BS EN 62056-3-1:2014
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
Electricity metering data exchange. The DLMS/COSEM suite Use of local area networks on twisted pair with carrier signalling
Hardcopy , PDF
01-10-2021
English
31-03-2014
1 Scope
2 Normative references
3 Abbreviations
4 General description
5 Local bus data exchange without DLMS
6 Local bus data exchange with DLMS
7 Local bus data exchange with DLMS/COSEM
8 Local bus data exchange - Hardware
Annex A (normative) - Specification language
Annex B (normative) - Timing types and characteristics
Annex C (normative) - List of fatal errors
Annex D (normative) - Coding the command code field of
frames
Annex E (normative) - Principle of the CRC
Annex F (normative) - Random integer generation for response
from forgotten stations
Annex G (normative) - Random number generation for authentication
(profile without DLMS)
Annex H (normative) - Systems management implementation
Annex I (informative) - Information about exchanges
Bibliography
Annex ZA (normative) - Normative references to
international publications with their
corresponding European publications
Defines three profiles for local bus data exchange with stations either energized or not.
Committee |
PEL/13
|
DevelopmentNote |
Supersedes BS EN 62056-31 & 10/30230270 DC. (04/2014)
|
DocumentType |
Standard
|
Pages |
118
|
PublisherName |
British Standards Institution
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
IEC 62056-3-1:2013 describes three profiles for local bus data exchange with stations either energized or not. For non-energized stations, the bus supplies energy for data exchange. Three different profiles are supported:
- base profile;
- profile with DLMS;
- profile with DLMS/COSEM. The three profiles use the same physical layer and they are fully compatible, meaning that devices implementing any of these profiles can be operated on the same bus. The transmission medium is twisted pair using carrier signalling and it is known as the Euridis Bus. This first edition cancels and replaces the first edition of IEC 62056-31, issued in 1999, and constitutes a technical revision. The main technical changes are:
- addition of a profile which makes use of the IEC 62056 DLMS/COSEM Application layer and COSEM object model,
- review of the data link layer which is split into two parts: a pure Data Link layer; a \'Support Manager\' entity managing the communication media;
- ability to negotiate the communication speed, bringing baud rate up to 9 600 bauds.
Standards | Relationship |
EN 62056-3-1:2014 | Identical |
IEC 62056-3-1:2013 | Identical |
EN 61334-4-41:1996 | Distribution automation using distribution line carrier systems - Part 4: Data communication protocols - Section 41: Application protocols - Distribution line message specification |
IEC TS 62056-51:1998 | Electricity metering - Data exchange for meter reading, tariff and load control - Part 51: Application layer protocols |
IEC 62056-5-3:2017 | Electrcity metering data exchange - The DLMS/COSEM suite - Part 5-3: DLMS/COSEM application layer |
EN 62056-5-3:2017 | Electricity metering data exchange - The DLMS/COSEM suite - Part 5-3: DLMS/COSEM application layer |
IEC 61334-4-41:1996 | Distribution automation using distribution line carrier systems - Part 4: Data communication protocols - Section 41: Application protocol - Distribution line message specification |
IEC 62056-6-1:2017 | Electricity metering data exchange - The DLMS/COSEM suite - Part 6-1: Object Identification System (OBIS) |
ISO/IEC 8482:1993 | Information technology Telecommunications and information exchange between systems Twisted pair multipoint interconnections |
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