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Society energy metering for reading system specification -- Part 3: Dedicated application layer
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GB/T 26831.3-2012
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Basic data Standard ID | GB/T 26831.3-2012 (GB/T26831.3-2012) | Description (Translated English) | Society energy metering for reading system specification -- Part 3: Dedicated application layer | Sector / Industry | National Standard (Recommended) | Classification of Chinese Standard | N22 | Classification of International Standard | 17.220.20 | Word Count Estimation | 50,524 | Quoted Standard | GB/T 26831.2-2012 | Adopted Standard | EN 13757-3-2004, IDT | Regulation (derived from) | National Standards Bulletin No. 28 of 2012 | 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 | Summary | This standard specifies the instrument of communication systems and instrumentation dedicated remote meter reading application layer. This section applies to communications systems and instrumentation instrumentation remote meter reading. |
GB/T 26831.3-2012: Society energy metering for reading system specification -- Part 3: Dedicated application layer ---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.
Society energy metering for reading system specification Part 3. Dedicated application layer
ICS 17.220.20
N22
National Standards of People's Republic of China
Collecting Community Energy Metering System Specification
Part 3. Dedicated application layer
Part 3. Dedicatedapplicationlayer
Issued on. 2012-11-05
2013-02-15 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Introduction Ⅲ
Introduction Ⅳ
1 Scope 1
2 Normative references 1
3 Terms and definitions, abbreviations and logos 1
3.1 Terms and definitions
3.2 Abbreviations 1
3.3 Identification 1
4 general principles. CI- domain 2
4.1 Summary 2
4.2 application reset (CI = 50h) (optional) 3
4.3 master to slave data transmission (51h) (optional) 4
4.4 Slave Select (52h) (optional) 4
4.5 Synchronous operation (CI = 5Ch) (optional) 4
4.6 Application Layer Error Reporting (from slave to master) (CI = 70h) (optional) 4
4.7 Alarm status report (from slave to master) (CI = 71h) (optional) 4
4.8 Variable data response (from slave to master) (CI = 72h, 78h, 7Ah) 4
4.9 Baud rate switch command B8h-BFh (optional) 5
5 Variable data response (CI = 72h, CI = 78h, CI = 7Ah) 5
5.1 Introduction 5
5.2 header data structure (CI = 72h) 5
5.3 header data structure (CI = 7Ah) 5
5.4 Device ID 5
5.5 Manufacturer ID 6
5.6 version ID 6
5.7 Device Type ID 6
5.8 Access No. 7
5.9 Status Byte 7
5.10 signature field 8
5.11 according to the address structure used in conjunction with the wireless link layer 9 EN13757-4
6 variable data block (recording) 9
6.1 Overview 9
6.2 Data information block (DIB) 9
6.3 Data Information Field (DIF) 9
6.4 Data Field 10
6.5 11 domain
11 6.6 Number of storage
6.7 Extension bit (E) 11
6.8 Extended data byte 11
6.9 rate information 12
6.10 sub-unit information 12
7 numerical information block (VIB) 12
7.1 Overview 12
7.2 Main VIF's (master table) 13
7.3 identifies 14 specific VIF
7.4 Main VIFE coding extension table (follow the main VIF VIF = FDh) 14
7.5 VIFE-Code code extension table (follow the main VIF VIF = 0FBh) 17
7.6 complex (quadrature) VIFE coding extension table 18
8 Application layer status and error reporting 19
8.1 Overview 19
19 8.2 status field
General 19 8.3 Application Layer Error
8.4 Error Log 20
9 total target layer 21
10 manufacturer-specific unstructured data block 22
11 22 underlying management
11.1 Overview 22
11.2 baud rate according to GB/T 26831.2 of the M-Bus link layer switch 23
Select the two addresses 23 11.3
11.4 summarizes the selection process 24
11.5 for installed from station 25
Appendix A (normative) Data Recording Code 26
Appendix B (normative) in hex code AH-FH BCD data field analysis 31
Annex C (normative) Non Metric Unit 32
Annex D (informative) Alerting Protocol 33
Annex E (informative) Example 34
Annex F (informative) secondary lookup 39
Annex G (informative) wireless products M-bus Bus Parameters "special device type," meaning 42
References 44
Foreword
GB/T 26831 "Collecting community energy metering system specification" consists of the following four parts.
--- Part 1. Data exchange;
--- Part 2. Physical and link layer;
--- Part 3. Dedicated application layer;
--- Part 4. Wireless meter reading copy.
This section GB/T 26831 Part 3.
The standards refer to the European Standard EN13757. Wherein, Part 1, Part 2, Part 3 is equivalent to using the
EN13757-1, EN13757-2, EN13757-3 corresponding portion, Part 4 combined with wireless meter reading technology status and national wireless
Letter made major changes to the relevant standards.
This section uses the translation method identical with EN13757-3.2004 "meter and remote meter reading communication systems - Part 3. Special Applications
Floor".
This section drafted in accordance with GB/T 1.1-2009 given rules.
Please note that some of the content of this document may involve patents. Release mechanism of the present document does not assume responsibility for the identification of these patents.
This part is proposed by China Machinery Industry Federation.
This part of the National Electrical Instrument Standardization Technical Committee (SAC/TC104) centralized.
This section is drafted. Harbin Electrical Instrument Research Institute, Hangzhou Honghu Electronic Co., Ltd., Beijing Nath Electric Co., Ltd., Ningbo East
China Shipping Group Co., Ltd., Shenyang Air heat measurement Technology Co., Ltd., Tangshan Huizhong Instrumentation Co., Ltd., Changsha Weisheng Information Technology Co.,
Solarfun Electronics Co., Ltd., Shenzhen HND Instrumentation Co., Ltd., Longhua Power Electric Co., Ltd. Terry Shenzhen Jie Electronics
Ltd., Hangzhou PAX Electronic Technology Co., Ltd. Tengen Group Co., Ltd., Guangdong-ho Di Innovation and Technology Co., Echelon shares
Parts Limited, Beijing Fuxing Xiaocheng Electronic Technology Co., Ltd., Qingdao Neusoft Computer Technology Co., Ltd., Harbin Hua Hui Electric Co.,
Zhangzhou Branch Electric Co., Ltd., Xi'an flags Electronics Co., Ltd.
The main drafters of this section. Pan Hongyuan, Pan Kai, Houxue Wei, Guo Yonglin, Chen Sheng-Rong, PROJECTILES, Zhang Zhizhong, Yin Jianfeng, Ping Xijun,
Li Hong, Yao this ceremony, Xu Maolin, Xiao Weifeng, Zhang Shaoheng, and glue, wear love, Xuhui Feng, Yuan Jing, Guan Wenju.
Introduction
As technology advances, economic development and the continuous improvement of people's energy management requirements, community (building and residence) energy demand
(Water, electricity, gas, heat) Collecting and remote management technology into the rapid development stage, the emergence of the first to use various types of communication technology, involving
A variety of products and technology solutions for each field of metrology. Product manufacturing side and the user side is eager to these products or systems to follow uniform
standard.
Thus, since 1999, the International Electrotechnical Commission have published the IEC 62056 series of standards; the development of the country with reference to their content publishing
The GB/T 19882 series of standards. The standard is an open system, a good solution to the interconnectivity and interoperability requirements. The standard body
Department is divided into several independent part of the development, thus contributing to the continuous development of the standard itself. This scientific method and content of the standard are
It provides a good reference for the national standards "Collecting community energy metering system specification."
At the same time, for obvious reasons, community energy metering and automatic meter reading system meter reading system has many similar or common content now
The products also have real demand for interconnection, "Collecting community energy metering system Norms" and should be considered in coordination with the GB/T 19882 of.
The standard system is in the above context developed to recognize this background for understanding the development of ideas and understanding of the standards within this standard
Yung are beneficial.
The standard system includes two aspects of community energy metering Collecting system application management and the underlying communications. In the application management,
The main content is COSEM (Energy metering package specification), the use of object identity and instrument interface object model methods, and thus described
Measuring instruments for remote meter reading and a dedicated application layer. Including and related to a short distance twisted pair baseband (M-BUS) in the underlying communications
Wireless two physical layer, data link layer specification.
This section is part of the series EN13757, EN13757 applied to the instrument and remote meter reading communication system. The first part comprises
General description and the communication protocol. The second part comprises a twisted pair baseband (M-Bus) physical layer and link layer. The fourth part (currently preparing
Consulting) describes a wireless communication.
EN1434-3 bus communication system is commonly referred to M-Bus. Its application layer describes the main instrument used in copy reading standards.
Physical layer, link layer and the network layer and its ability to support a variety of variable-length binary transparent transmission of packets common use. usually,
EN13757-2 (twisted pair baseband) and prEN13757-4 (wireless) or EN13757-1 physical and link layers of a description to be used.
Summary and further define the instrument is given in the communication system in EN13757-1.
This part of the original standard EN1434-3.1997 consistent expansion of 6.4 to 6.6 cases. In addition to some of the statements and achieve prompt,
This standard also contains mainly suitable for modular instrumentation optional extensions. Due to technological developments in this standard was no longer supports some
Variable (fixed format and mode 2 = first length byte).
It is noteworthy that this part contains only how to guide the encoded data (instructions). It goes beyond the standard definition of application layer
Under what circumstances, which will react to the data transmission from the station after the task which type of transmission from the station, or which data.
Thus, according to this standard, through a common master software (including all optional features) from the station to ensure coexistence, public communication and can be read
Force, but can not ensure this standard, or exchanged communications meter function on. For several models and types of instrument, a set of remote heating
User has provided the required application description completely interchangeable. They can m-bus user groups WWW server http. //
Collecting Community Energy Metering System Specification
Part 3. Dedicated application layer
1 Scope
This section provides a communication instrument remote meter reading system and instrumentation dedicated application layer.
This section applies to communications systems and instrumentation meter remote meter reading.
2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein
Member. For undated references, the latest edition (including any amendments) applies to this document.
GB/T 26831.2-2012 Collecting Community Energy Metering System Specification - Part 2. Physical and link layer.
3 Terms and definitions, abbreviations and symbols
3.1 Terms and Definitions
Terms and definitions GB/T 26831.2-2012 defined apply to this document.
3.2 Acronyms
The following abbreviations apply to this document.
DES. Data Encryption Standard (DataEncryptionStandard)
DRH. Data recording head (DataRecordHeader)
DIB. data blocks (DataInformationBlock)
DIF. data fields (DataInformationField)
DIFE. data extension field (DataInformationFieldExtensions)
VIB. Numerical information block (ValueInformationBlock)
VIF. Numerical information field (ValueInformationField)
VIFE. numerical information extension field (ValueInformationFieldExtensions)
RSP_UD. answering user data (RespondUserData)
SEN_UD. transmitting user data to the slaves (SendUserDatatoslave)
REQ_UD. Request User Data (RequestUserData)
MDH. Manufacturers characteristic data block (ManufacturerSpecificDataBlock)
CI. control information field (ControlInformationField)
E. Extension bit (ExtensionBit)
3.3 Logo
Hexadecimal data followed by "h" logo.
Binary number.
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