The main drafters of this technical paper, Bai Xiaomin, Zhang Ping, Duan Xiaobo, He Jiang, Bu Zhengliang, Liu Juncheng, Zhang Fanyong, Wang Youlong,
Wang Jinhao, Li Shusen, Li Lingdong, Gao Jun.
This introductory technical document was drafted by drafters.
Smart grid approach to energy system needs development
1 Overview
1.1 Scope
This Guidance Document specifies a set of smart grid system engineering methods that describe and define user requirements.
This guideline applies to the process of determining user functionality and performance requirements in project or system development.
This Guidance Document (PAS) is based on the business needs of a utility company, and is an expert in the power system field in an automation system
Identify and describe a set of methods for user needs development. This approach was originally developed by the United States Electric Power Research Institute (EPRI) as a smart grid system
Research and development part of the structure, is to achieve future automatic, self-healing and efficient power system.
This chapter describes the scope, purpose and objectives of this guidance document and the basic system on which it is based.
1.2 Method Overview
1.2.1 The concept of systems engineering
Smart grid methodology is a branch of systems engineering. Systems Engineering Methodology Separation of "User Requirements" from "Technical Specifications"
User requirements only determine what is needed, but do not refer to any particular design or technology, and technical specifications determine how "how" is implemented
Motion control system to meet user needs.
1.2.2 Smart Grid Methodology
The overall framework of smart grid methodology is shown in Figure 1 and consists mainly of the following personnel and project steps.
The person in charge of business examines and approves the project according to the necessity and needs of the project.
Field experts and project engineers to form a project team As the team's first task, should identify the project may be affected or subject to
All power system specialists and other stakeholders (users) affected by the project, who or their representatives should (full-time, part-time or as far as possible) participate
Project Team.
Field experts review the concepts and applicability of existing smart grid use cases, which can be found on the Internet at.
http.//inteligrid.info/inteligridArchitecture/ues_cases/IEC SA_use_cases_overview.htm
Domain experts develop a list of use cases (functional descriptions) that considers not only the needs of a particular business, but also the needs of other users,
And the likelihood that the project will affect or be affected in the future.
Domain experts drafted key use cases with the help of project engineers who understand the use-case process, including all necessary user needs.
Domain experts review and update these use cases to ensure that users' needs are properly understood, avoiding possible misunderstandings,
Complex, missing and contradictory.
The project engineer evaluates and adjusts these use cases to create a comprehensive and detailed document that contains only the user's needs.
According to user requirements documents, information professionals decide which appropriate standards and techniques to use in determining key criteria and techniques should be
Preparation of smart grid system strategic vision.
Design engineers to develop technical specifications to user needs, information experts to determine the strategic standards and technologies and smart grid system development
The combination of technical means.
The details that are eventually described in the user requirements document are included.
Function. refers to the function from the user's point of view, including the function description of the process, user options, the type of input data, the type of result
As well as the possible appearance of the interface;
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