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Delivery: <= 4 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 17215.610-2018: Electricity metering data exchange -- The DLMS/COSEM suite -- Part 10: Smart metering standardisation framework Status: Valid
Similar standardsGB/T 15284 GB/T 17215.321 GB/T 34067.2 GB/T 17215.241 GB/T 17215.301 GB/T 17215.302Basic dataStandard ID: GB/T 17215.610-2018 (GB/T17215.610-2018)Description (Translated English): Electricity metering data exchange -- The DLMS/COSEM suite -- Part 10: Smart metering standardisation framework Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: N22 Classification of International Standard: 17.220.20 Word Count Estimation: 18,160 Date of Issue: 2018-12-28 Date of Implementation: 2019-07-01 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 17215.610-2018: Electricity metering data exchange -- The DLMS/COSEM suite -- Part 10: Smart metering standardisation framework---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. Electricity metering data exchange--The DLMS/COSEM suite--Part 10. Smart metering standardisation framework ICS 17.220.20 N22 National Standards of People's Republic of China Electrical measurement data exchange DLMS/COSEM component Part 10. Smart Measurement Standardization Framework Part 10. Smartmeteringstandardisationframework (IEC 62056-1-0.2014, Electricitymeteringdataexchange- TheDLMS/COSEMsuite-Part 1-0. Smartmeteringstandardisation Framework, IDT) Published on.2018-12-28 2019-07-01 implementation State market supervision and administration China National Standardization Administration issued ContentForeword III Introduction V 1 Scope 1 2 Normative references 1 3 Terms and definitions and abbreviations 2 3.1 Terms and Definitions 2 3.2 Abbreviations 2 4 Intelligent Measurement Process and Use Case 3 5 Intelligent Measurement Reference Architecture 4 6 Interface with external system 5 7 Basic principles to be followed in the IEC 62056 DLMS/COSEM component 5 7.1 Overview 5 7.2 Interoperability and Flexibility 5 7.3 Security 5 7.4 Access Security 6 7.5 Communication Channel Security 6 7.6 End-to-end security 6 7.7 Security Algorithms and Security Mechanisms 6 8 data model and communication channel 7 8.1 Overview 7 8.2 Data Model and Application Layer 7 8.3 Communication Channel Set 7 8.4 Communication Configuration 7 9 standard framework 7 Appendix A (informative) IEC 62056 standard 9 supporting intelligent measurement interfacesForewordGB/T 17215 "AC measuring equipment" is divided into several parts, GB/T 17215.6 "Electrical measurement data exchange DLMS/COSEM Components are divided into the following sections. --- Part 10. Intelligent Measurement Standardization Framework; --- Part 11. DLMS/COSEM communication configuration standard template; --- Part 31. Local area network use based on twisted pair carrier signals; --- Part 46. Data link layer using HDLC protocol; --- Part 47. DLMS/COSEM transmission layer based on IP network; --- Part 53. DLMS/COSEM application layer; --- Part 61. Object Identification System (OBIS); --- Part 62. COSEM interface class; --- Part 73. Wired and wireless M-Bus communication configurations for local and community networks; --- Part 76. HDLC-based connection-oriented three-layer communication configuration; --- Part 91. Communication configuration using the WEB service to access the COSEM server via CAS; --- Part 97. Communication configuration based on TCP-UDP/IP network. This part is the 10th part of GB/T 17215.6. This part is drafted in accordance with the rules given in GB/T 1.1-2009. This part uses the translation method equivalent to IEC 62056-1-0.2014 "Electrical Measurement Data Exchange DLMS/COSEM Component Part 1-0 Points. Standardization Framework for Intelligent Measurements. The documents of our country that have a consistent correspondence with the international documents referenced in this part are as follows. --- GB/T 17215.631-2018 Electrical measurement data exchange DLMS/COSEM components - Part 31. Based on twisted pair Local area network use of carrier signals (IEC 62056-3-1..2013, IDT); ---GB/T 17215.646-2018 Electrical measurement data exchange DLMS/COSEM components - Part 46. Using HDLC Data link layer of the protocol (IEC 62056-4-6.2007, IDT); ---GB/T 17215.653-2018 Electrical Measurement Data Exchange DLMS/COSEM Components Part 53. DLMS/CO- SEM application layer (IEC 62056-5-3..2017, IDT); --- GB/T 17215.661-2018 Electrical measurement data exchange DLMS/COSEM components - Part 61. Object identification OBIS (IEC 62056-6-1..2017, IDT); ---GB/T 17215.662-2018 Electrical measurement data exchange DLMS/COSEM components - Part 62. COSEM Mouth class (IEC 62056-6-2.2017, IDT); ---GB/T 17215.676-2018 Electrical measurement data exchange DLMS/COSEM components - Part 76. Based on HDLC Connection-oriented Layer 3 communication configuration (IEC 62056-7-6.2013, IDT); --- GB/T 17215.697-2018 Electrical measurement data exchange DLMS/COSEM components - Part 97. Based on TCP- Communication configuration of UDP/IP network (IEC 62056-9-7..2013, IDT); --- GB/T 19897.4-2005 Automatic meter reading system - Low-level communication protocol - Part 2. s. Domain network use (IEC 62056-31.1999, IDT); ---DL/T 790.432-2004 Distribution automation using distribution line carriers - Part 4-32. Data communication protocol - Data link Layer-Logic Link Control (IEC 61334-4-32.1996, IDT); ---DL/T 790.51-2002 Distribution automation using distribution line carrier Part 5. Low-level protocol set Part 1. Spreading Type Frequency Shift Keying (S-FSK) protocol (IEC 61334-5-1..2001, IDT). This section has made the following editorial changes. ---The standard name was changed from part 1-0 to part 10; Please note that some of the contents of this document may involve patents. The issuing organization of this document is not responsible for identifying these patents. This part was proposed by the China Machinery Industry Federation. This part is under the jurisdiction of the National Electrotechnical Instrumentation Standardization Technical Committee (SAC/TC104). The units drafted in this section. Harbin Electric Instrument Research Institute Co., Ltd., Shenzhen Kelu Electronic Technology Co., Ltd., China Electric Force Science Research Institute Co., Ltd., Shenzhen Aerospace Tairuijie Electronics Co., Ltd., Hunan Xiangdian Experimental Research Institute Co., Ltd., State Grid Jiangxi Electric Power Research Institute of Electric Power Co., Ltd., Yantai Dongfang Weston Electric Co., Ltd., Guangdong Dongfang Telecommunications Technology Co., Ltd., Qingdao Ding Letter Communication Co., Ltd., Ningbo Henglida Technology Co., Ltd., Heilongjiang Electrician Instrumentation Engineering Technology Research Center Co., Ltd. Zhejiang Chentai Technology Co., Ltd., Huali Technology Co., Ltd. The main drafters of this section. Zhang Dengqing, Guan Wenju, Chen Mi, Wang Weineng, Liu Ming, Qi Ruipeng, Li Hongwei, Jiang Bin, Chen Wenxin, Fang Hengfu, Zhang Ben, Zhang Xiangcheng, Zeng Shitu, Duan Feng, Lu Ruili, Qin Guoxin, Guo Wei.IntroductionAs the number of smart metering deployments increases, secure and interoperable data exchange between different system components becomes critical. apart from Supporting supplier-consumer contract execution and providing necessary billing data, smart meters have also become valuable letters for the effective operation of smart grids Source of interest. Increases in applications that rely on measurement data, resulting in more and more data in intelligent measurement systems and via interfaces and other systems Exchange. In order to adapt to different communication channels, the intelligent measurement system does not generate any data incompatibility for the supported applications. Taking into account the growth requirements of smart metering and smart grid applications, the standards in the IEC 62056 DLMS/COSEM components have continued Improvements and expansions. In particular, the object-oriented COSEM data model has expanded to support new smart measurement and smart grid use cases. Interface class. The application layer has been enhanced with advanced security features to provide scalable security for a wide range of applications over a wide range of communication channels. all. With the introduction of the "communication configuration" concept, the IEC 62056 DLMS/COSEM component provides a way to connect different communication channel standards. Method, these standards have a consistent DLMS/COSEM data model. This section summarizes the principles established by the IEC 62056 standard and sets rules for future expansion to ensure consistency. Intelligent measurement is an important part of smart grid and smart home. To ensure a letter between different applications and roles in the energy market For efficiency and safety of information flow, it is necessary to coordinate and unify the standards set by the corresponding standardization committee. In particular, the intelligent measurement system Provides interfaces to power and non-electrical meters, home automation, substation automation, and distribution management systems. Coordinated as a definition Prerequisites for smart grid and smart home interfaces, the standardized concepts described in this section should ensure consistency within the scope of smart measurements. The IEC 62056 DLMS/COSEM component standard has been developed by IEC /TC13 for electrical measurement purposes. Some standards Quasi---especially the COSEM data model--is also used by other non-electricity measurement technical committees. The IEC 62056-XY series of standards corresponds to the national standard GB/T 17215.6XY series. Electrical measurement data exchange DLMS/COSEM component Part 10. Smart Measurement Standardization Framework1 ScopeThis part of GB/T 17215.6 specifies the use cases for intelligent measurements and their systems. The system is based on IEC 62056. The standard support of the DLMS/COSEM series stipulates the data exchange of the meter. The standardization framework described in this section includes. --- Formulate the relevant principles of these standards; --- Expand existing standards to facilitate support for new use cases and compatibility with new communication technologies while maintaining compliance with existing standards; --- Interoperability and information security related aspects. This section also provides guidance on the selection of appropriate standards for specific interfaces within the intelligent measurement system. Other measurement aspects covered by IEC TC13, such as metering requirements, testing, safety and credibility, are outside the scope of this section.2 Normative referencesThe following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. IEC 61334-4-32 Distribution automation using distribution line carriers - Part 4-32. Data communication protocol Link Control (LLC) [Distributionautomationusingdistributionlinecarriersystem-Part 4.Datacom- municationprotocols-Section32. DatalinklayeLogicallinkcontrol(LLC)] IEC 61334-5-1 Distribution automation using distribution line carrier Part 5. Low-level protocol set Part 1. Spreading frequency shift keying (S-FSK) protocol [Distributionautomationusingdistributionlinecarriersystem-Part 5-1.Lowerlayer profilesThespreadfrequencyshiftkeying(S-FSK)profie] IEC 62056 (all parts) Electrical Measurement Data Exchange DLMS/COSEM Components (Electricitymeteringdataex- changeTheDLMS/COSEMsuite) IEC 62056-3-1 Electrical Measurement Data Exchange DLMS/COSEM Components Part 3-1. s. Domain Network Usage (Electricitymeteringdataexchange-TheDLMS/COSEMsuite-Part 3-1. Useoflocalarea Networksontwistedpairwithcarriersignaling) IEC 62056-4-7 Electrical measurement data exchange - DLMS/COSEM components - Part 4-7. Transmission layer (Electricity meteringdataexchange-TheDLMS/COSEMsuite-Part 4-7. COSEMtransport LayersforIPv4neworks) IEC 62056-5-3.2013 Electrical Measurement Data Exchange DLMS/COSEM Components Part 5-3. DLMS/COSEM Use layer (Electricity meteringdataexchange-TheDLMS/COSEMsuite-Part 5-3. DLMS/COSEMappli- Cationlayer) IEC 62056-6-1.2013 Electrical Measurement Data Exchange DLMS/COSEM Components Part 6-1. Object Identification Systems (OBIS)[Electricitymeteringdataexchange-TheDLMS/COSEMsuite-Part 6-1.ObjectIdentificationSys- Tem(OBIS)] IEC 62056-6-2.2013 Electrical Measurement Data Exchange DLMS/COSEM Components Part 6-2. COSEM Interface Class (E- lectricitymeteringdataexchange-TheDLMS/COSEMsuite-Part 6-2.COSEMinterfaceclasses) IEC 62056-7-6 Electrical Measurement Data Exchange DLMS/COSEM Components Part 7-6. HDLC-based Connection-oriented ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 17215.610-2018_English be delivered?Answer: Upon your order, we will start to translate GB/T 17215.610-2018_English as soon as possible, and keep you informed of the progress. The lead time is typically 2 ~ 4 working days. 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