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1 SVENSK STANDARD SS-EN IEC Fastställd Utgåva Sida Ansvarig kommitté (1+439) SEK TK 13 Copyright SEK. Reproduction in any form without permission is prohibited. Elmätare Datakommunikation för avläsning av elmätare och för styrning av tariff och belastning DLMS/COSEM-familjen Del 6-2: Gränssnittsklasser Electricity metering data exchange The DLMS/COSEM suite Part 6-2: COSEM interface classes Som svensk standard gäller europastandarden EN IEC :2018. Den svenska standarden innehåller den officiella engelska språkversionen av EN IEC :2018. Nationellt förord Europastandarden EN IEC :2018 består av: europastandardens ikraftsättningsdokument, utarbetat inom CENELEC IEC , Third edition, Electricity metering data exchange - The DLMS/COSEM suite - Part 6-2: COSEM interface classes utarbetad inom International Electrotechnical Commission, IEC. EN från CENELEC som är identiska med motsvarande IEC-standarder och som görs tillgängliga för nationalkommittéerna efter den 1 januari 2018 får en beteckning som inleds med EN IEC istället för som tidigare bara EN. Tidigare fastställd svensk standard SS-EN , utgåva 2, 2017, gäller ej fr o m ICS ; ; Denna standard är fastställd av, som också kan lämna upplysningar om sakinnehållet i standarden. Postadress: Box 1284, KISTA Telefon: E-post: sek@elstandard.se. Internet:
2 Standarder underlättar utvecklingen och höjer elsäkerheten Det finns många fördelar med att ha gemensamma tekniska regler för bl a mätning, säkerhet och provning och för utförande, skötsel och dokumentation av elprodukter och elanläggningar. Genom att utforma sådana standarder blir säkerhetsfordringar tydliga och utvecklingskostnaderna rimliga samtidigt som marknadens acceptans för produkten eller tjänsten ökar. Många standarder inom elområdet beskriver tekniska lösningar och metoder som åstadkommer den elsäkerhet som föreskrivs av svenska myndigheter och av EU. SEK är Sveriges röst i standardiseringsarbetet inom elområdet svarar för standardiseringen inom elområdet i Sverige och samordnar svensk medverkan i internationell och europeisk standardisering. SEK är en ideell organisation med frivilligt deltagande från svenska myndigheter, företag och organisationer som vill medverka till och påverka utformningen av tekniska regler inom elektrotekniken. SEK samordnar svenska intressenters medverkan i SEKs tekniska kommittéer och stödjer svenska experters medverkan i internationella och europeiska projekt. Stora delar av arbetet sker internationellt Utformningen av standarder sker i allt väsentligt i internationellt och europeiskt samarbete. SEK är svensk nationalkommitté av International Electrotechnical Commission (IEC) och Comité Européen de Normalisation Electrotechnique (CENELEC). Standardiseringsarbetet inom SEK är organiserat i referensgrupper bestående av ett antal tekniska kommittéer som speglar hur arbetet inom IEC och CENELEC är organiserat. Arbetet i de tekniska kommittéerna är öppet för alla svenska organisationer, företag, institutioner, myndigheter och statliga verk. Den årliga avgiften för deltagandet och intäkter från försäljning finansierar SEKs standardiseringsverksamhet och medlemsavgift till IEC och CENELEC. Var med och påverka! Den som deltar i SEKs tekniska kommittéarbete har möjlighet att påverka framtida standarder och får tidig tillgång till information och dokumentation om utvecklingen inom sitt teknikområde. Arbetet och kontakterna med kollegor, kunder och konkurrenter kan gynnsamt påverka enskilda företags affärsutveckling och bidrar till deltagarnas egen kompetensutveckling. Du som vill dra nytta av dessa möjligheter är välkommen att kontakta SEKs kansli för mer information. Box Kista Tel
3 EUROPEAN STANDARD NORME EUROPÉENNE EUROPÄISCHE NORM EN IEC February 2018 ICS ; ; Supersedes EN :2016 English Version Electricity metering data exchange - The DLMS/COSEM suite - Part 6-2: COSEM interface classes (IEC :2017) Échange des données de comptage de l'électricité - La suite DLMS/COSEM - Partie 6-2: Classes d'interfaces COSEM (IEC :2017) Datenkommunikation der elektrischen Energiemessung - DLMS/COSEM - Teil 6-2: Interface-Klassen (IEC :2017) This European Standard was approved by CENELEC on CENELEC members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or to any CENELEC member. This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CENELEC member into its own language and notified to the CEN-CENELEC Management Centre has the same status as the official versions. CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. European Committee for Electrotechnical Standardization Comité Européen de Normalisation Electrotechnique Europäisches Komitee für Elektrotechnische Normung CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels 2018 CENELEC All rights of exploitation in any form and by any means reserved worldwide for CENELEC Members. Ref. No. EN IEC :2018 E
4 EN IEC :2018 (E) European foreword The text of document 13/1746/FDIS, future edition 3 of IEC , prepared by IEC/TC 13 "Electrical energy measurement and control" was submitted to the IEC-CENELEC parallel vote and approved by CENELEC as EN IEC :2018. The following dates are fixed: latest date by which the document has to be implemented at national level by publication of an identical national standard or by endorsement latest date by which the national standards conflicting with the document have to be withdrawn (dop) (dow) This document supersedes EN :2016. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. CENELEC shall not be held responsible for identifying any or all such patent rights. This document has been prepared under a mandate given to CENELEC by the European Commission and the European Free Trade Association. Endorsement notice The text of the International Standard IEC :2017 was approved by CENELEC as a European Standard without any modification. In the official version, for Bibliography, the following notes have to be added for the standards indicated: IEC :2000 NOTE Harmonized as EN :2000 (not modified). IEC :2015 NOTE Harmonized as EN :2016 (not modified). IEC :2013 NOTE Harmonized as EN :2013 (not modified). IEC :2013 NOTE Harmonized as EN :2013 (not modified). IEC NOTE Harmonized as EN (not modified). IEC :2017 NOTE Harmonized as EN :2017 (not modified). 1 To be published. Stage at the time of publication: IEC CDV : To be published. Stage at the time of publication: pren :
5 EN IEC :2018 (E) Annex ZA (normative) Normative references to international publications with their corresponding European publications The following documents are referred to in the text in such a way that some or all of their content constitutes requirements of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. NOTE 1 Where an International Publication has been modified by common modifications, indicated by (mod), the relevant EN/HD applies. NOTE 2 Up-to-date information on the latest versions of the European Standards listed in this annex is available here: Publication Year Title EN/HD Year Communication systems for meters and EN remote reading of meters - Part 2: Physical and link layer Communication systems for meters and remote reading of meters - Part 3: Dedicated application layer Communication systems for meters and remote reading of meters - Part 3: Dedicated application layer EN EN Communication system for and remote reading of meters Part 4: Wireless meter (Radio meter reading for operation in SRD bands) EN Communication systems for meters - Part 5: Wireless M-Bus relaying IEC Distribution automation using distribution line carrier systems -- Part 4: Data communication protocols -- Section 32: Data link layer - Logical link control (LLC) IEC Distribution automation using distribution line carrier systems -- Part 4: Data communication protocols -- Section 41: Application protocols - Distribution line message specification IEC Distribution automation using distribution line carrier systems -- Part 4-511: Data communication protocols - Systems management - CIASE protocol EN EN EN EN Superseded by EN :
6 EN IEC :2018 (E) IEC Distribution automation using distribution line carrier systems -- Part 4-512: Data communication protocols - System management using profile Management Information Base (MIB) EN IEC Distribution automation using distribution EN line carrier systems -- Part 5-1: Lower layer profiles - The spread frequency shift keying (S-FSK) profile IEC TR Electricity metering - Payment systems - Part 21: Framework for standardization IEC Electricity metering - Data exchange for EN meter reading, tariff and load control - Part 21: Direct local data exchange IEC Electricity metering - Data exchange for meter reading, tariff and load control - Part 31: Use of local area networks on twisted pair with carrier signalling EN IEC Electricity metering data exchange - The DLMS/COSEM suite -- Part 3-1: Use of local area networks on twisted pair with carrier signalling EN IEC Electricity metering - Data exchange for EN meter reading, tariff and load control -- Part 46: Data link layer using HDLC protocol + A A IEC Electricity metering data exchange - The DLMS/COSEM suite - Part 5-3: DLMS/COSEM application layer IEC Electricity metering data exchange - The DLMS/COSEM suite - Part 6-1: Object Identification System (OBIS) EN EN IEC Electricity metering data exchange - The DLMS/COSEM suite - Part 7-3: Wired and wireless M-Bus communication profiles for local and neighbourhood networks EN IEC Electricity metering data exchange - The DLMS/COSEM suite -- Part 8-3: Communication profile for PLC S-FSK neighbourhood networks IEC Electricity metering data exchange - The DLMS/COSEM suite - Part 8-6: High speed PLC ISO/IEC profile for neighbourhood networks EN EN Superseded by EN :2014 (IEC :2013). 4
7 EN IEC :2018 (E) ISO/IEC Information technology - Telecommunications and information exchange between systems - Local and metropolitan area networks - Specific requirements - Part 2: Logical link control ISO/IEC Information technology - Telecommunications and information exchange between systems - Powerline communication (PLC) - High speed PLC medium access control (MAC) and physical layer (PHY) - Part 1: General requirements ISO/IEC/IEEE Information technology - Microprocessor Systems - Floating-Point arithmetic ISO Codes for the representation of currencies 3GPP TS V Technical Specification Group Core Network and Terminals; Non-Access- Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 ITU-T E The international identification plan for public networks and subscriptions ITU-T G SERIES G: TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS - Access networks - In premises networks - Narrow-band orthogonal frequency division multiplexing power line communication transceivers for G3-PLC networks +A ITU-T G SERIES G: TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS - Access networks - In premises networks - Narrow-band orthogonal frequency division multiplexing power line communication transceivers for G3-PLC networks ITU-T G SERIES G: TRANSMISSION SYSTEMS AND MEDIA, DIGITAL SYSTEMS AND NETWORKS - Access networks - In premises networks - Narrow-band orthogonal frequency division multiplexing power line communication transceivers for PRIME networks 5
8 EN IEC :2018 (E) IEEE Standard for Information technology- - Local and metropolitan area networks-- Specific requirements-- Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low Rate Wireless Personal Area Networks (WPANs) ETSI GSM Digital cellular telecommunications system (Phase 2+); Radio subsystem link control ANSI C12.19:1997/IEEE Utility Industry End Device Data Tables ZigBee ZigBee Specification IETF STD The Point-to-Point Protocol (PPP) IETF STD 51 / RFC 1661 IETF STD 51 / RFC The Point-to-Point Protocol (PPP) 1994 PPP in HDLC-like Framing RFC Internet Protocol - DARPA Internet Program Protocol Specification RFC Compressing TCP/IP Headers for Low- Speed Serial Links RFC The PPP Internet Protocol Control Protocol (IPCP) RFC PPP LCP Extensions RFC PPP Challenge Handshake Authentication Protocol (CHAP) RFC PPP CHAP Extension RFC Definition of the Differentiated Services Field (DS Field) in the IPv4 and IPv6 Headers RFC IP Header Compression RFC Compressing IP/UDP/RTP Headers for Low-Speed Serial Links RFC Microsoft PPP CHAP Extensions RFC PKCS #10: Certification Request Syntax Specification Version 1.7 RFC Robust Header Compression (ROHC): Framework and four profiles: RTP, UDP, ESP, and uncompressed 6
9 EN IEC :2018 (E) RFC Robust Header Compression (ROHC) over PPP RFC Internet Protocol Version 6 (IPv6) Addressing Architecture RFC IP Header Compression over PPP RFC Extensible Authentication Protocol (EAP) RFC Neighbor Discovery for IP version 6 (IPv6) RFC Internet X.509 Public Key Infrastructure Certificate and Certificate Revocation List (CRL) Profile RFC Network Time Protocol Version 4: Protocol and Algorithms Specification RFC Compression Format for IPv6 Datagrams over IEEE Based Networks RFC Neighbor Discovery Optimization for IPv6 over Low-Power Wireless Personal Area Networks (6LoWPANs) Point-to-Point (PPP) Protocol Field Assignments 7
10 2 IEC :2017 IEC 2017 CONTENTS FOREWORD INTRODUCTION Scope Normative references Terms, definitions and abbreviated terms Terms and definitions related to the Image transfer process (see 5.3.6) Terms and definitions related to the S-FSK PLC setup classes (see 5.9) Terms and definitions related to the PRIME NB OFDM PLC setup ICs (see 5.11) Terms and definitions related to ZigBee (see 5.13) Terms and definitions related to Payment metering interface classes (see 5.5) Terms and definitions related to the Arbitrator IC (see ) Abbreviated terms Basic principles General Referencing methods Reserved base_names for special COSEM objects Class description notation Common data types Data formats Date and time formats Floating point number formats The COSEM server model The COSEM logical device General COSEM logical device name (LDN) The association view of the logical device Mandatory contents of a COSEM logical device Management logical device Information security The COSEM interface classes Overview Interface classes for parameters and measurement data Data (class_id = 1, version = 0) Register (class_id = 3, version = 0) Extended register (class_id = 4, version = 0) Demand register (class_id = 5, version = 0) Register activation (class_id = 6, version = 0) Profile generic (class_id = 7, version = 1) Utility tables (class_id = 26, version = 0) Register table (class_id = 61, version = 0) Status mapping (class_id = 63, version = 0) Compact data Interface classes for access control and management Overview Client user identification... 78
11 IEC :2017 IEC Association SN (class_id = 12, version = 4) Association LN (class_id = 15, version = 3) SAP assignment (class_id = 17, version = 0) Image transfer Security setup (class_id = 64, version = 1) Push interface classes and objects COSEM data protection Function control (class_id: 122, version: 0) Array manager (class_id = 123, version = 0) Interface classes for time- and event bound control Clock (class_id = 8, version = 0) Script table (class_id = 9, version = 0) Schedule (class_id = 10, version = 0) Special days table (class_id = 11, version = 0) Activity calendar (class_id = 20, version = 0) Register monitor (class_id = 21, version = 0) Single action schedule (class_id = 22, version = 0) Disconnect control (class_id = 70, version = 0) Limiter (class_id = 71, version = 0) Parameter monitor (class_id = 65, version = 0) Sensor manager interface class Arbitrator Modelling examples: tariffication and billing Payment metering related interface classes Overview of the COSEM accounting model Account (class_id = 111, version = 0) Credit interface class Charge (class_id = 113, version = 0) Token gateway (class_id = 115, version = 0) Interface classes for setting up data exchange via local ports and modems IEC local port setup (class_id = 19, version = 1) IEC HDLC setup (class_id = 23, version = 1) IEC twisted pair (1) setup (class_id = 24, version = 1) Modem configuration (class_id = 27, version = 1) Auto answer (class_id = 28, version = 2) Auto connect (class_id = 29, version = 2) GPRS modem setup (class_id = 45, version = 0) GSM diagnostic (class_id: 47, version: 1) LTE monitoring (class_id: 151, version: 0) Interface classes for setting up data exchange via M-Bus Overview M-Bus slave port setup (class_id = 25, version = 0) M-Bus client (class_id = 72, version = 1) Wireless Mode Q channel (class_id = 73, version = 1) M-Bus master port setup (class_id = 74, version = 0) DLMS/COSEM server M-Bus port setup (class_id = 76, version = 0) M-Bus diagnostic (class_id = 77, version = 0) Interface classes for setting up data exchange over the Internet TCP-UDP setup (class_id = 41, version = 0)
12 4 IEC :2017 IEC IPv4 setup (class_id = 42, version = 0) IPv6 setup (class_id = 48, version = 0) MAC address setup (class_id = 43, version = 0) PPP setup (class_id = 44, version = 0) SMTP setup (class_id = 46, version = 0) NTP setup (class_id = 100, version = 0) Interface classes for setting up data exchange using S-FSK PLC General Overview S-FSK Phy&MAC set-up (class_id = 50, version = 1) S-FSK Active initiator (class_id = 51, version = 0) S-FSK MAC synchronization timeouts (class_id = 52, version = 0) S-FSK MAC counters (class_id = 53, version = 0) IEC LLC setup (class_id = 55, version = 1) S-FSK Reporting system list (class_id = 56, version = 0) Interface classes for setting up the LLC layer for ISO/IEC General ISO/IEC LLC Type 1 setup (class_id = 57, version = 0) ISO/IEC LLC Type 2 setup (class_id = 58, version = 0) ISO/IEC LLC Type 3 setup (class_id = 59, version = 0) Interface classes for setting up and managing DLMS/COSEM narrowband OFDM PLC profile for PRIME networks Overview Mapping of PRIME NB OFDM PLC PIB attributes to COSEM IC attributes LLC SSCS setup (class_id = 80, version = 0) PRIME NB OFDM PLC Physical layer parameters PRIME NB OFDM PLC Physical layer counters (class_id = 81, version = 0) PRIME NB OFDM PLC MAC setup (class_id = 82, version = 0) NB OFDM PLC MAC functional parameters (class_id = 83 version = 0) PRIME NB OFDM PLC MAC counters (class_id = 84, version = 0) PRIME NB OFDM PLC MAC network administration data (class_id = 85, version = 0) PRIME NB OFDM PLC MAC address setup (class_id = 43, version = 0) PRIME NB OFDM PLC Application identification (class_id = 86, version = 0) Interface classes for setting up and managing the DLMS/COSEM narrowband OFDM PLC profile for G3-PLC networks Overview Mapping of G3-PLC PIB attributes to COSEM IC attributes G3-PLC MAC layer counters (class_id = 90, version = 1) G3-PLC MAC setup (class_id = 91, version = 1) G3-PLC 6LoWPAN adaptation layer setup (class_id = 92, version = 1) Interface classes for setting up and managing DLMS/COSEM HS-PLC ISO/IEC neighbourhood networks Overview HS-PLC ISO/IEC MAC setup (class_id = 140, version = 0) HS-PLC ISO/IEC CPAS setup (class_id = 141, version = 0) HS-PLC ISO/IEC IP SSAS setup (class_id = 142, version = 0)
13 IEC :2017 IEC HS-PLC ISO/IEC HDLC SSAS setup (class_id = 143, version = 0) ZigBee setup classes Overview ZigBee SAS startup (class_id = 101, version = 0) ZigBee SAS join (class_id = 102, version = 0) ZigBee SAS APS fragmentation (class_id = 103, version = 0) ZigBee network control (class_id = 104, version = 0) ZigBee tunnel setup (class_id = 105, version = 0) Maintenance of the interface classes New versions of interface classes New interface classes Removal of interface classes Relation to OBIS General Abstract COSEM objects Use of value group C Data of historical billing periods Billing period values / reset counter entries Other abstract general purpose OBIS codes Clock objects (class_id = 8) Modem configuration and related objects Script table objects (class_id = 9) Special days table objects (class_id = 11) Schedule objects (class_id = 10) Activity calendar objects (class_id = 20) Register activation objects (class_id = 6) Single action schedule objects (class_id = 22) Register monitor objects (class_id = 21) Parameter monitor objects (class_id = 65) Limiter objects (class_id = 71) Array manager objects (class_id = 123) Payment metering related objects IEC local port setup objects (class_id = 19) Standard readout profile objects (class_id = 7) IEC HDLC setup objects (class_id = 23) IEC twisted pair (1) setup objects (class_id = 24) Objects related to data exchange over M-Bus Objects to set up data exchange over the Internet Objects for setting up data exchange using S-FSK PLC Objects for setting up the ISO/IEC LLC layer Objects for data exchange using narrowband OFDM PLC for PRIME networks Objects for data exchange using narrow-band OFDM PLC for G3-PLC networks ZigBee setup objects Objects for data exchange using HS-PLC ISO/IEC ISO/EC networks Association objects (class_id = 12, 15) SAP assignment object (class_id = 17)
14 6 IEC :2017 IEC COSEM logical device name object Information security related objects Image transfer objects (class_id = 18) Function control objects (class_id = 122) Utility table objects (class_id = 26) Compact data objects (class_id = 62) Device ID objects Metering point ID objects Parameter changes and calibration objects I/O control signal objects Disconnect control objects (class_id = 70) Arbitrator objects (class_id = 68) Status of internal control signals objects Internal operating status objects Battery entries objects Power failure monitoring objects Operating time objects Environment related parameters objects Status register objects Event code objects Communication port log parameter objects Consumer message objects Currently active tariff objects Event counter objects Profile entry digital signature objects Meter tamper event related objects Error register objects Alarm register, Alarm filter and Alarm descriptor objects General list objects Event log objects Inactive objects Electricity related COSEM objects Value group D definitions Electricity ID numbers Billing period values / reset counter entries Other electricity related general purpose objects Measurement algorithm Metering point ID (electricity related) Electricity related status objects List objects Electricity (class_id = 7) Threshold values Register monitor objects (class_id = 21) Coding of OBIS identifications Previous versions of interface classes General Profile generic (class_id = 7, version = 0) Association SN (class_id = 12, version = 0) Association SN (class_id = 12, version = 1) Association SN (class_id = 12, version = 2)
15 IEC :2017 IEC Association SN (Class_id = 12, version =3) Association LN (class_id = 15, version = 0) Association LN (class_id = 15, version = 1) Association LN (class_id = 15, version = 2) Security setup (class_id = 64, version = 0) IEC local port setup (class_id = 19, version = 0) IEC HDLC setup, (class_id = 23, version = 0) IEC twisted pair (1) setup (class_id = 24, version = 0) PSTN modem configuration (class_id = 27, version = 0) Auto answer (class_id = 28, version = 0) PSTN auto dial (class_id = 29, version = 0) Auto connect (class_id = 29, version = 1) GSM diagnostic (class_id = 47, version = 0) S-FSK Phy&MAC setup (class_id = 50, version = 0) S-FSK IEC LLC setup (class_id = 55, version = 0) Compact data (class_id = 62, version = 0) M-Bus client (class_id = 72, version = 0) G3 NB OFDM PLC MAC layer counters (class_id = 90, version = 0) G3 NB OFDM PLC MAC setup (class_id = 91, version = 0) G3 NB OFDM PLC 6LoWPAN adaptation layer setup (class_id = 92, version = 0) Annex A (informative) Additional information on Auto answer and Auto connect ICs Annex B (informative) Additional information to M-Bus client (class_id = 72, version 1) Annex C (informative) Additional information on IPv6 setup class (class_id = 48, version = 0) C.1 General C.2 IPv6 addressing C.3 IPv6 header format C.4 IPv6 header extensions C.4.1 Overview C.4.2 Hop-by-Hop options C.4.3 Destination options C.4.4 Routing options C.4.5 Fragment options C.4.6 Security options Annex D (informative) Overview of the narrow-band OFDM PLC technology for PRIME networks Annex E (informative) Overview of the narrow-band OFDM PLC technology for G3- PLC networks Annex F (informative) Significant technical changes with respect to IEC , Edition 2.0: Bibliography Index Figure 1 The meaning of the definitions concerning the Image Figure 2 An interface class and its instances Figure 3 The COSEM server model Figure 4 Combined metering device... 42
16 8 IEC :2017 IEC 2017 Figure 5 Overview of the interface classes Part Figure 6 Overview of the interface classes Part Figure 7 The time attributes when measuring sliding demand Figure 8 The attributes in the case of block demand Figure 9 The attributes in the case of sliding demand (number of periods = 3) Figure 10 Image transfer process flow chart Figure 11 COSEM model of push operation Figure 12 Push windows and delays Figure 13 COSEM model of data protection Figure 14 Example: Read protection_buffer attribute Figure 15 Example of managing an array Figure 16 The generalized time concept Figure 17 State diagram of the Disconnect control IC Figure 18 Definition of upper and lower thresholds Figure 19 COSEM tariffication model (example) Figure 20 COSEM billing model (example) Figure 21 Outline Account model Figure 22 Diagram of attribute relationships Figure 23 Credit States when priority > Figure 24 Operation of current_credit_status flags Figure 25 Interaction of current_credit_amount and available_credit with Token Credit and Emergency Credit Figure 26 Object model of DLMS/COSEM servers Figure 27 Object model of DLMS/COSEM servers Figure 28 Example of a ZigBee network Figure 29 Data of historical billing periods example with module 12, VZ = Figure A.1 Network connectivity example for a GSM/GPRS network Figure B.1 Encryption key status diagram Figure C.1 IPv6 address formats Figure C.2 IPv6 header format Figure C.3 Traffic class parameter format Table 1 Reserved base_names for SN referencing Table 2 Common data types Table 3 List of interface classes by class_id Table 4 Enumerated values for physical units Table 5 Examples for scaler_unit Table 6 Daily billing data Table 7 Attributes of the Compact data object Table 8 A-XDR encoding of the data (SEQUENCE OF Get-Data-Result) Table 9 Diagnostic and Alarm data Table 10 Attributes of the Compact data object Table 11 Encoding the data read from the buffer attribute of a Profile generic object... 75
17 IEC :2017 IEC Table 12 Logbook data Table 13 Attributes of the Compact data object Table 14 Attributes of the Compact data object Table 15 A-XDR encoding of the data read from the buffer attribute Table 16 Encoding of selective access parameters with data_index Table 17 Key information required to establish data protection keys Table 18 Protection parameters of protection_parameters_get attribute Table 19 Protection parameters of protection_parameters_set attribute Table 20 Protection parameters of get_protected_attributes method Table 21 Protection parameters of set_protected_attributes method Table 22 Protection parameters of invoke_protected_method method Table 23 Schedule Table 24 Special days table Table 25 Disconnect control IC states and state transitions Table 26 Explicit presentation of threshold value arrays Table 27 Explicit presentation of action_sets Table 28 Credit states Table 29 Credit state transitions Table 30 ADS address elements Table 31 Fatal error register Table 32 Mapping IEC :2001 MIB variables to COSEM IC attributes / methods Table 33 MAC addresses in the S-FSK profile Table 34 Mapping of PRIME NB OFDM PLC PIB attributes to COSEM IC attributes Table 35 Mapping of G3-PLC IB attributes to COSEM IC attributes Table 36 Use of ZigBee setup COSEM interface classes Table 37 Use of value group C for abstract objects in the COSEM context Table 38 Representation of various values by appropriate ICs Table 39 Measuring algorithms enumerated values Table 40 Threshold objects, electricity Table 41 Register monitor objects, electricity Table B.1 Encryption key is preset in the slave and cannot be changed Table B.2 Encryption key is preset in the slave and new key is set after installation Table B.3 Encryption key is not preset in the slave, but can be set, case a) Table B.4 Encryption key is not preset in the slave, but can be set, case b) Table C.1 IPv6 header vs. IPv6 IC Table C.2 Optional IPv6 header extensions vs. IPv6 IC
18 10 IEC :2017 IEC 2017 INTERNATIONAL ELECTROTECHNICAL COMMISSION ELECTRICITY METERING DATA EXCHANGE THE DLMS/COSEM SUITE Part 6-2: COSEM interface classes FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes International Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as IEC Publication(s) ). Their preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with may participate in this preparatory work. International, governmental and nongovernmental organizations liaising with the IEC also participate in this preparation. IEC collaborates closely with the International Organization for Standardization (ISO) in accordance with conditions determined by agreement between the two organizations. 2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international consensus of opinion on the relevant subjects since each technical committee has representation from all interested IEC National Committees. 3) IEC Publications have the form of recommendations for international use and are accepted by IEC National Committees in that sense. While all reasonable efforts are made to ensure that the technical content of IEC Publications is accurate, IEC cannot be held responsible for the way in which they are used or for any misinterpretation by any end user. 4) In order to promote international uniformity, IEC National Committees undertake to apply IEC Publications transparently to the maximum extent possible in their national and regional publications. Any divergence between any IEC Publication and the corresponding national or regional publication shall be clearly indicated in the latter. 5) IEC itself does not provide any attestation of conformity. Independent certification bodies provide conformity assessment services and, in some areas, access to IEC marks of conformity. IEC is not responsible for any services carried out by independent certification bodies. 6) All users should ensure that they have the latest edition of this publication. 7) No liability shall attach to IEC or its directors, employees, servants or agents including individual experts and members of its technical committees and IEC National Committees for any personal injury, property damage or other damage of any nature whatsoever, whether direct or indirect, or for costs (including legal fees) and expenses arising out of the publication, use of, or reliance upon, this IEC Publication or any other IEC Publications. 8) Attention is drawn to the Normative references cited in this publication. Use of the referenced publications is indispensable for the correct application of this publication. 9) Attention is drawn to the possibility that some of the elements of this IEC Publication may be the subject of patent rights. IEC shall not be held responsible for identifying any or all such patent rights. The International Electrotechnical Commission (IEC) draws attention to the fact that it is claimed that compliance with this International Standard may involve the use of a maintenance service concerning the stack of protocols on which the present standard IEC is based. The IEC takes no position concerning the evidence, validity and scope of this maintenance service. The provider of the maintenance service has assured the IEC that he is willing to provide services under reasonable and non-discriminatory terms and conditions for applicants throughout the world. In this respect, the statement of the provider of the maintenance service is registered with the IEC. Information may be obtained from: DLMS 1 User Association Zug/Switzerland 1 Device Language Message Specification.
19 IEC :2017 IEC International Standard IEC has been prepared by IEC technical committee 13: Electrical energy measurement and control. This third edition cancels and replaces the second edition of IEC published in It constitutes a technical revision. The significant technical changes with respect to the previous edition are listed in Annex F (Informative). The text of this standard is based on the following documents: FDIS 13/1746/FDIS Report on voting 13/1750/RVD Full information on the voting for the approval of this standard can be found in the report on voting indicated in the above table. This publication has been drafted in accordance with the ISO/IEC Directives, Part 2. A list of all the parts in the IEC series, published under the general title Electricity metering data exchange The DLMS/COSEM suite, can be found on the IEC website. The committee has decided that the contents of this publication will remain unchanged until the stability date indicated on the IEC web site under " in the data related to the specific publication. At this date, the publication will be reconfirmed, withdrawn, replaced by a revised edition, or amended. IMPORTANT The 'colour inside' logo on the cover page of this publication indicates that it contains colours which are considered to be useful for the correct understanding of its contents. Users should therefore print this document using a colour printer.
20 12 IEC :2017 IEC 2017 INTRODUCTION This third edition of IEC has been prepared by IEC TC13 WG14 with a significant contribution of the DLMS User Association, its D-type liaison partner. This edition is in line with the DLMS UA Blue Book Edition The main new features are the Array manager IC, version 1 of the Compact data IC, version 1 of the GSM diagnostic IC, the LTE monitoring IC, the NTP setup IC, the HS-PLC setup ICs and the related new OBIS codes. Object modelling and data identification Driven by the business needs of the energy market participants generally in a liberalized, competitive environment and by the desire to manage natural resources efficiently and to involve the consumers, the utility meter became part of an integrated metering, control and billing system. The meter is not any more a simple data recording device but it relies critically on communication capabilities. Ease of system integration, interoperability and data security are important requirements. COSEM, the Companion Specification for Energy Metering, addresses these challenges by looking at the utility meter as part of a complex measurement and control system. The meter has to be able to convey measurement results from the metering points to the business processes which use them. It also has to be able to provide information to the consumer and manage consumption and eventually local generation. COSEM achieves this by using object modelling techniques to model all functions of the meter, without making any assumptions about which functions need to be supported, how those functions are implemented and how the data are transported. The formal specification of COSEM interface classes forms a major part of COSEM. To process and manage the information it is necessary to uniquely identify all data items in a manufacturer-independent way. The definition of OBIS, the Object Identification System is another essential part of COSEM. It is based on DIN :1997, Electricity meters Part 3: Tariff metering device as additional equipment for electricity meters EDIS Energy Data Identification System. The set of OBIS codes has been considerably extended over the years to meet new needs. COSEM models the utility meter as a server application see 4.7 used by client applications that retrieve data from, provide control information to, and instigate known actions within the meter via controlled access to the COSEM objects. The clients act as agents for third parties, i.e. the business processes of energy market participants. The standardized COSEM interface classes form an extensible library. Manufacturers use elements of this library to design their products that meet a wide variety of requirements. The server offers means to retrieve the functions supported, i.e. the COSEM objects instantiated. The objects can be organized to logical devices and application associations and to provide specific access rights to various clients. The concept of the standardized interface class library provides different users and manufacturers with a maximum of diversity while ensuring interoperability. The International Electrotechnical Commission (IEC) draws attention to the fact that it is claimed that compliance with this document may involve the use of a patent concerning the Image transfer procedure. The IEC takes no position concerning the evidence, validity and scope of this patent right.
21 IEC :2017 IEC The holder of this patent right has assured the IEC that he/she is willing to negotiate licenses either free of charge or under reasonable and non-discriminatory terms and conditions with applicants throughout the world. In this respect, the statement of the holder of this patent right is registered with the IEC. Information may be obtained from Itron, Inc., Liberty Lake, Washington, USA. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights other than those identified above. The IEC shall not be held responsible for identifying any or all such patent rights. IEC ( maintains on-line databases of patents relevant to its standards. Users are encouraged to consult the databases for the most up to date information concerning patents. Acknowledgement The actual document has been established by the WG Maintenance of the DLMS UA. Subclauses and are based on parts of NIST documents. Reprinted courtesy of the National Institute of Standards and Technology, Technology Administration, U.S. Department of Commerce. Not copyrightable in the United States.
22 14 IEC :2017 IEC 2017 ELECTRICITY METERING DATA EXCHANGE THE DLMS/COSEM SUITE Part 6-2: COSEM interface classes 1 Scope This part of IEC specifies a model of a meter as it is seen through its communication interface(s). Generic building blocks are defined using object-oriented methods, in the form of interface classes to model meters from simple up to very complex functionality. Annexes A to F (informative) provide additional information related to some interface classes. 2 Normative references The following documents are referred to in the text in such a way that some or all of their content constitutes requirements of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. IEC :1996, Distribution automation using distribution line carrier systems Part 4: Data communication protocols Section 32: Data link layer Logical link control (LLC) IEC :1996, Distribution automation using distribution line carrier systems Part 4: Data communication protocols Section 41: Application protocols Distribution line message specification IEC :2000, Distribution automation using distribution line carrier systems Part 4-511: Data communication protocols Systems management CIASE protocol IEC :2001, Distribution automation using distribution line carrier systems Part 4-512: Data communication protocols System management using profile Management Information Base (MIB) IEC :2001, Distribution automation using distribution line carrier systems Part 5-1: Lower layer profiles The spread frequency shift keying (S-FSK) profile IEC TR :2005, Electricity metering Payment systems Part 21: Framework for standardization IEC :2002, Electricity metering Data exchange for meter reading, tariff and load control Part 21: Direct local data exchange IEC :1999, Electricity metering Data exchange for meter reading, tariff and load control Part 31: Using local area networks on twisted pair with carrier signalling NOTE This Edition is referenced in the interface class IEC twisted pair (1) setup (class_id: 24, version: 0). IEC :2013, Electricity metering data exchange The DLMS/COSEM suite Part 3-1: Use of local area networks on twisted pair with carrier signalling NOTE This Edition is referenced in the interface class IEC twisted pair (1) setup (class_id: 24, version: 1).
23 IEC :2017 IEC IEC :2002/AMD1:2006,Electricity metering Data exchange for meter reading, tariff and load control Part 46: Data link layer using HDLC protocol IEC :2017, Electricity metering data exchange The DLMS/COSEM suite Part 5-3: DLMS/COSEM application layer IEC :2017, Electricity metering data exchange The DLMS/COSEM suite Part 6-1: Object identification system (OBIS) IEC :2017, Electricity metering data exchange The DLMS/COSEM suite Part 7-3: Wired and wireless M-Bus communication profiles for local and neighbourhood networks IEC :2013, Electricity metering data exchange The DLMS/COSEM suite Part 8-3: Communication profile for PLC S-FSK neighbourhood networks IEC :2017, Electricity metering data exchange The DLMS/COSEM suite Part 8-6: High speed PLC ISO/IEC profile for neighbourhood networks ISO/IEC :1998, Information technology Telecommunications and information exchange between systems Local and metropolitan area networks Specific requirements Part 2: Logical Link Control ISO/IEC :2009, Information technology Telecommunications and information exchange between systems Powerline communication (PLC) High speed PLC medium access control (MAC) and physical layer (PHY) Part 1: General requirements ISO/IEC/IEEE 60559:2011, Information technology Microprocessor Systems Floating- Point arithmetic ISO 4217, Codes for the representation of currencies ITU-T E.212 ( ), Series E: Overall network operation,telephone service, service operation and human factors International operation Maritime mobile service and public land mobile service The international identification plan for public networks and subscriptions 3GPP TS V ( ), Technical Specification Group Core Network and Terminals; Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 ITU-T G.9903 Amd. 1:2013, Series G: Transmission systems and media, digital systems and networks Access networks In premises networks Narrow-band orthogonal frequency division multiplexing power line communication transceivers for G3-PLC networks NOTE This Recommendation is referenced in version 0 of the G3-PLC setup classes. ITU-T G.9903:2014, Series G: Transmission systems and media, digital systems and networks Access networks In premises networks Narrow-band orthogonal frequency division multiplexing power line communication transceivers for G3-PLC networks NOTE This Recommendation is referenced in version 1 of the G3-PLC setup classes. ITU-T G.9904:2012, Series G: Transmission systems and media, digital systems and networks Access networks In premises networks Narrow-band orthogonal frequency division multiplexing power line communication transceivers for PRIME networks EN :2004, Communication system for and remote reading of meters Part 2: Physical and link layer
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