prEN IEC 63402-1:2024
(Main)Energy efficiency systems - Smart grid - Application specification - Interface and framework for customer; interface between the CEM and home/building resource manager - General requirements and architecture
Energy efficiency systems - Smart grid - Application specification - Interface and framework for customer; interface between the CEM and home/building resource manager - General requirements and architecture
Systèmes pour l'efficacité énergétique - Réseau intelligent - Spécification d'application - Interface et cadre pour le client; interface entre le gestionnaire d'énergie pour le client et le gestionnaire de ressources pour foyers domestiques/bâtiments - Exigences générales et architecture
Sistemi energijske učinkovitost - Pametno omrežje - Specifikacije aplikacije - Vmesnik in okvir za odjemalca; Vmesnik med upravljalcem stanovanjskih in stavbnih virov (CEM) - Splošne zahteve in arhitektura
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Standards Content (Sample)
SLOVENSKI STANDARD
01-junij-2024
Sistemi energijske učinkovitost - Pametno omrežje - Specifikacije aplikacije -
Vmesnik in okvir za odjemalca; Vmesnik med upravljalcem stanovanjskih in
stavbnih virov (CEM) - Splošne zahteve in arhitektura
Energy efficiency systems - Smart grid - Application specification - Interface and
framework for customer; interface between the CEM and home/building resource
manager - General requirements and architecture
Systèmes pour l'efficacité énergétique - Réseau intelligent - Spécification d'application -
Interface et cadre pour le client; interface entre le gestionnaire d'énergie pour le client et
le gestionnaire de ressources pour foyers domestiques/bâtiments - Exigences générales
et architecture
Ta slovenski standard je istoveten z: prEN IEC 63402-1:2024
ICS:
27.015 Energijska učinkovitost. Energy efficiency. Energy
Ohranjanje energije na conservation in general
splošno
35.240.67 Uporabniške rešitve IT v IT applications in building
gradbeništvu and construction industry
97.120 Avtomatske krmilne naprave Automatic controls for
za dom household use
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.
23K/92/CDV
COMMITTEE DRAFT FOR VOTE (CDV)
PROJECT NUMBER:
IEC 63402-1 ED1
DATE OF CIRCULATION: CLOSING DATE FOR VOTING:
2024-03-29 2024-06-21
SUPERSEDES DOCUMENTS:
23K/84/CD, 23K/91/CC
IEC SC 23K : ELECTRICAL ENERGY EFFICIENCY PRODUCTS
SECRETARIAT: SECRETARY:
France Mr Philippe Vollet
OF INTEREST TO THE FOLLOWING COMMITTEES: PROPOSED HORIZONTAL STANDARD:
TC 13,TC 23,TC 57,TC 64,TC 69,SyC Smart
Energy
Other TC/SCs are requested to indicate their interest, if any,
in this CDV to the secretary.
FUNCTIONS CONCERNED:
EMC ENVIRONMENT QUALITY ASSURANCE SAFETY
SUBMITTED FOR CENELEC PARALLEL VOTING NOT SUBMITTED FOR CENELEC PARALLEL VOTING
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CENELEC, is drawn to the fact that this Committee Draft for
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clauses to be included should this proposal proceed. Recipients are reminded that the CDV stage is the final stage for
submitting ISC clauses. (SEE AC/22/2007 OR NEW GUIDANCE DOC).
TITLE:
Energy efficiency systems - Smart grid - Application specification - Interface and framework
for customer; Interface between the CEM and Home/Building Resource manager - General
Requirements and Architecture
PROPOSED STABILITY DATE: 2027
NOTE FROM TC/SC OFFICERS:
After resolution of 23K/84/CD comments, officiers support the circulation of this CVD.
electronic file, to make a copy and to print out the content for the sole purpose of preparing National Committee positions.
You may not copy or "mirror" the file or printed version of the document, or any part of it, for any other purpose without
permission in writing from IEC.
IEC CDV 63402-1 © IEC 2024 2 23K/92/CDV
1 CONTENTS
3 FOREWORD . 4
4 INTRODUCTION . 6
5 1 Scope . 7
6 2 Normative references . 7
7 IEC63110-1 Protocol for management of electric vehicles charging and discharging
8 infrastructures - Part 1: Basic definitions, use cases and architectures . 7
9 3 Terms, definitions and abbreviations . 7
10 3.1 Terms and definitions . 7
11 3.2 Abbreviations . 9
12 4 Design considerations . 10
13 4.1 General . 10
14 4.2 Data security / privacy design guidelines . 10
15 4.2.1 General . 10
16 4.2.2 Data security / privacy on the smart grid side . 10
17 4.2.3 Data security / privacy on premises side . 11
18 4.2.4 Customer Energy Management System security . 11
19 4.3 Device type agnostic energy management . 11
20 4.4 Clock alignment . 11
21 4.5 Energy management system resilience . 11
22 5 Background . 12
23 Figure 1 — Future Electricity Network . 12
24 6 Smart Grid premises architecture . 14
25 6.1 Single CEM energy management architecture . 14
26 6.1.1 General . 14
27 Figure 4a — Single CEM energy management architecture with a divided Actor B . 16
28 6.1.2 Interface S0 . 16
29 6.1.3 Energy Management Gateway (EMG) . 17
30 6.1.4 Interface S1 . 17
31 6.1.5 Customer Energy Manager (CEM) . 17
32 6.1.6 Interface S2 . 18
33 6.1.7 Interface M1 . 18
34 6.1.8 Resource manager . 19
35 6.1.9 HBES, SASS and Smart Devices . 19
36 6.1.10 Single CEM energy management architecture including EV . 19
37 6.1.11 Single CEM energy management architecture with increased resilience. 21
38 6.2 Cascaded CEM energy management architecture . 21
39 6.2.1 General . 21
40 6.2.2 Interface S0 . 22
41 6.2.3 Energy Management Gateway . 22
42 6.2.4 Interface S1 . 22
43 6.2.5 Interface S3 . 22
44 6.2.6 Interface M1 . 22
45 6.2.7 BEM . 23
46 6.2.8 PCC monitor . 23
47 6.2.9 CEM . 24
48 6.2.10 S2 Interface . 24
IEC CDV 63402-1 © IEC 2024 3 23K/92/CDV
49 6.2.11 Resource Manager . 24
50 6.2.12 Cascaded CEM energy management architecture with EV . 24
51 7 User Stories and Use Cases . 24
52 7.1 Requirements for interoperability . 24
53 7.2 Determining the requirements for Interface S2 . 25
54 7.3 Extensibility of S2 Requirements . 25
55 Annex A (informative) Use Case example . 26
56 Annex B (informative) Some CEM energy management architecture examples with different
57 loads / generators . 28
58 B.1 CEM energy management architecture with PV . 28
59 B.2 CEM energy management architecture with battery . 28
60 B.3 CEM energy management architecture with CHP . 29
61 B.4 Cascaded CEM energy management architecture . 30
62 Bibliography . 31
64 Figure 2 – Abstract view of Future Electricity Network described by the Smart Grid Reference
65 Architecture (SGAM) Model . 13
66 Figure 3 – Graphical representation of a Premises smart grid system . 14
67 Figure 4 – Single CEM energy management architecture . 15
68 Figure 5 – Figure title . 20
69 Figure 5b Single CEM energy management architecture including an EV. 20
70 Figure 6 – Single CEM energy management architecture with increased resilience . 21
71 Figure 7 – Cascaded CEM energy management architecture . 22
72 Figure 8 – Cascaded CEM energy management architecture with EV . 24
73 Figure A.1 – Sequence diagrams use cases JWG1101 and JWG1102 (IEC/TR 62746-2) . 27
75 No table of figures entries found.
IEC CDV 63402-1 © IEC 2024 4 23K/92/CDV
78 INTERNATIONAL ELECTROTECHNICAL COMMISSION
79 ____________
81 Smart grid - Application specification - Interface and framework for customer;
83 Interface between the CEM and Home/Building Resource manager
84 General Requirements and Architecture
87 FOREWORD
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