richard schomberg iea paris...1 march, 2016 . 2 iea getting smart energy systems to scale -...
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International
Electrotechnical
Commission
Richard Schomberg Chair IEC Smart Energy
EDF Smart Energy Standards
IEA
Paris
1 March, 2016
2 IEA Getting smart energy systems to scale - Schomberg IEC - March 2016
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common data
common
language
common behaviour
interchangeability from specifications, not from blueprints
to allow competition for innovation !
interoperability
Equipment
Vendor B
Equipment
Vendor A
IEA Getting smart energy systems to scale - Schomberg IEC - March 2016
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concepts
field
Reference
Architecture
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IntelliGrid Methodology for
Developing Requirements for
Energy Systems
User expected
services
Sub system
Sub system
Sub system
Sub system
Sub system
Standard building blocks IEA Getting smart energy systems to scale - Schomberg IEC - March 2016
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• Many organizations have started regional or international
processes to deliver to the industry recommendations on Smart
Grid standards
• The general consensus on the approach is:
Collect the needs (national, regional or international)
Inventory and characterize the existing standards
Spot standards inconsistencies
Define and prioritize what should be added
• But the needs, priorities, and respective screening methods
present normal and legitimate variations
• IEC is analyzing all those (valuable) inputs to propose
harmonization and suitable international course of
action
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IEC Project Committee (PC118) for cross-connecting applications:
WG1- Consumer interfaces
WG2- Demand Response
• Consumer
applications
• Smart homes
and buildings
• PHEV
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Consum
er device Consum
er device Consum
er device Consum
er device Consum
er device Consum
er device Consumer
device
Data
Consum
er device Consum
er device Consum
er device Consum
er device Consum
er device Consum
er device Consumer
device
Gate
way
Gate
way
Gate
way
Electric
sector
Electric
sector
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• Standardization at all levels to ensure interoperability and reduce
technology risk for utilities
• Enables common application layer services over various wired and
wireless communication technologies
IEEE 802.15.4g
(FSK, DSSS, OFDM)
IEEE 802.15.4 MAC (including FHSS
6LoWPAN (RFC 6282)
G3-PLC PHY
Routing IPv6 / IPv4 Addressing, Multicast, QoS, Security
IEEE 802.3
Ethernet
2G / 3G / LTE
Cellular
IEEE 802.16
WiMax
TCP/UDP
Web Services/EXI
IEEE 802.15.4
2.4GHz DSSS
IEEE 802.15.4
MAC
HTTPS/CoAP
IEC 61968 CIM
ANSI C12.19/C12.22
DLMS COSEM
IEC 60870 DNP IEC 61850
PH
Y /
MA
C
Fu
nc
tio
na
lity
Netw
ork
Fu
nc
tio
na
lity
Ap
p.
Laye
r
Co
mm
. N
etw
ork
La
ye
r
802.1x / EAP-TLS based Access Control Solution
MODBUS
IEEE 802.11
Wi-Fi
IETF RFC 2464
G3-PLC MAC
802.15.4e MAC enhancements
IEEE
1888
SNMP, IPfix,
DNS, NTP,
SSH,…
IETF RFC 5072 IETF RFC 5121
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IEC IEV 191-02-03
IEC TC 56
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Regional Smart Grid coordination groups:
USA, Europe, Japan, Korea, China
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• IEC is organizing standardization at the System level to
deliver the full value.
• For proper Smart Energy Standards implementation, they
should be easy to understand and easy to use! IEC is
organizing a « one-stop shop » comprehensive portfolio
of Standards with facilitated navigation capabilities.
• IEC is looking for long term solutions, taking fully into
account the legacy deployments and the legacy in terms
of Standards.
• IEC implements sustainable processes in order to
develop step by step the expected portfolio of Standards,
working with other SDOs, and analyzing major valuable
inputs from regional organizations
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