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© 2023 UL LLC. All rights reserved.
UL Renewables
Grid Code Compliance – Importance and
Best Practices
Nivedh BS
Business Manager – Wind TIC, Asia Pacific
ULS22CS458635
Hanoi
Feb 24th 2023
ANNOUNCING OUR NEW BRANDS
Three organizations.
One shared mission.
Working for a safer world.
Safety
Science
ULS22CS458635
UL Empowers Trust
in Renewables
© 2023 UL LLC. All rights reserved
3
© 2023 UL LLC. All rights reserved 4
Empowering Trust in Renewables Through:
Testing, Inspection,
Certification
Technical Advisory Digital Solutions
© 2023 UL LLC. All rights reserved 5
LENDERS & INVESTORS
INVESTOR/LENDER’S ENGINEER ON OVER 400
WIND & SOLAR PROJECTS SINCE 2012
DEVELOPERS & OWNERS
WE WORKED WITH 90% OF THE INDUSTRY’S TOP
PROJECT DEVELOPERS AND PLANT OWNERS
UTILITIES
OUR ANNUAL
FORECASTING CLIENT
RENEWAL RATE IS 97%
6
POLICY MAKERS
WE HAVE SIMULATED 44,000 GW OF
RENEWABLE ENERGY FOR GRID RELATED
STUDIES THAT INFORM POLICY
DECISIONS
OEMS
WORK WITH 95% OF MANUFACTURERS
7
• Certification and testing of wind components,
turbines, and projects
• Technical advisory and engineering services that
span the project complete project lifecycle from
feasibility to operational assets
• Digital solutions such as software and data that
streamline wind evaluation and operations processes
Wind Solutions
© 2023 UL LLC. All rights reserved
8
ALL IN ONE SERVICE PROVIDER – FOR COMPLETE
TURBINE LIFECYCLE
Design and
Development
Feasibility &
Early design
stage
Manufacturing Prototype
Operational
assets
• Wind measurements
• Energy Yield assessment
• Technology Reviews
Design Basis Evaluation
• Technology suitability
• Offshore measurements
• Design Evaluation
• Type Certification
• Component certification
• Offshore structural
evaluation
• Design Review
• Documentation Review
• Owners Engineering
• Lenders Engineering
• Manufacturing
Evaluation
• Shop Approvals
• Vendor Qualification
• Shop floor inspections
• Complete Type Testing
• ML– Internal validation
• Power curve
• SaFT and Gearbox
• Power Quality/ FRT
• Acoustics / GB
Endoscopy / Blade angle
• LiDAR
• Power curve warranty
• Project Certification
• RCA
• Escrow
• LTE – Lifetime Extension
• Under performance
analysis
• End of warranty
inspections
• Due Diligence
Initial Kickoff
Type Testing and
certification
Design and Development
TC components update / Life Time
Extension , RCA, Due Diligence
Grid Code Compliance
Testing and Certification
9
10
10
© 2023 UL LLC. All rights reserved
Current Status Worldwide:
International
Standards/Guidelines
National
Procedures/Guidelines
Germany
FGW TR3 (Testing)
FGW TR8 (Certification)
UK
ENA Engineering
Recommendation
G99
Spain
NTS: Standard for
monitoring the
compliance of PGMT
In countries where no
special testing procedure
exists, the general rule is to
use IEC 61400-21-1 ed. 1as
a guide
China
• GB/T 36995-2018
(Voltage Fault Ride
Through)
• GB/T 20320-2013 / IEC
61400-21, 2008 (PQ)
European Commision
European Network Code
for Connection of
Generators (RfG)
US
IEEE 1547.1, IEEE
519
India
Technical Standards for
Connectivity to the Grid
Regulations 2007 /
Amendment Regulations
2013 & 2019
11
© 2023 UL LLC. All rights reserved
Vietnam Grid Code Requirements:
Areas
Power
Quality
Fault
Ride
Through
Control
Require
ments
Grid
Protection
Reactive Power Capability
 Wind and PV plants must have the capability of
injecting or absorbing reactive power
 If power plant generates an active power capacity
greater or equal to 20% of rated power, then the
power plant must be capable of Continuously
adjust reactive power over a power factor range of
0.95 under-excited to 0.95 over-excited mode.
Fault Ride Through
Wind and PV farms must remain connected to the grid without tripping
of any generating units and withstand voltage dip and swell
 Low Voltage Ride Through (LVRT):
- for Voltage level of 0 p.u.
PGU shall withstand minimum of 0.15 s
- for Voltage level [U] from 0.3 p.u. to 0.9 p.u , the minimum
withstand time (Tmin) will be calculated by
formula (Tmin = 4*U - 0.6) in sec.
- for Voltage between 0.9 p.u. to 1.1 p.u. PGU must maintain
continous power generation
 High Voltage Ride Through (HVRT):
- for Voltage swell of 1.10 p.u. to 1.15 p.u. and fault duration is 3s
- for Voltage swell of 1.15 p.u. to 1.2 p.u. and fault duration is 0.5s
Grid protection
Reliable fault detection
12
© 2023 UL LLC. All rights reserved
Fault Ride Through Requirements:
13
© 2023 UL LLC. All rights reserved
Vietnam Grid Code Requirements:
Areas
Power
Quality
Fault
Ride
Through
Control
Require
ments
Grid
Protection
Frequency Range
Wind and PV plants should be able to generate active power in the
frequency range of 49 Hz to 51 Hz as high capacity as possible
according to available energy sources (wind potential or solar
insolation)
 Frequency control
When frequency of electrical system exceeds 51 Hz, Wind
and PV plants should decrease active power as provided by
the following formula,
ΔP = 20 X Pm X
51.0 − 𝑓𝑛
50
where,
ΔP is active power reduction,
Pm is Active power at the time prior to the power reduction
fn is frequency before conducting power decrease (Hz)
The factor 20 is equivalent to the droop of 5% of Pm
Frequency range of the electrical
system
Minimal time for maintaining power
generation
47.5 Hz to 48.0 Hz 10 mins
48 Hz to 49 Hz 30 mins
49 Hz to 51 Hz continuous generation
51 Hz to 51.5 Hz 30 mins
51.1 Hz to 52 Hz 1 min
14
© 2023 UL LLC. All rights reserved
Vietnam Grid Code Requirements:
Areas
Power
Quality
Fault
Ride
Through
Control
Require
ments
Grid
Protection
Active power control
 Minimum requirement of ramp rate limit is 10% Pn / min
Voltage control
 In case the voltage at PCC falls within the range of ±10% Un
then power plant should be able to adjust the voltage with an
accuracy not more than ± 0.5% nominal voltage within the
permissible working band of generator within 2 minutes of
time.
Harmonics limit
 The requirements of wind and PV farms at connection point
with respect to the harmonics at connections points as
following,
1. THD should not exceed 3% (in % of nominal voltage)
2. THC should not exceed 5% (in % of nominal voltage)
Flicker emission
 During the normal operation, flicker emission at MV and LV
connection points should not exceed the limits as stipulated
below,
1. Pst,95% = 1.0
2. Plt,95% = 0.8
15
© 2023 UL LLC. All rights reserved
Assessment of compliance with Vietnam Grid code:
1. Testing must be performed by laboratories accredited according to ISO/IEC 17025
2. A full Test Report according to Vietnam Grid code should be submitted for assessment to the Certification
Bodies, including detailed results and graphs
3. FRT voltage levels to follow the profile - the unit shall remain connected during and after the faults for two
consecutive tests
Thank you
UL.com/Solutions
ULS22CS458635
© 2023 UL LLC. All rights reserved

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6th_VOOWESS_Nivedh_BS.pptx

  • 1. © 2023 UL LLC. All rights reserved. UL Renewables Grid Code Compliance – Importance and Best Practices Nivedh BS Business Manager – Wind TIC, Asia Pacific ULS22CS458635 Hanoi Feb 24th 2023
  • 2. ANNOUNCING OUR NEW BRANDS Three organizations. One shared mission. Working for a safer world. Safety Science ULS22CS458635
  • 3. UL Empowers Trust in Renewables © 2023 UL LLC. All rights reserved 3
  • 4. © 2023 UL LLC. All rights reserved 4 Empowering Trust in Renewables Through: Testing, Inspection, Certification Technical Advisory Digital Solutions
  • 5. © 2023 UL LLC. All rights reserved 5
  • 6. LENDERS & INVESTORS INVESTOR/LENDER’S ENGINEER ON OVER 400 WIND & SOLAR PROJECTS SINCE 2012 DEVELOPERS & OWNERS WE WORKED WITH 90% OF THE INDUSTRY’S TOP PROJECT DEVELOPERS AND PLANT OWNERS UTILITIES OUR ANNUAL FORECASTING CLIENT RENEWAL RATE IS 97% 6 POLICY MAKERS WE HAVE SIMULATED 44,000 GW OF RENEWABLE ENERGY FOR GRID RELATED STUDIES THAT INFORM POLICY DECISIONS OEMS WORK WITH 95% OF MANUFACTURERS
  • 7. 7 • Certification and testing of wind components, turbines, and projects • Technical advisory and engineering services that span the project complete project lifecycle from feasibility to operational assets • Digital solutions such as software and data that streamline wind evaluation and operations processes Wind Solutions © 2023 UL LLC. All rights reserved
  • 8. 8 ALL IN ONE SERVICE PROVIDER – FOR COMPLETE TURBINE LIFECYCLE Design and Development Feasibility & Early design stage Manufacturing Prototype Operational assets • Wind measurements • Energy Yield assessment • Technology Reviews Design Basis Evaluation • Technology suitability • Offshore measurements • Design Evaluation • Type Certification • Component certification • Offshore structural evaluation • Design Review • Documentation Review • Owners Engineering • Lenders Engineering • Manufacturing Evaluation • Shop Approvals • Vendor Qualification • Shop floor inspections • Complete Type Testing • ML– Internal validation • Power curve • SaFT and Gearbox • Power Quality/ FRT • Acoustics / GB Endoscopy / Blade angle • LiDAR • Power curve warranty • Project Certification • RCA • Escrow • LTE – Lifetime Extension • Under performance analysis • End of warranty inspections • Due Diligence Initial Kickoff Type Testing and certification Design and Development TC components update / Life Time Extension , RCA, Due Diligence
  • 9. Grid Code Compliance Testing and Certification 9
  • 10. 10 10 © 2023 UL LLC. All rights reserved Current Status Worldwide: International Standards/Guidelines National Procedures/Guidelines Germany FGW TR3 (Testing) FGW TR8 (Certification) UK ENA Engineering Recommendation G99 Spain NTS: Standard for monitoring the compliance of PGMT In countries where no special testing procedure exists, the general rule is to use IEC 61400-21-1 ed. 1as a guide China • GB/T 36995-2018 (Voltage Fault Ride Through) • GB/T 20320-2013 / IEC 61400-21, 2008 (PQ) European Commision European Network Code for Connection of Generators (RfG) US IEEE 1547.1, IEEE 519 India Technical Standards for Connectivity to the Grid Regulations 2007 / Amendment Regulations 2013 & 2019
  • 11. 11 © 2023 UL LLC. All rights reserved Vietnam Grid Code Requirements: Areas Power Quality Fault Ride Through Control Require ments Grid Protection Reactive Power Capability  Wind and PV plants must have the capability of injecting or absorbing reactive power  If power plant generates an active power capacity greater or equal to 20% of rated power, then the power plant must be capable of Continuously adjust reactive power over a power factor range of 0.95 under-excited to 0.95 over-excited mode. Fault Ride Through Wind and PV farms must remain connected to the grid without tripping of any generating units and withstand voltage dip and swell  Low Voltage Ride Through (LVRT): - for Voltage level of 0 p.u. PGU shall withstand minimum of 0.15 s - for Voltage level [U] from 0.3 p.u. to 0.9 p.u , the minimum withstand time (Tmin) will be calculated by formula (Tmin = 4*U - 0.6) in sec. - for Voltage between 0.9 p.u. to 1.1 p.u. PGU must maintain continous power generation  High Voltage Ride Through (HVRT): - for Voltage swell of 1.10 p.u. to 1.15 p.u. and fault duration is 3s - for Voltage swell of 1.15 p.u. to 1.2 p.u. and fault duration is 0.5s Grid protection Reliable fault detection
  • 12. 12 © 2023 UL LLC. All rights reserved Fault Ride Through Requirements:
  • 13. 13 © 2023 UL LLC. All rights reserved Vietnam Grid Code Requirements: Areas Power Quality Fault Ride Through Control Require ments Grid Protection Frequency Range Wind and PV plants should be able to generate active power in the frequency range of 49 Hz to 51 Hz as high capacity as possible according to available energy sources (wind potential or solar insolation)  Frequency control When frequency of electrical system exceeds 51 Hz, Wind and PV plants should decrease active power as provided by the following formula, ΔP = 20 X Pm X 51.0 − 𝑓𝑛 50 where, ΔP is active power reduction, Pm is Active power at the time prior to the power reduction fn is frequency before conducting power decrease (Hz) The factor 20 is equivalent to the droop of 5% of Pm Frequency range of the electrical system Minimal time for maintaining power generation 47.5 Hz to 48.0 Hz 10 mins 48 Hz to 49 Hz 30 mins 49 Hz to 51 Hz continuous generation 51 Hz to 51.5 Hz 30 mins 51.1 Hz to 52 Hz 1 min
  • 14. 14 © 2023 UL LLC. All rights reserved Vietnam Grid Code Requirements: Areas Power Quality Fault Ride Through Control Require ments Grid Protection Active power control  Minimum requirement of ramp rate limit is 10% Pn / min Voltage control  In case the voltage at PCC falls within the range of ±10% Un then power plant should be able to adjust the voltage with an accuracy not more than ± 0.5% nominal voltage within the permissible working band of generator within 2 minutes of time. Harmonics limit  The requirements of wind and PV farms at connection point with respect to the harmonics at connections points as following, 1. THD should not exceed 3% (in % of nominal voltage) 2. THC should not exceed 5% (in % of nominal voltage) Flicker emission  During the normal operation, flicker emission at MV and LV connection points should not exceed the limits as stipulated below, 1. Pst,95% = 1.0 2. Plt,95% = 0.8
  • 15. 15 © 2023 UL LLC. All rights reserved Assessment of compliance with Vietnam Grid code: 1. Testing must be performed by laboratories accredited according to ISO/IEC 17025 2. A full Test Report according to Vietnam Grid code should be submitted for assessment to the Certification Bodies, including detailed results and graphs 3. FRT voltage levels to follow the profile - the unit shall remain connected during and after the faults for two consecutive tests

Editor's Notes

  1. On June 27, the UL enterprise revealed new brands for our three organizations — UL Research Institutes, UL Standards & Engagement and UL Solutions. Across the enterprise, we are three organizations and one enterprise, unified by a shared mission and focus on advancing safety science. Safety science is the heart of what we do and what distinguishes us in the marketplace. We define safety science as a multidisciplinary approach that engages the ingenuity of top minds across scientific fields to engineer a safer, more secure and more sustainable world in which every individual can thrive. The brands reflect and clarify the unique role that each play to serve our mission -- working for a safer world, and advance safety science. The UL enterprise confronts safety challenges head-on, turning questions and hypotheses into discoveries, and innovating to ensure that scientific knowledge is applied. The three organizations’ capacity to create change is amplified by a distinctive network of researchers, engineers, technologists, government regulators, technical experts and business leaders to advance safety science.