Status quo of R&D and Product Development on intelligent ...€¦ · Industry Day 2014, Vienna ......
Transcript of Status quo of R&D and Product Development on intelligent ...€¦ · Industry Day 2014, Vienna ......
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Status quo of R&D and Product Development on intelligent Secondary Substations (iONS) Andreas Lugmaier, Head of Research Group “Industrial Networks” Industry Day 2014, Vienna 10.2014
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2013-06-20 Page 2 Andreas Lugmaier / CT RTC Networks and Communication
Agenda
1. Motivation
• Challenges for LV Grids
• Smart Grid Migration Path (LV & MV)
• Smart Grids 2.0
2. Examples for R&D projects and product development
• ISOLVES & GMD
• Smart LV Grid & FITformer® REG –v2 and iONS
3. Summary
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2013-06-20 Page 3 Andreas Lugmaier / CT RTC Networks and Communication
Agenda
1. Motivation
• Challenges for LV Grids
• Smart Grid Migration Path (LV & MV)
• Smart Grids 2.0
2. Examples for R&D projects and product development
• ISOLVES & GMD
• Smart LV Grid & FITformer® REG –v2 and iONS
3. Summary
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Challenges for LV networks
monitoring and management of voltage band become necessary standardized limits: nominal voltage (230V) +/- 10%
asymmetrical load flows real peak load
potential voltage band violations
decentralized generation 230 V
+10%
-10%
U max
U min
overvoltage caused by (assymetrical) DG and/or load
dropping below lower limit due to loads/charging e-cars
voltage problem
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Challenges for LV networks
load flow management to protect network infrastructure become necessary limits: cable loading
load flow problem
R+jX R+jX R+jX R+jX I secondary substation cable (Imax = 355A)
355A
~ ~ 20A 20A
355A 375A 395A
overloading
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Smart Grid Migration Path
Continous grid monitoring
Data validation
Topology mapping
Grid
Monitoring
Efficieny gain
without active control
Big Data
Business Analytics
Operative and strategic grid planning
Efficieny gain
with active control
Voltage Control
Overload Control
Automatic Switching
Smart Market / Smart Grid / Smart Building interaction
Smart Grid Migration Path
Goal: Optimising of CAPEX + OPEX !
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Smartgrids 2.0
LV
source: CIRED 2010, Session 5 Paper 0198
HV
MV
LV
LV
MV
Smartgrids 2.0
+
=
Future Active Network Management
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2013-06-20 Page 8 Andreas Lugmaier / CT RTC Networks and Communication
Agenda
1. Motivation
• Challenges for LV Grids
• Smart Grid Migration Path (LV & MV)
• Smart Grids 2.0
2. Examples for R&D projects and product development
• ISOLVES & GMD
• Smart LV Grid & FITformer® REG –v2 and iONS
3. Summary
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2013-06-20 Page 9 Andreas Lugmaier / CT RTC Networks and Communication
Projects considering LV networks ISOLVES - Power Snap Shot Analysis by Smart Metering (PLC – CX1)
1250.001000.00750.00500.00250.000.00 [m]
0138
4 S
t. K
o..
MU
2946
0255
MU
2946
0275
6023
5349
KK
5352
660
2353
70
6023
5369
KK
5344
1
6023
5371
6023
5338
KK
5344
260
2353
31
KK
5344
360
2353
36
6023
5363
6023
5355
KK
5352
860
2353
52
1.00
0.99
0.98
0.97
0.96
[p.u.]
Leiter-Erde Spannung, Betrag L1 Leiter-Erde Spannung, Betrag L2Leiter-Erde Spannung, Betrag L3
ISOLVES:PSSA-M Spannungsfall-Strang1
Datum: 28.02.2011
Anhang: /2
DIg
SIL
EN
T
„Smart Meters as eyes in the grid ...“ ... especially for unbalanced loads in the LV-grid as a four-wire system ..!
Source: Energie AG Oberösterreich Netz GmbH, A. Abart
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Projects considering LV networks Smart Low Voltage Grid (SLVG)
Feld Test Gebiete Köstendorf/S – Eberstalzell/OÖ
Photovoltaic every 2nd roof“
E-Car „every 2nd car“
„Validation of solutions for future problems!“
Smart LV Grid Konzepte Smart planning, monitoring, control
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
Co-Simulation Field tests
Test systems
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
Sim
ulation Message B
us (SM
B)
Communication Simulator
Grid Controller
Power Grid Simulator
Substation Automation Model
Modell / Simulation LV OLTC &Control
Dataconcentrator
Powerline-Communication
LV Grid
Illustration: Abart/Kupzog
Field Test
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
LV Grid – Testsystem
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
Field Test 1: Eberstalzell / Energie AG Netz / Upper Austria Illustration: Abart/Kupzog
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
Field Test 2: Köstendorf / Salzburg Netz / Salzburg Illustration: Abart/Kupzog
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Projects considering LV networks - Smart Low Voltage Grid (SLVG) Development of intelligent Monitoring & Control
Field Test Köstendorf / Salzburg Netz / Salzburg
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2013-06-20 Page 17 Andreas Lugmaier / CT RTC Networks and Communication 23.Mai 2014
Results of R&D Projects and ongoing Product Development - Example 1: Grid Monitoring Device & Datenauswertung - AMIS TD-3551/3552
e3 Phasen Messbaugruppe: 3x230/400V bzw. 100/250/500A
Erfassung von Spannungs – und Strom Effektivwerten; Genauigkeit: Klasse=1
Abgeleitete Werte: P+ / P-; Q+ / Q-; (Lastgangspeicher : 60 Tage 15 Minwerte) f, cos ϕ P
Integrierte DLC-Kommunikation (EN 50065-1; 3-95 kHz)
Infrarot-Schnittstelle für lokales Auslesen und Parametrieren
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2013-06-20 Page 18 Andreas Lugmaier / CT RTC Networks and Communication 23.Mai 2014
Results of R&D Projects and ongoing Product Development - Example 2: FITformer® REG –v2
Leistungsbereich bis 630 kVA, max. Betriebsspannung: 36 kV
Unterspannungs-Lastregelbereich in drei Stufen
Zusätzlicher Oberspannungsseitiger Einstellbereich für optimalen Betrieb: +/- 2,5% und +/- 5% (Einstellbar im spannungslosen Zustand)
Separate Steuer- und Regelungseinheit für erleichterten Zugang sowie Wartung
Regeleinheit enthält ausschließlich elektromechanische Bauelemente (Verbesserung von Sicherheit u. Wartung)
Neue Verbindung der Cast Resin Durchführung (verbesserte Abdichtung)
Luftschütze Optimiertes Layout der Komponenten Neue Steuerung mit höherem Isolationslevel, sowie
integrierter IEC 60870-5-104/101 und Modbus RTU Kommunikation
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2013-06-20 Page 19 Andreas Lugmaier / CT RTC Networks and Communication 23.Mai 2014
Results of R&D Projects and ongoing Product Development - Example 3: Abgesetzte / Retrofit Lösung für automatisierte Ortsnetzstationen (MS & NS)
1 3
4
2 6
5
Komponenten einer automatisierten ONS im abgesetzten RTU-Schrank: 1 RTU SICAM CMIC (SPS) – Modbusverbindung mit MS-FCM und zB Linak Motor 2 Feeder Condition Monitor SICAM FCM (in der NS) 3 Power Quality Recorder SICAM P855 (in der NS) 4 SiTop USV mit Stromversorgungseinheit und Batterie 5 freier Platz für Modem 6 Sicherungsautomaten
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Agenda
1. Motivation
• Challenges for LV Grids
• Smart Grid Migration Path (LV & MV)
• Smart Grids 2.0
2. Examples for R&D projects and product development
• ISOLVES & GMD
• Smart LV Grid & FITformer® REG –v2 and iONS
3. Summary
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2013-06-20 Page 21 Andreas Lugmaier / CT RTC Networks and Communication
Summary
1. Grid
Monitoring
2. Efficieny gain
without active control
From Research to Products to Smart Grid Migration Path
3. Efficieny gain
with active control
R&D, Test systems & Field tests
Products & Migration Path
Optimising of
CAPEX + OPEX !
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2013-06-20 Page 22 Andreas Lugmaier / CT RTC Networks and Communication
Andreas Lugmaier
Siemens AG Österreich Research & Technologies
CT RTC Networks & Communication Industrial Networks Austria
E-mail: [email protected]
Thank you for your attention!
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