Showing posts with label COSEM. Show all posts
Showing posts with label COSEM. Show all posts

Sunday, September 20, 2015

IEC TC 57 Reference Architecture For Power Systems Management And Associated Information Exchange

IEC TC 57 just published a new draft for IEC TR 62357-1 Ed. 2 “Power systems management and associated information exchange – Part 1: Reference architecture” (57/1621/DC)

“The new edition provides updates and defines layered Reference Architecture to help direct longer term goals and activities, specifically to ensure compatibility of all new standards developed in TC57 by benefitting from lessons learned during development of the current standards and their application on actual utility projects as well as through application of other internationally recognized architecture standards.

This edition reflects the progress recently achieved from the international Smart Grids (SG) initiatives and the CIGRE D2.24 large system architecture vision. It also leverage the work done by NIST-SGIP, CEN-CELELEC-ETSI SGCG M490, IEC TC8 Smart Grids Roadmap, and IEC TC8 WG5, WG6, The edition also reflects the most recent editions of the TC 57 standards including IEC 61850 Edition 2 and the IEC 61968, 61970, and 62325 Common Information Model (CIM) standards.”

One of the lessons learned is that the three information models (CIM, IEC 61850 and COSEM) need some additional harmonization – a reasonable level has already be reached.

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IEC 61850 has a very broad application domain and has defined many useful information models that can (and will) be “tapped” by COSEM and CIM applications.

One example that shows that IEC 61850 can be used even for schedules (de: Fahrpläne):

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These schedules can be mapped from COSEM directly to IEC 61840 logical node FSCH. COSEM may be used for flexible tariffs while IEC 61850 could be used for tariffs as well as for control of switchable equipment like circuit breakers or change settings for loads or generation. The schedule LN is applied in the VHPready 4.0 specification.

More to come soon.

Tuesday, August 4, 2015

IEC 61850-80-4 Translation from COSEM to IEC 61850

IEC TC 57 just published the draft Technical Specification (57/1602/DTS):

IEC 61850-80-4 TS:
Communication networks and systems for power utility automation –
Part 80-4: Translation from COSEM object model (IEC 62056) to the IEC 61850 data model

Voting terminates on 2015-10-30

This part defines the one-to-one relationship of IEC 62056 OBIS codes to IEC 61850 Logical Nodes. The purpose is to increase the availability of revenue meter information to other applications defined within the IEC 61850 framework. This increased visibility will contribute to information available for smart grid applications.

Tuesday, November 18, 2014

COSEM Object Model (IEC 62056) carried with IEC 61850 Data Model

IEC TC 57 has just published a very interesting new draft (57/1521/CD):

IEC 61850-80-4 TS:
Communication networks and systems for power utility automation - Part 80-4:
Translation from COSEM object model (IEC 62056) to the IEC 61850 data model

The IEC 61850 is already THE international Standard series when it comes to (electric) power applications and information modeling and exchange. Metering Information is quite often exchanged with DLMS and COSEM:

COSEM (Companion Specification for Energy Metering) is part of the DLMS (Device Language Message Specification)

This information needs to be “fed” into the IEC 61850 world. That is done by defining how the corresponding COSEM information can be wrapped with IEC 61850 Logical Nodes and Data Objects. The title says: Translated … which means the same.

Here is an example:

IEC 61850 Data

COSEM OBIS Code

Explanation

TotVAh

(1-b:9.8.0.255) – (1-b:10.8.0.255)

Net apparent energy

TotWh

1-b:1.8.0.255 - 1-b:2.8.0.255 (¦+A¦ - ¦-A¦)

Net real energy

TotVArh

1-b:3.8.0.255 - 1-b:4.8.0.255 (¦+R¦ - ¦-R¦)

Net reactive energy

SupWh

1-b:1.8.0.255 (+A)

Real energy supply (default supply direction: energy flow towards busbar and is equivalent to Energy Export[+])

SupVArh

1-b:3.8.0.255 (+R)

Reactive energy supply (default supply direction: energy flow towards busbar and is equivalent to Energy Export[+])

DmdWh

1-b:2.8.0.255 (-A)

Real energy demand (default demand direction: energy flow from busbar away and is equivalent to Energy Import[-])

DmdVArh

1-b:4.8.0.255 (-R)

Reactive energy demand (default demand direction: energy flow from busbar away and is equivalent to Energy Import[-])

These IEC 61850 Logical Nodes are of interest for the translation:

MMTR - Metering 3 Phase
MMTN - Metering Single Phase
MMXU - Measurement
MMXN - Non-phase-related measurement
MMDC - DC measurement
MSQI - Sequence and imbalance
MHAN - Non-phase-related harmonics or interharmonics
MHAI - Harmonics or interharmonics
MFLK - Flicker measurement

Closing date for comments: 2015-02-20