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BS EN 50491-11-2015 General requirements for Home and Building Electronic Systems (HBES) and Building Automation and Control Systems (BACS) Smart Metering Application Specification.pdf

1、BSI Standards PublicationBS EN 50491-11:2015General requirements forHome and Building ElectronicSystems (HBES) and BuildingAutomation and ControlSystems (BACS)Part 11: Smart Metering ApplicationSpecifications Simple External ConsumerDisplayBS EN 50491-11:2015 BRITISH STANDARDNational forewordThis Br

2、itish Standard is the UK implementation of EN 50491-11:2015.The UK participation in its preparation was entrusted to TechnicalCommittee IST/6/-/12, Home Electronic Systems.A list of organizations represented on this committee can beobtained on request to its secretary.This publication does not purpo

3、rt to include all the necessaryprovisions of a contract. Users are responsible for its correctapplication. The British Standards Institution 2015. Published by BSI StandardsLimited 2015ISBN 978 0 580 85244 2ICS 97.120Compliance with a British Standard cannot confer immunity fromlegal obligations.Thi

4、s British Standard was published under the authority of theStandards Policy and Strategy Committee on 30 June 2015.Amendments issued since publicationDate Text affectedBS EN 50491-11:2015EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 50491-11 June 2015 ICS 97.120 English Version General requir

5、ements for Home and Building Electronic Systems (HBES) and Building Automation and Control Systems (BACS) - Part 11: Smart Metering - Application Specifications - Simple External Consumer Display Exigences gnrales pour systmes lectroniques pour les foyers domestiques et les btiments (HBES) et pour s

6、ystmes de gestion technique du btiment (SGTB) - Partie 11: Comptage intelligent - Spcifications dapplication - Affichage simple et externe du client Allgemeine Anforderungen an die Elektrische Systemtechnik fr Heim und Gebude (ESHG) und an Systeme der Gebudeautomation (GA) - Teil 11: Smart Metering

7、- Applikationsbeschreibung - Einfache externe Verbrauchsanzeige This European Standard was approved by CENELEC on 2015-05-04. 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 standa

8、rd 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

9、 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, Croat

10、ia, 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, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turke

11、y and the United Kingdom. European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung CEN-CENELEC Management Centre: Avenue Marnix 17, B-1000 Brussels 2015 CENELEC All rights of exploitation in any form and

12、by any means reserved worldwide for CENELEC Members. Ref. No. EN 50491-11:2015 E BS EN 50491-11:2015EN 50491-11:2015 (E) 2 Contents Foreword 4 Introduction 5 1 Scope . 6 2 Normative References 6 3 Terms, definitions and abbreviations . 6 3.1 Terms and definitions 6 3.2 Abbreviations 7 4 General refe

13、rence model . 8 5 Requirements for the Data interface 10 5.1 General 10 5.2 Minimization of data transmission . 11 5.3 Data consistency 11 5.4 Filtering of message types and data points 11 6 Conformity and Testing . 12 7 Metering Functional Blocks of MDC . 12 7.1 MDC Heat Meter (M_HEATM) . 12 7.1.1

14、Aims and objectives . 12 7.1.2 Functional specification 12 7.1.3 Constraints 12 7.1.4 Data Point Overview . 13 7.2 MDC Heat Cost Allocator (M_HCA) . 15 7.2.1 Aims and objectives . 15 7.2.2 Functional specification 15 7.2.3 Constraints 15 7.2.4 Data Point Overview . 16 7.3 MDC Water Meter (M_WATERM)

15、. 17 7.3.1 Aims and objectives . 17 7.3.2 Functional specification 17 7.3.3 Constraints 17 7.3.4 Data Point Overview . 18 7.4 MDC Generic Meter (M_GENERICM) 19 7.4.1 Aims and objectives . 19 7.4.2 Functional specification 19 7.4.3 Constraints 20 7.4.4 Data Point Overview . 20 7.5 MDC Gas Meter (M_GA

16、SM) 21 7.5.1 Aims and objectives . 21 7.5.2 Functional specification 21 7.5.3 Constraints 22 7.5.4 Data Point Overview . 22 7.6 MDC Electricity Meter (M_ELECM) . 23 7.6.1 Aims and objectives . 23 7.6.2 Functional specification 23 7.6.3 Constraints 24 7.6.4 Data Point Overview . 24 7.7 MDC Breaker (M

17、_BREAKERM) 26 7.7.1 Aims and objectives . 26 7.7.2 Functional Specification 26 7.7.3 Constraints 26 7.7.4 Datapoint description. 26 7.8 MDC Valve (M_VALVEM) 27 7.8.1 Aims and objectives . 27 7.8.2 Functional Specification 27 7.8.3 Constraints 28 BS EN 50491-11:2015EN 50491-11:2015 (E) 3 7.8.4 Datapo

18、int description. 28 8 Metering Data model 29 8.1 Introduction . 29 8.2 Boolean Value . 29 8.3 1-octet unsigned counter value 30 8.4 Datapoint Types 2-Octet Float Value” 30 8.5 2-octet unsigned counter value 31 8.6 4-Octet Signed unsigned counter Value 31 8.7 4 Octet signed time period 31 8.8 Datapoi

19、nt Type “MeteringValue” 32 8.8.1 General 32 8.8.2 Coding General . 32 8.8.3 Coding VallnfField 33 8.8.4 Coding Status . 34 8.8.5 Recommended display format for metering data . 34 8.9 DPT Active Energy . 35 8.10 DPT for tariff information . 36 8.11 DPT_Currency . 36 8.12 DPTs for Price Information 37

20、 8.13 Format of DPT_DateTime 37 8.13.1 Coding . 37 8.13.2 Remarks to the coding of DPT_DateTime 38 8.14 Datapoint Type DPT_Metering_DeviceType 41 8.15 Datapoint Type Character Set . 42 8.16 Datapoint Type DPT_VarString_8859_1 . 43 8.17 DPT_Gas_Measurement_Condition . 43 8.18 Datapoint Type DPT_Meter

21、_BreakerValve_State 44 8.19 Datapoint Type DPT_Meter_Mode 44 8.20 Datapoint Type DPT_Power_Threshold_Status 45 8.21 Datapoint Type DPT_Battery_Status 45 Bibliography . 46 BS EN 50491-11:2015EN 50491-11:2015 (E) 4 Foreword This document (EN 50491-11:2015) has been prepared by CLC/TC 205 “Home and Bui

22、lding Electronic Systems (HBES)“. The following dates are fixed: latest date by which this document has to be implemented at national level by publication of an identical national standard or by endorsement (dop) 2016-05-04 latest date by which the national standards conflicting with this document h

23、ave to be withdrawn (dow) 2018-05-04 Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. CENELEC and/or CEN shall not be held responsible for identifying any or all such patent rights. This document has been prepared under a mandate g

24、iven to CENELEC by the European Commission and the European Free Trade Association. EN 50491-11 is part of the EN 50491 series, General requirements for Home and Building Electronic Systems (HBES) and Building Automation and Control Systems (BACS), which comprises the following parts: Part 1: Genera

25、l; Part 2: Environmental conditions; Part 3: Electrical safety requirements; Part 4-1: General functional safety requirements for products intended to be integrated in Building Electronic Systems (HBES) and Building Automation and Control Systems (BACS); Part 5-1: EMC requirements, conditions and te

26、st setup; Part 5-2: EMC requirements for HBES/BACS used in residential, commercial and light industry environment; Part 5-3: EMC requirements for HBES/BACS used in industry environment; Part 6-1: HBES installations Installation and planning; Part 6-3: HBES installations Assessment and definition of

27、levels Technical Report CLC/TR 50491-6-3; Part 11: Smart Metering Application Specification Simple External Consumer Display (the present document); Part 12: Smart grid Application specification Interface and framework for customer (currently at Enquiry stage). BS EN 50491-11:2015EN 50491-11:2015 (E

28、) 5 Introduction In March 2009, the European Commission issued a mandate M/441 for the standardization of smart metering functionalities and communication for usage in Europe for electricity, gas, heat and water applications to ensure interoperability of technologies and applications within a harmon

29、ized European market. As a result, a Technical Report, CEN/CLC/ETSI TR 50572, Functional Reference Architecture for Communications in Smart Metering Systems, was published in December 2011. As a consequence of this work and in line with the CEN/CLC/ETSI TR 50572 functional reference architecture, CL

30、C/TC 205, responsible for Home and Building Electronic Systems, was entrusted with the task to formulate standards for the communication from the smart metering system towards the home. BS EN 50491-11:2015EN 50491-11:2015 (E) 6 1 Scope This European Standard specifies a data model to abstract the me

31、tering world towards a simple external consumer display. The data model, as described by means of functional blocks contained in this European Standard, lays down the format of metering data accessible by a simple external consumer display. This data interface would be typically part of the meter co

32、mmunication functions and be accessed by a simple external consumer display via the H1 interface of the CEN/CLC/ETSI TR 50572 between the display and the meter communication functions. The data interface specified in this document may also be accessed by the LNAP or NNAP through the C or M interface

33、, after which the data could be accessed by HBES devices through the H2 and H3 interface. In other words, in this way the same data model can be used both on the H1 as well as the H2 and H3 interface. The document specifies neither the communication mechanisms used on the data interface, nor the app

34、lied data privacy and security mechanisms nor the ergonomics of the simple external consumer displays, where national regulations may apply. The document does also not specify the communication protocol used between the meters and the meter communication functions. However, it takes into account the

35、 existing European standards like the EN 13757 series (in particular EN 13757-3:2013 and its Annex O) and the EN 62056 series for the definition of the data model. 2 Normative References The following documents, in whole or in part, are normatively referenced in this document and are indispensable f

36、or its application. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. EN 13757 (all parts), Communication system for meters prEN 50491-12, General requirements for Home and Building Electron

37、ic Systems (HBES) and Building Automation and Control Systems (BACS) Part 12: Smart grid Application specification Interface and framework for customer CEN/CLC/ETSI TR 50572, Functional Reference Architecture for Communications in Smart Metering Systems EN 62056 (all parts), Electricity metering dat

38、a exchange The DLMS/COSEM suite (IEC 62056, all parts) ISO 4217, Codes for the representation of currencies and funds ISO/IEC 8859-1, Information technology 8-bit single-byte coded graphic character sets Part 1: Latin alphabet No. 1 3 Terms, definitions and abbreviations 3.1 Terms and definitions 3.

39、1.1 meter instrument for measuring, memorizing and displaying data related to the consumption of a commodity BS EN 50491-11:2015EN 50491-11:2015 (E) 7 3.1.2 data point container element, in which information is located related to a function of a product (in e.g. memory or a register) 3.2 Abbreviatio

40、ns C C interface for the term and definition, see CEN/CLC/ETSI TR 50572 Cs Company Specific FB Functional Block H1 H1 interface for the term and definition, see CEN/CLC/ETSI TR 50572 H2 H2 interface for the term and definition, see CEN/CLC/ETSI TR 50572 H3 H3 interface for the term and definition, s

41、ee CEN/CLC/ETSI TR 50572 LNAP Local Network Access Point - for the term and definition, see CEN/CLC/ETSI TR 50572 M M interface for the term and definition, see CEN/CLC/ETSI TR 50572 NA Not Allowed / Not Applicable MCF Meter Communication Function for the term and definition, see CEN/CLC/ETSI TR 505

42、72 NNAP Neighbourhood Network Access Point for the term and definition, see CEN/CLC/ETSI TR 50572 HVAC Heating Ventilation Air Conditioning BS EN 50491-11:2015EN 50491-11:2015 (E) 8 4 General reference model Figure 1 Metering system topology from CEN/CLC/ETSI/TR 50572 Reference is made to the Refere

43、nce architecture diagram for smart metering communications as given in CEN/CLC/ETSI/TR 50572. In this European Standard, a functional block is specified for each typical metering function, grouping a number of in- and output data points, as depicted in Figure 1. Figure 1 depicts logical entities and

44、 not physical devices. NOTE 1 This standard does not define requirements for devices acting as data sources for the simple external consumer display (devices sending input on the I interface shown in Figure 1) and are covered by other European standards. In line with the M/441 architecture, the info

45、rmation flow on the H1 is predominantly from the meter communication function in one or more meters to one or more simple external consumer displays (or optionally one common display), whereby the latter acts as sink of the information obtained through the H1 interface from the meter communication f

46、unctions. Where necessary, the consumer display may poll data from the meter communication functions, e.g. historical values. In no case shall it be able to alter metering data through the consumer display. Hence, most functional blocks of the data interface specified in this European Standard conta

47、in data that are intended as output data to a connected display. BS EN 50491-11:2015EN 50491-11:2015 (E) 9 The data structures used on the H1 interface are part of this European Standard. All other underneath described interfaces are informative. NOTE 2 The wired Meter communication according to EN

48、13757-2 / EN 13757-6 is only applicable if it is used exclusively for the H1 interface. The functional blocks specified in this document may also be accessed by the LNAP or NNAP through the C or M interface, after which the data could be accessed bi-directionally with HBES devices through the H2 and

49、 H3 interface. The communication on the H2 and H3 interface is part of prEN 50491-12. For each connected metering function (Tx Meter in Figure 1), the corresponding metering communication function shall hold an entity of the corresponding functional block. The input for each connected metering function is supplied by meters complying with the EN 62056 and EN 13757 series and is not part of this standard. The input to the LNAP and NNAP is due to be part of the IEC 627461). The measurable quantities

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