SlideShare a Scribd company logo
1
RIAZ MUHAMMAD TANVEER
STUDENT ID: L1600305
2017年4月25日
ISLAND DETECTION & SMOOTH
SWITCH CONTROL
Contents
Page
目录页
— 2 —
• Types of islands in power systems with DR
• Issues with unintentional islands
• Methods of protecting against unintentional
islands
• Standard testing for unintentional islanding
• Simulations and Results
• Probability of unintentional islanding
• The future of anti-islanding protection
• References
Terms
• Area EPS – Area Electric Power System
• Local EPS – Local Electric Power System
• PCC – Point of Common Coupling
• DR – Distributed Resource (e.g. distributed generation
(DG), distributed energy resource (DER))
• DER – Distributed Energy Resource
• Anti-islanding (non-islanding protection) – The use of
relays or controls to prevent the continued existence of an
unintentional island
Island Definition
Island: A condition in which a
portion of an Area EPS (Electric
Power System) is energized solely
by one or more Local EPSs
through the associated
PCCs(Point of Common
Coupling) while that portion of
the Area EPS is electrically
separated from the rest of the
Area EPS.[1]
• Intentional (Planned)
• Unintentional (unplanned) DR
115kV
13.2kV
Adjacent
Feeder
Island forms
when breaker
opens
Types of Islands
• Intentional Islands (Microgrids)
(1) have DR(Distributed Resources) and load
(2) have the ability to disconnect from and parallel with the area EPS(Electric Power
System)
(3) include the local EPS and may include portions of the area EPS, and
(4) are intentionally planned.
Distribution Feeder
from Substation
Open for a
Utility
Microgrid
DSDG Load Load
DG Load
Microgrid
Switch
Distributed
Generation
Distributed
Generation
Distributed
Storage
Open for a
Facility Microgrid
Possible
Control Systems
Microgrid
Switch
Types of Islands
• Unintentional Islanding
For an unintentional island in which the DR energizes a
portion of the Area EPS through the PCC, the DR
interconnection system shall detect the island and cease to
energize the Area EPS within two seconds of the formation
of an island.
Issues with Unintentional Islanding
1)Personnel Safety – Unintentional islands can cause hazards
for utility workers if they assume downed lines are not
energized during restoration
Types of Islands
2)Overvoltages – Transient overvoltages due to rapid loss of load are
possible. If an adequate ground source is not present in the island, a
ground fault can result in voltages that exceed 173% on the unfaulted
phases.
3)Reconnection out of phase - This can result in large transient torques
applied to motors connected to the islanded area EPS and their
mechanical systems (e.g., shafts, blowers, and pumps), which could
result in damage or failure.
4)Power Quality – Unplanned island area EPS may not have suitable power
quality for loads
5)Protection – Unintentional islands may not provide sufficient fault current
to operate fuses or overcurrent relay protection devices inside island
References [4]-[9]
Unintentional Islands Detection & Protection
• Reverse/Minimum Import/Export Relays
• Passive Detection Methods
• Active Detection Methods
e.g. instability induced voltage or frequency drift and/or system
impedance measurement coupled with relay functions
• Communication-Based Anti-Islanding
Direct transfer trip (DTT)
Power line carrier (PLC)
Impedance Insertion
• Methods Under Development
Phasor-based anti-islanding
Reverse/Minimum Import/Export Relays
• Protective Relay
Function (Reverse
Power = 32)
• Used in cases where
the DR is not
exporting to the grid
• Local loads are
typically larger than
DR
DR
115kV
13.2kV
Adjacent
Feeder
81
O/U
59 27 32
Unintentional Islanding Test
• IEEE 1547.1 details testing
requirements for unintentional
islanding [40]
• Uses a matched RLC load and
measures trip times when island
condition occurs
• The RLC load is set to a Quality
factor (Qf) = 1.0
• Qf of 1.0 is equivalent to a load
displacement power factor of 0.707.
• Distribution circuits typically operate
at a value greater than 0.75 p.f.
• Conducted at 100%, 66%, and 33%
rated power
Unintentional Islanding Test for Synchronous Generators
o Load is matched in real and reactive
power [40]
o Tested at:
• Minimum Load at unity 1.0 p.f.
• Maximum real load at unity 1.0
p.f.
• Maximum real load at rated p.f.
lagging
• Maximum real load at rated p.f.
leading
Simulations & Results
o Figure shows a diagram of the parallel connection between a
photovoltaic power generation system and a utility grid. During normal
operations, the real power and reactive power required by the loads are
supplied by the photovoltaic power generation system and utility grid.
When the utility grid is disconnected and islanding phenomena is
observed, the power at the point of common coupling is unbalanced.
Simulations & Results
o Four islanding tests have been carried out in order to evaluate the
performance of the proposed islanding detection method under diverse
operation conditions, namely;
voltage swell, voltage dip, distorted grid voltage, and voltage flicker.
o Figure in next slide shows that three cycles of voltage swelling occurred
in the system before the utility grid end outage at Second 4. The
islanding detection method determined that the swell in voltage was
caused by signal interference rather than an islanding operation.
Therefore, the system did not disconnect the loads until 0.5 cycle after
the islanding operation had occurred.
Simulations & Results
Simulations & Results
As shown below figure, the system voltage operation was normal before the
three cycles of voltage swelling. At Second 4, the utility grid was disconnected
to induce an islanding operation. The results show that the islanding operation
detection method can recognize when a voltage swell is caused by power
quality interference. Therefore, the system only disconnected the load from the
photovoltaic power generation system within a 0.5 cycle (i.e., precisely 0.003
s) after disconnection of the utility grid (i.e., the islanding operation).
Guidelines for Assessment of DG Unintentional Islanding Risk
o Cases in Which Unintentional Islanding can be Ruled Out
• Aggregated AC rating of all DG within the potential island is less
than some fraction of the minimum real power load within the
potential island
• Not possible to balance reactive power supply and demand within
the potential island.
• DTT/PLCP is used
o Cases in Which Additional Study May Be Considered
• Potential island contains large capacitors, and is tuned such that the
power factor within a potential island is very close to 1.0
• Very large numbers of inverters
• Inverters from several different manufacturers
• Include both inverters and rotating generators
The Future of Anti-islanding Protection
o Passive islanding often has a NDZ, but it is hard for power systems to
maintain a generation/load balance for extended periods of time
(beyond 10s)[50]
o Active anti-islanding techniques are fast and work best on “stiff” grids.
Most techniques work when a significant change in system
characteristics occur because of island formation.
o New integration requirements are opening up voltage and frequency trip
points to enable grid stability at high DR penetrations
o Multiples of active anti-islanding techniques may or may not work
against each other.
o Future power systems may not be as stiff with reduced use of
synchronous generators.
References
[1] 1547™-2003 IEEE Standard for Interconnecting Distributed Resources with Electric Power Systems
[2] Kroposki, B., Lasseter, R., Ise, T., Morozumi, S. Papathanassiou, S., and Hatziargyriou, N., “Making microgrids work”, IEEE Power and
Energy Magazine, Vol. 6, Issue 3, pp. 40-53, 2008
[3] IEEE 1547.4™-2011 IEEE Guide for Design, Operation, and Integration of Distributed Resource Island Systems with Electric Power Systems
[4] IEEE 1547.2™-2008 IEEE Application Guide for IEEE Std 1547™, IEEE Standard for Interconnecting Distributed Resources with Electric
Power Systems
[5] Walling, R., Miller, N. “Distributed Generation Islanding – Implications on Power System Dynamic Performance”, IEEE Power Engineering
Society Summer Meeting, pp.92-96, 2002
[6] Barker, P., de Mello, R., “Determining the Impact of Distributed Generation on Power Systems: Part 1 – Radial Distribution System”, Power
engineering Society Summer Meeting, pp. 1645-1655, 2000
[7] Stevens, J., Bonn, R., Ginn, J., Gonzalez, S., Kern, G., “Development and Testing of an Approach to Anti-islanding in Utility-Interconnected
Photovoltaic Systems” Sandia Report SAND-2000-1939, August 2000
[8] IEEE 929-2000 IEEE Recommended Practice for Utility Interface of Photovoltaic (PV) Systems
[9] Gish, W. B., Greuel, S., and Feero, W. E., “Ferroresonance and loading relationships for DSG installations,” IEEE Transactions on Power
Delivery, Vol. PWRD-2, no. 3, pp. 953–959, July 1987
[10] Kobayashi, H. Takigawa, K, Hashimoto, E., Kitamura, A., Matsuda, H., “Method for Preventing Islanding Phenomenon in Utility Grid with a
Number of Small Scale PV Systems”, IEEE Photovoltaic Specialists Conference, pp. 695-700, 1991 IEEE
o Thank You!

More Related Content

What's hot

DG interconnection protection ieee 1547
DG interconnection protection ieee 1547DG interconnection protection ieee 1547
DG interconnection protection ieee 1547michaeljmack
 
Instantaneous Reactive Power Theory And Its Applications
Instantaneous Reactive Power Theory And Its ApplicationsInstantaneous Reactive Power Theory And Its Applications
Instantaneous Reactive Power Theory And Its Applicationsarunj89
 
INTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLERINTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLERNitish NIT
 
FACTS DEVICES AND POWER SYSTEM STABILITY ppt
FACTS DEVICES AND POWER SYSTEM STABILITY pptFACTS DEVICES AND POWER SYSTEM STABILITY ppt
FACTS DEVICES AND POWER SYSTEM STABILITY pptMamta Bagoria
 
Power system stability and control using facts devices
Power system stability and control using facts devicesPower system stability and control using facts devices
Power system stability and control using facts devicesAjit Singh Rajawat
 
Choice of converter configuration
Choice of converter configurationChoice of converter configuration
Choice of converter configurationjawaharramaya
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Deviceskhemraj298
 
Exp 5 (1)5. Newton Raphson load flow analysis Matlab Software
Exp 5 (1)5.	Newton Raphson load flow analysis Matlab SoftwareExp 5 (1)5.	Newton Raphson load flow analysis Matlab Software
Exp 5 (1)5. Newton Raphson load flow analysis Matlab SoftwareShweta Yadav
 
Unit 1 Power System Stability
Unit 1 Power System Stability Unit 1 Power System Stability
Unit 1 Power System Stability SANTOSH GADEKAR
 
DISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYDISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYRaviraj solanki
 
Unit 5 Economic Load Dispatch and Unit Commitment
Unit 5 Economic Load Dispatch and Unit CommitmentUnit 5 Economic Load Dispatch and Unit Commitment
Unit 5 Economic Load Dispatch and Unit CommitmentSANTOSH GADEKAR
 
UNSYMMETRICAL FAULTS IN POWER SYSTEM
UNSYMMETRICAL FAULTS IN POWER SYSTEMUNSYMMETRICAL FAULTS IN POWER SYSTEM
UNSYMMETRICAL FAULTS IN POWER SYSTEMerramansaini1947
 
anti islanding technology(passive)
anti islanding technology(passive)anti islanding technology(passive)
anti islanding technology(passive)minu Yacob
 
Theory of HVDC transmission
Theory of HVDC transmission Theory of HVDC transmission
Theory of HVDC transmission SAURAV DAYAL SING
 
Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1JayakalyanReddy
 

What's hot (20)

DG interconnection protection ieee 1547
DG interconnection protection ieee 1547DG interconnection protection ieee 1547
DG interconnection protection ieee 1547
 
Reactive power management
Reactive power managementReactive power management
Reactive power management
 
Phasor Measurement Unit (PMU)
 Phasor Measurement Unit (PMU) Phasor Measurement Unit (PMU)
Phasor Measurement Unit (PMU)
 
Instantaneous Reactive Power Theory And Its Applications
Instantaneous Reactive Power Theory And Its ApplicationsInstantaneous Reactive Power Theory And Its Applications
Instantaneous Reactive Power Theory And Its Applications
 
INTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLERINTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLER
 
FACTS DEVICES AND POWER SYSTEM STABILITY ppt
FACTS DEVICES AND POWER SYSTEM STABILITY pptFACTS DEVICES AND POWER SYSTEM STABILITY ppt
FACTS DEVICES AND POWER SYSTEM STABILITY ppt
 
Power system stability and control using facts devices
Power system stability and control using facts devicesPower system stability and control using facts devices
Power system stability and control using facts devices
 
Choice of converter configuration
Choice of converter configurationChoice of converter configuration
Choice of converter configuration
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Devices
 
Exp 5 (1)5. Newton Raphson load flow analysis Matlab Software
Exp 5 (1)5.	Newton Raphson load flow analysis Matlab SoftwareExp 5 (1)5.	Newton Raphson load flow analysis Matlab Software
Exp 5 (1)5. Newton Raphson load flow analysis Matlab Software
 
Facts lectures-2014
Facts lectures-2014Facts lectures-2014
Facts lectures-2014
 
Unit 1 Power System Stability
Unit 1 Power System Stability Unit 1 Power System Stability
Unit 1 Power System Stability
 
DISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYDISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAY
 
Unit 5 Economic Load Dispatch and Unit Commitment
Unit 5 Economic Load Dispatch and Unit CommitmentUnit 5 Economic Load Dispatch and Unit Commitment
Unit 5 Economic Load Dispatch and Unit Commitment
 
MTDC SYSTEMS
MTDC SYSTEMSMTDC SYSTEMS
MTDC SYSTEMS
 
Unified power quality conditioner 2
Unified power quality conditioner 2Unified power quality conditioner 2
Unified power quality conditioner 2
 
UNSYMMETRICAL FAULTS IN POWER SYSTEM
UNSYMMETRICAL FAULTS IN POWER SYSTEMUNSYMMETRICAL FAULTS IN POWER SYSTEM
UNSYMMETRICAL FAULTS IN POWER SYSTEM
 
anti islanding technology(passive)
anti islanding technology(passive)anti islanding technology(passive)
anti islanding technology(passive)
 
Theory of HVDC transmission
Theory of HVDC transmission Theory of HVDC transmission
Theory of HVDC transmission
 
Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1
 

Similar to Island Detection and Control Techniques

ppt nrel.pptx
ppt  nrel.pptxppt  nrel.pptx
ppt nrel.pptxgulie
 
Frequency control in a microgrid including controllable load
Frequency control in a microgrid including controllable loadFrequency control in a microgrid including controllable load
Frequency control in a microgrid including controllable loadIAEME Publication
 
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...IJERA Editor
 
Kumaresh_ISLANDING.pptx
Kumaresh_ISLANDING.pptxKumaresh_ISLANDING.pptx
Kumaresh_ISLANDING.pptxRishikabhakat
 
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...IRJET Journal
 
Review on Islanding Detection Methods for Photovoltaic Inverter
Review on Islanding Detection Methods for Photovoltaic InverterReview on Islanding Detection Methods for Photovoltaic Inverter
Review on Islanding Detection Methods for Photovoltaic InverterNooria Sukmaningtyas
 
Presentation best practice earthing and protection
Presentation   best practice earthing and protectionPresentation   best practice earthing and protection
Presentation best practice earthing and protectionMahesh Chandra Manav
 
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...IRJET Journal
 
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012Renewable Energy Technology : 5-day course at IIT Bombay - May 2012
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012Kishore Malani, M.Tech
 
protection of feeders in distribution substation
protection of feeders in distribution substationprotection of feeders in distribution substation
protection of feeders in distribution substationPanneerselvam Rathinam
 
Power system stability issues and Defence Mechanism in Indian Grid
Power system stability issues and Defence Mechanism in Indian GridPower system stability issues and Defence Mechanism in Indian Grid
Power system stability issues and Defence Mechanism in Indian GridChandan Kumar
 
SWES_Unit-V.ppt
SWES_Unit-V.pptSWES_Unit-V.ppt
SWES_Unit-V.pptGopiPasala
 
8575R 50% Complete
8575R 50% Complete8575R 50% Complete
8575R 50% Completehiidrasidi
 
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...Jakir Hossain
 
01-120917022737-phpapp02.pdf
01-120917022737-phpapp02.pdf01-120917022737-phpapp02.pdf
01-120917022737-phpapp02.pdfThien Phan Bản
 
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...IJECEIAES
 
Performance of quadrilateral relay on EHV transmission line protection during...
Performance of quadrilateral relay on EHV transmission line protection during...Performance of quadrilateral relay on EHV transmission line protection during...
Performance of quadrilateral relay on EHV transmission line protection during...IDES Editor
 

Similar to Island Detection and Control Techniques (20)

ppt nrel.pptx
ppt  nrel.pptxppt  nrel.pptx
ppt nrel.pptx
 
Frequency control in a microgrid including controllable load
Frequency control in a microgrid including controllable loadFrequency control in a microgrid including controllable load
Frequency control in a microgrid including controllable load
 
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...
Active Anti-Islanding Protection For Grid Connected Solar Photovoltaic Power ...
 
Kumaresh_ISLANDING.pptx
Kumaresh_ISLANDING.pptxKumaresh_ISLANDING.pptx
Kumaresh_ISLANDING.pptx
 
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...
IRJET-Performance Evaluation of Centralized Inverter and Distributed Micro In...
 
Presentation jmv internal
Presentation jmv internalPresentation jmv internal
Presentation jmv internal
 
Review on Islanding Detection Methods for Photovoltaic Inverter
Review on Islanding Detection Methods for Photovoltaic InverterReview on Islanding Detection Methods for Photovoltaic Inverter
Review on Islanding Detection Methods for Photovoltaic Inverter
 
Presentation best practice earthing and protection
Presentation   best practice earthing and protectionPresentation   best practice earthing and protection
Presentation best practice earthing and protection
 
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...
Islanding Detection and Controlled Islanding in Emerging Power Systems Key Is...
 
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012Renewable Energy Technology : 5-day course at IIT Bombay - May 2012
Renewable Energy Technology : 5-day course at IIT Bombay - May 2012
 
protection of feeders in distribution substation
protection of feeders in distribution substationprotection of feeders in distribution substation
protection of feeders in distribution substation
 
Power system stability issues and Defence Mechanism in Indian Grid
Power system stability issues and Defence Mechanism in Indian GridPower system stability issues and Defence Mechanism in Indian Grid
Power system stability issues and Defence Mechanism in Indian Grid
 
SWES_Unit-V.ppt
SWES_Unit-V.pptSWES_Unit-V.ppt
SWES_Unit-V.ppt
 
8575R 50% Complete
8575R 50% Complete8575R 50% Complete
8575R 50% Complete
 
G42022933
G42022933G42022933
G42022933
 
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...
A wave-to-wire model of ocean wave energy conversion system using MATLAB/Simu...
 
Unit-5.pptx
Unit-5.pptxUnit-5.pptx
Unit-5.pptx
 
01-120917022737-phpapp02.pdf
01-120917022737-phpapp02.pdf01-120917022737-phpapp02.pdf
01-120917022737-phpapp02.pdf
 
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...
A Passive Islanding Detection Method for Neutral point clamped Multilevel Inv...
 
Performance of quadrilateral relay on EHV transmission line protection during...
Performance of quadrilateral relay on EHV transmission line protection during...Performance of quadrilateral relay on EHV transmission line protection during...
Performance of quadrilateral relay on EHV transmission line protection during...
 

Recently uploaded

A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdf
A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdfA CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdf
A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdfKamal Acharya
 
retail automation billing system ppt.pptx
retail automation billing system ppt.pptxretail automation billing system ppt.pptx
retail automation billing system ppt.pptxfaamieahmd
 
Electrostatic field in a coaxial transmission line
Electrostatic field in a coaxial transmission lineElectrostatic field in a coaxial transmission line
Electrostatic field in a coaxial transmission lineJulioCesarSalazarHer1
 
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdf
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdfRESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdf
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdfKamal Acharya
 
Digital Signal Processing Lecture notes n.pdf
Digital Signal Processing Lecture notes n.pdfDigital Signal Processing Lecture notes n.pdf
Digital Signal Processing Lecture notes n.pdfAbrahamGadissa
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfPipe Restoration Solutions
 
Pharmacy management system project report..pdf
Pharmacy management system project report..pdfPharmacy management system project report..pdf
Pharmacy management system project report..pdfKamal Acharya
 
Hall booking system project report .pdf
Hall booking system project report  .pdfHall booking system project report  .pdf
Hall booking system project report .pdfKamal Acharya
 
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...Amil baba
 
Explosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdfExplosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdf884710SadaqatAli
 
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical EngineeringIntroduction to Machine Learning Unit-5 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical EngineeringC Sai Kiran
 
HYDROPOWER - Hydroelectric power generation
HYDROPOWER - Hydroelectric power generationHYDROPOWER - Hydroelectric power generation
HYDROPOWER - Hydroelectric power generationRobbie Edward Sayers
 
ASME IX(9) 2007 Full Version .pdf
ASME IX(9)  2007 Full Version       .pdfASME IX(9)  2007 Full Version       .pdf
ASME IX(9) 2007 Full Version .pdfAhmedHussein950959
 
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical EngineeringIntroduction to Machine Learning Unit-4 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical EngineeringC Sai Kiran
 
Online blood donation management system project.pdf
Online blood donation management system project.pdfOnline blood donation management system project.pdf
Online blood donation management system project.pdfKamal Acharya
 
2024 DevOps Pro Europe - Growing at the edge
2024 DevOps Pro Europe - Growing at the edge2024 DevOps Pro Europe - Growing at the edge
2024 DevOps Pro Europe - Growing at the edgePaco Orozco
 
Arduino based vehicle speed tracker project
Arduino based vehicle speed tracker projectArduino based vehicle speed tracker project
Arduino based vehicle speed tracker projectRased Khan
 
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWING
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWINGBRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWING
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWINGKOUSTAV SARKAR
 
AI for workflow automation Use cases applications benefits and development.pdf
AI for workflow automation Use cases applications benefits and development.pdfAI for workflow automation Use cases applications benefits and development.pdf
AI for workflow automation Use cases applications benefits and development.pdfmahaffeycheryld
 
Courier management system project report.pdf
Courier management system project report.pdfCourier management system project report.pdf
Courier management system project report.pdfKamal Acharya
 

Recently uploaded (20)

A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdf
A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdfA CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdf
A CASE STUDY ON ONLINE TICKET BOOKING SYSTEM PROJECT.pdf
 
retail automation billing system ppt.pptx
retail automation billing system ppt.pptxretail automation billing system ppt.pptx
retail automation billing system ppt.pptx
 
Electrostatic field in a coaxial transmission line
Electrostatic field in a coaxial transmission lineElectrostatic field in a coaxial transmission line
Electrostatic field in a coaxial transmission line
 
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdf
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdfRESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdf
RESORT MANAGEMENT AND RESERVATION SYSTEM PROJECT REPORT.pdf
 
Digital Signal Processing Lecture notes n.pdf
Digital Signal Processing Lecture notes n.pdfDigital Signal Processing Lecture notes n.pdf
Digital Signal Processing Lecture notes n.pdf
 
The Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdfThe Benefits and Techniques of Trenchless Pipe Repair.pdf
The Benefits and Techniques of Trenchless Pipe Repair.pdf
 
Pharmacy management system project report..pdf
Pharmacy management system project report..pdfPharmacy management system project report..pdf
Pharmacy management system project report..pdf
 
Hall booking system project report .pdf
Hall booking system project report  .pdfHall booking system project report  .pdf
Hall booking system project report .pdf
 
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
NO1 Pandit Amil Baba In Bahawalpur, Sargodha, Sialkot, Sheikhupura, Rahim Yar...
 
Explosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdfExplosives Industry manufacturing process.pdf
Explosives Industry manufacturing process.pdf
 
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical EngineeringIntroduction to Machine Learning Unit-5 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-5 Notes for II-II Mechanical Engineering
 
HYDROPOWER - Hydroelectric power generation
HYDROPOWER - Hydroelectric power generationHYDROPOWER - Hydroelectric power generation
HYDROPOWER - Hydroelectric power generation
 
ASME IX(9) 2007 Full Version .pdf
ASME IX(9)  2007 Full Version       .pdfASME IX(9)  2007 Full Version       .pdf
ASME IX(9) 2007 Full Version .pdf
 
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical EngineeringIntroduction to Machine Learning Unit-4 Notes for II-II Mechanical Engineering
Introduction to Machine Learning Unit-4 Notes for II-II Mechanical Engineering
 
Online blood donation management system project.pdf
Online blood donation management system project.pdfOnline blood donation management system project.pdf
Online blood donation management system project.pdf
 
2024 DevOps Pro Europe - Growing at the edge
2024 DevOps Pro Europe - Growing at the edge2024 DevOps Pro Europe - Growing at the edge
2024 DevOps Pro Europe - Growing at the edge
 
Arduino based vehicle speed tracker project
Arduino based vehicle speed tracker projectArduino based vehicle speed tracker project
Arduino based vehicle speed tracker project
 
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWING
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWINGBRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWING
BRAKING SYSTEM IN INDIAN RAILWAY AutoCAD DRAWING
 
AI for workflow automation Use cases applications benefits and development.pdf
AI for workflow automation Use cases applications benefits and development.pdfAI for workflow automation Use cases applications benefits and development.pdf
AI for workflow automation Use cases applications benefits and development.pdf
 
Courier management system project report.pdf
Courier management system project report.pdfCourier management system project report.pdf
Courier management system project report.pdf
 

Island Detection and Control Techniques

  • 1. 1 RIAZ MUHAMMAD TANVEER STUDENT ID: L1600305 2017年4月25日 ISLAND DETECTION & SMOOTH SWITCH CONTROL
  • 2. Contents Page 目录页 — 2 — • Types of islands in power systems with DR • Issues with unintentional islands • Methods of protecting against unintentional islands • Standard testing for unintentional islanding • Simulations and Results • Probability of unintentional islanding • The future of anti-islanding protection • References
  • 3. Terms • Area EPS – Area Electric Power System • Local EPS – Local Electric Power System • PCC – Point of Common Coupling • DR – Distributed Resource (e.g. distributed generation (DG), distributed energy resource (DER)) • DER – Distributed Energy Resource • Anti-islanding (non-islanding protection) – The use of relays or controls to prevent the continued existence of an unintentional island
  • 4. Island Definition Island: A condition in which a portion of an Area EPS (Electric Power System) is energized solely by one or more Local EPSs through the associated PCCs(Point of Common Coupling) while that portion of the Area EPS is electrically separated from the rest of the Area EPS.[1] • Intentional (Planned) • Unintentional (unplanned) DR 115kV 13.2kV Adjacent Feeder Island forms when breaker opens
  • 5. Types of Islands • Intentional Islands (Microgrids) (1) have DR(Distributed Resources) and load (2) have the ability to disconnect from and parallel with the area EPS(Electric Power System) (3) include the local EPS and may include portions of the area EPS, and (4) are intentionally planned. Distribution Feeder from Substation Open for a Utility Microgrid DSDG Load Load DG Load Microgrid Switch Distributed Generation Distributed Generation Distributed Storage Open for a Facility Microgrid Possible Control Systems Microgrid Switch
  • 6. Types of Islands • Unintentional Islanding For an unintentional island in which the DR energizes a portion of the Area EPS through the PCC, the DR interconnection system shall detect the island and cease to energize the Area EPS within two seconds of the formation of an island. Issues with Unintentional Islanding 1)Personnel Safety – Unintentional islands can cause hazards for utility workers if they assume downed lines are not energized during restoration
  • 7. Types of Islands 2)Overvoltages – Transient overvoltages due to rapid loss of load are possible. If an adequate ground source is not present in the island, a ground fault can result in voltages that exceed 173% on the unfaulted phases. 3)Reconnection out of phase - This can result in large transient torques applied to motors connected to the islanded area EPS and their mechanical systems (e.g., shafts, blowers, and pumps), which could result in damage or failure. 4)Power Quality – Unplanned island area EPS may not have suitable power quality for loads 5)Protection – Unintentional islands may not provide sufficient fault current to operate fuses or overcurrent relay protection devices inside island References [4]-[9]
  • 8. Unintentional Islands Detection & Protection • Reverse/Minimum Import/Export Relays • Passive Detection Methods • Active Detection Methods e.g. instability induced voltage or frequency drift and/or system impedance measurement coupled with relay functions • Communication-Based Anti-Islanding Direct transfer trip (DTT) Power line carrier (PLC) Impedance Insertion • Methods Under Development Phasor-based anti-islanding
  • 9. Reverse/Minimum Import/Export Relays • Protective Relay Function (Reverse Power = 32) • Used in cases where the DR is not exporting to the grid • Local loads are typically larger than DR DR 115kV 13.2kV Adjacent Feeder 81 O/U 59 27 32
  • 10. Unintentional Islanding Test • IEEE 1547.1 details testing requirements for unintentional islanding [40] • Uses a matched RLC load and measures trip times when island condition occurs • The RLC load is set to a Quality factor (Qf) = 1.0 • Qf of 1.0 is equivalent to a load displacement power factor of 0.707. • Distribution circuits typically operate at a value greater than 0.75 p.f. • Conducted at 100%, 66%, and 33% rated power
  • 11. Unintentional Islanding Test for Synchronous Generators o Load is matched in real and reactive power [40] o Tested at: • Minimum Load at unity 1.0 p.f. • Maximum real load at unity 1.0 p.f. • Maximum real load at rated p.f. lagging • Maximum real load at rated p.f. leading
  • 12. Simulations & Results o Figure shows a diagram of the parallel connection between a photovoltaic power generation system and a utility grid. During normal operations, the real power and reactive power required by the loads are supplied by the photovoltaic power generation system and utility grid. When the utility grid is disconnected and islanding phenomena is observed, the power at the point of common coupling is unbalanced.
  • 13. Simulations & Results o Four islanding tests have been carried out in order to evaluate the performance of the proposed islanding detection method under diverse operation conditions, namely; voltage swell, voltage dip, distorted grid voltage, and voltage flicker. o Figure in next slide shows that three cycles of voltage swelling occurred in the system before the utility grid end outage at Second 4. The islanding detection method determined that the swell in voltage was caused by signal interference rather than an islanding operation. Therefore, the system did not disconnect the loads until 0.5 cycle after the islanding operation had occurred.
  • 15. Simulations & Results As shown below figure, the system voltage operation was normal before the three cycles of voltage swelling. At Second 4, the utility grid was disconnected to induce an islanding operation. The results show that the islanding operation detection method can recognize when a voltage swell is caused by power quality interference. Therefore, the system only disconnected the load from the photovoltaic power generation system within a 0.5 cycle (i.e., precisely 0.003 s) after disconnection of the utility grid (i.e., the islanding operation).
  • 16. Guidelines for Assessment of DG Unintentional Islanding Risk o Cases in Which Unintentional Islanding can be Ruled Out • Aggregated AC rating of all DG within the potential island is less than some fraction of the minimum real power load within the potential island • Not possible to balance reactive power supply and demand within the potential island. • DTT/PLCP is used o Cases in Which Additional Study May Be Considered • Potential island contains large capacitors, and is tuned such that the power factor within a potential island is very close to 1.0 • Very large numbers of inverters • Inverters from several different manufacturers • Include both inverters and rotating generators
  • 17. The Future of Anti-islanding Protection o Passive islanding often has a NDZ, but it is hard for power systems to maintain a generation/load balance for extended periods of time (beyond 10s)[50] o Active anti-islanding techniques are fast and work best on “stiff” grids. Most techniques work when a significant change in system characteristics occur because of island formation. o New integration requirements are opening up voltage and frequency trip points to enable grid stability at high DR penetrations o Multiples of active anti-islanding techniques may or may not work against each other. o Future power systems may not be as stiff with reduced use of synchronous generators.
  • 18. References [1] 1547™-2003 IEEE Standard for Interconnecting Distributed Resources with Electric Power Systems [2] Kroposki, B., Lasseter, R., Ise, T., Morozumi, S. Papathanassiou, S., and Hatziargyriou, N., “Making microgrids work”, IEEE Power and Energy Magazine, Vol. 6, Issue 3, pp. 40-53, 2008 [3] IEEE 1547.4™-2011 IEEE Guide for Design, Operation, and Integration of Distributed Resource Island Systems with Electric Power Systems [4] IEEE 1547.2™-2008 IEEE Application Guide for IEEE Std 1547™, IEEE Standard for Interconnecting Distributed Resources with Electric Power Systems [5] Walling, R., Miller, N. “Distributed Generation Islanding – Implications on Power System Dynamic Performance”, IEEE Power Engineering Society Summer Meeting, pp.92-96, 2002 [6] Barker, P., de Mello, R., “Determining the Impact of Distributed Generation on Power Systems: Part 1 – Radial Distribution System”, Power engineering Society Summer Meeting, pp. 1645-1655, 2000 [7] Stevens, J., Bonn, R., Ginn, J., Gonzalez, S., Kern, G., “Development and Testing of an Approach to Anti-islanding in Utility-Interconnected Photovoltaic Systems” Sandia Report SAND-2000-1939, August 2000 [8] IEEE 929-2000 IEEE Recommended Practice for Utility Interface of Photovoltaic (PV) Systems [9] Gish, W. B., Greuel, S., and Feero, W. E., “Ferroresonance and loading relationships for DSG installations,” IEEE Transactions on Power Delivery, Vol. PWRD-2, no. 3, pp. 953–959, July 1987 [10] Kobayashi, H. Takigawa, K, Hashimoto, E., Kitamura, A., Matsuda, H., “Method for Preventing Islanding Phenomenon in Utility Grid with a Number of Small Scale PV Systems”, IEEE Photovoltaic Specialists Conference, pp. 695-700, 1991 IEEE