SlideShare a Scribd company logo
1 of 26
HIGH VOLTAGE DIRECT
CURRENT TRANSMISSION
(HVDC)
History
 First commercial application of HVDC between Swedish
mainland and the island of Gotland in 1954.
 Underwater link of 90 km and 20 MW.
 With reduced size, cost and improved reliability of power
electronic converters, has made HVDC transmission more
widespread.
Need of HVDC systems
 For bulk transmission of electrical power.
 In AC systems there arises some technical
problems in long distances.
 For high power transmission through
underground cables.(AC-charging current
problems)
 In the view of the drawbacks HVDC
transmission came into picture.
HVDC system schematic
HVDC System Configurations and Components
HVDC links can be broadly classified into:
 Monopolar links
 Bipolar links
 Homopolar links
 Multiterminal links
 Back-to-back links
Monopolar Links
 It uses one conductor
 The return path is provided by ground or water
 Use of this system is mainly due to cost considerations
 A metallic return may be used where earth resistivity is too high
 This configuration type is the first step towards a bipolar link
Bipolar Links
 It uses two conductors, one positive and the other negative.
 Each terminal has two converters of equal rated voltage,
connected in series on the DC side
 The junctions between the converters is grounded
 Currents in the two poles are equal and there is no ground
current
 If one pole is isolated due to fault, the other pole can
operate with ground and carry half the rated load.
Homopolar Links
 It has two or more conductors all having the same
polarity, usually negative
 Since the corona effect in DC transmission lines is
less for negative polarity, homopolar link is usually
operated with negative polarity
 The return path for such a system is through ground
Multiterminal links
 Transmits power between three or more AC
substation.
 Frequency conversion is possible.
 In Europe where there is international grid,
power can be exchanged between nations.
Back-to-back links
 For frequency conversion.
 For asynchronous interconnection.
 Both Rectifier & Inverter are at same place,
connected in DC loop.
 There is no DC transmission line.
Components of HVDC Transmission Systems
1. Converter
transformer
2. Converters
3. Smoothing
reactors
4. Harmonic filters
5. Reactive power
supplies
6. Electrodes
7. DC lines
8. AC circuit
breakers
Converter transformer
 Connected between converter and the AC bus.
 Specially deigned as they have dc component coming
from converter side.
 They may be three single units or a 3 ph unit
Converters
 They perform AC/DC and DC/AC conversion.
 They consist of thyristor bridges and transformers.
 Thyristor bridge consists of high voltage thyristor connected in a 6-pulse or
12-pulse arrangement.
 The transformers are ungrounded such that the DC system will be able to
establish its own reference to ground.
Smoothing reactors
 They are high reactors with
inductance as high as 1 H in
series with each pole
 They function to smooth out
the DC output from the rectifier
circuit.
Harmonic filters
 Converters generate harmonics in voltages
and currents.
 These harmonics may cause overheating of
capacitors and interference with
telecommunication systems
 Harmonic filters are used to mitigate these
harmonics
 twelve-pulse bridge converter is used
because it creates harmonics of order 12n+1
on AC side and 12n on DC side
Reactive power supplies
 Under steady state condition conditions, the
reactive power consumed by the converter is
about 50% of the active power transferred
 Under transient conditions it could be much
higher
 Reactive power is, therefore, provided near
the converters
 For a strong AC power system, this reactive
power is provided by a shunt capacitor
Electrodes
 Electrodes are conductors that provide
connection to the earth for neutral. They have
large surface to minimize current densities and
surface voltage gradients.
DC lines
 They may be overhead lines or cables
 DC lines are very similar to AC lines
AC circuit breakers
 They used to clear faults in the transformer
and for taking the DC link out of service
 They are not used for clearing DC faults
 DC faults are cleared by converter control
more rapidly
Multiple Bridge Converters
 Two or more bridges are connected in series
to obtain as a high a direct voltage as
required
 These bridges are series on the DC side,
parallel on the AC side
 A bank of transformers is connected
between the AC source and the bridges
 The ratio of the transformers are adjustable
under load
 Multiple bridge converters are used in even
numbers and arranged in pairs for 12-pulse
arrangement
Multiple Bridge Converters
 Two banks of transformers, one connected in Y-Y and the other Y- are used to supply
each pair of bridges
 The three-phase voltage supplied at one bridge is displaced from the other by 30 degrees
 These AC wave shapes for the two bridges add up to produce a wave shape that is more
sinusoidal than the current waves of each of the 6-pulse bridges
 This 12-pulse arrangement effectively eliminates 5th and 7th harmonics on the AC side.
This reduces the cost of harmonic filters
 This arrangement also reduces ripple in the DC voltage
Basic means of control
 This can be accomplished by:
 Controlling firing angles of the rectifier and inverter (for fast
action)
 Changing taps on the transformers on the AC side (slow
response)
 Power reversal is obtained by reversal of polarity of
direct voltages at both ends
Control implementation
 Tap changer control
 It is used to keep the converter firing angles ( and )
within the desired range
 They are sized to allow for minimum and maximum steady
state voltage variation
 Current limits:
 Maximum short circuit current is limited to 1.2 to 1.3
times normal full load current to avoid thermal damage
to equipment
 Minimum current limit is set to avoid ripple in the current
that may cause it to be discontinuous or intermittent
 Minimum firing angle limit:
 In case of a DC fault, the inverter station may switch to
rectification mode. This would result in reversal of power flow
 To prevent this, the a minimum value for firing angle is set
Advantages
 In a number of applications HVDC is more effective than AC
transmission. Examples include:
 Undersea cables, where high capacitance causes additional AC
losses. (e.g. 250 km Baltic Cable between Sweden and Germany)
 Long power transmission without intermediate taps, for example,
in remote areas
 Power transmission and stabilization between unsynchronized AC
distribution systems
 Connecting a remote generating plant to the distribution grid
 Reducing line cost: 1) fewer conductors 2) thinner conductors
since HVDC does not suffer from the skin effect
 Facilitate power transmission between different countries that use
AC at differing voltages and/or frequencies
 Synchronize AC produced by renewable energy sources
Disadvantages
 The disadvantages of HVDC are in conversion,
switching and control.
 Expensive inverters with limited overload capacity
 Higher losses in static inverters at smaller transmission
distances
 The cost of the inverters may not be offset by reductions
in line construction cost and lower line loss.
 High voltage DC circuit breakers are difficult to build
because some mechanism must be included in the circuit
breaker to force current to zero, otherwise arcing and
contact wear would be too great to allow reliable
switching.

More Related Content

What's hot

Hydrothermal scheduling
Hydrothermal schedulingHydrothermal scheduling
Hydrothermal schedulingASHIRBAD BARIK
 
Hvdc transmission seminar
Hvdc transmission seminar Hvdc transmission seminar
Hvdc transmission seminar Utkarsh Jambhule
 
Ppt of ehv ac transmission
Ppt of ehv ac transmissionPpt of ehv ac transmission
Ppt of ehv ac transmissionSumit Kumar
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Deviceskhemraj298
 
MTDC Systems: Control & Protection of MTDC Systems
MTDC Systems: Control & Protection of MTDC SystemsMTDC Systems: Control & Protection of MTDC Systems
MTDC Systems: Control & Protection of MTDC SystemsAsif Jamadar
 
Principles Control & Protection of HVDC Schemes
Principles Control & Protection of HVDC SchemesPrinciples Control & Protection of HVDC Schemes
Principles Control & Protection of HVDC SchemesPower System Operation
 
Grid integration issues and solutions
Grid integration issues and solutionsGrid integration issues and solutions
Grid integration issues and solutionsSwathi Venugopal
 
Power Quality and Monitoring
Power Quality and MonitoringPower Quality and Monitoring
Power Quality and Monitoringash08031996
 
HVDC TRANSMISSION LINE PPT
HVDC TRANSMISSION LINE  PPTHVDC TRANSMISSION LINE  PPT
HVDC TRANSMISSION LINE PPTAshutosh kumar
 
Types Of Substations
Types Of SubstationsTypes Of Substations
Types Of Substationssapna186
 
Basic types of facts controllers
Basic types of facts controllersBasic types of facts controllers
Basic types of facts controllersAyyarao T S L V
 
Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1JayakalyanReddy
 
Flexible AC Transmission Sytstem
Flexible AC Transmission Sytstem Flexible AC Transmission Sytstem
Flexible AC Transmission Sytstem ganeshbehera6
 
Voltage source Converters as a building block of HVDC and FACTS
Voltage source Converters as a building block of HVDC and FACTSVoltage source Converters as a building block of HVDC and FACTS
Voltage source Converters as a building block of HVDC and FACTSKarthik Bharadwaj
 

What's hot (20)

HVDC benefits and types
HVDC benefits and typesHVDC benefits and types
HVDC benefits and types
 
Hvdc notes
Hvdc notesHvdc notes
Hvdc notes
 
Hydrothermal scheduling
Hydrothermal schedulingHydrothermal scheduling
Hydrothermal scheduling
 
Hvdc transmission seminar
Hvdc transmission seminar Hvdc transmission seminar
Hvdc transmission seminar
 
Ppt of ehv ac transmission
Ppt of ehv ac transmissionPpt of ehv ac transmission
Ppt of ehv ac transmission
 
HVDC presentation
HVDC presentationHVDC presentation
HVDC presentation
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Devices
 
MTDC Systems: Control & Protection of MTDC Systems
MTDC Systems: Control & Protection of MTDC SystemsMTDC Systems: Control & Protection of MTDC Systems
MTDC Systems: Control & Protection of MTDC Systems
 
Principles Control & Protection of HVDC Schemes
Principles Control & Protection of HVDC SchemesPrinciples Control & Protection of HVDC Schemes
Principles Control & Protection of HVDC Schemes
 
Grid integration issues and solutions
Grid integration issues and solutionsGrid integration issues and solutions
Grid integration issues and solutions
 
Power Quality and Monitoring
Power Quality and MonitoringPower Quality and Monitoring
Power Quality and Monitoring
 
HVDC TRANSMISSION LINE PPT
HVDC TRANSMISSION LINE  PPTHVDC TRANSMISSION LINE  PPT
HVDC TRANSMISSION LINE PPT
 
Types Of Substations
Types Of SubstationsTypes Of Substations
Types Of Substations
 
Basic types of facts controllers
Basic types of facts controllersBasic types of facts controllers
Basic types of facts controllers
 
MTDC SYSTEMS
MTDC SYSTEMSMTDC SYSTEMS
MTDC SYSTEMS
 
Facts lectures-2014
Facts lectures-2014Facts lectures-2014
Facts lectures-2014
 
Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1Unified Power Flow Controller(upfc)1
Unified Power Flow Controller(upfc)1
 
Flexible AC Transmission Sytstem
Flexible AC Transmission Sytstem Flexible AC Transmission Sytstem
Flexible AC Transmission Sytstem
 
Hvdc
HvdcHvdc
Hvdc
 
Voltage source Converters as a building block of HVDC and FACTS
Voltage source Converters as a building block of HVDC and FACTSVoltage source Converters as a building block of HVDC and FACTS
Voltage source Converters as a building block of HVDC and FACTS
 

Viewers also liked

HVDC and FACTS for Improved Power Delivery Through Long Transmission Lines
HVDC and FACTS for Improved Power Delivery Through Long Transmission LinesHVDC and FACTS for Improved Power Delivery Through Long Transmission Lines
HVDC and FACTS for Improved Power Delivery Through Long Transmission LinesRajaram Meena
 
Hvdc ppt with animated videos
Hvdc ppt with animated videosHvdc ppt with animated videos
Hvdc ppt with animated videosJawad Ali
 
hvdc transimission line
hvdc transimission linehvdc transimission line
hvdc transimission lineMohd Sohail
 
Theory of HVDC transmission
Theory of HVDC transmission Theory of HVDC transmission
Theory of HVDC transmission SAURAV DAYAL SING
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmissionsipr
 
Application of power electronics in hvdc
Application of power electronics in hvdcApplication of power electronics in hvdc
Application of power electronics in hvdcSunny Purani
 
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...Yole Developpement
 
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC Research
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC ResearchOPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC Research
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC ResearchOPAL-RT TECHNOLOGIES
 
Market Research Report : Transformers Market in India 2011
Market Research Report : Transformers Market in India 2011Market Research Report : Transformers Market in India 2011
Market Research Report : Transformers Market in India 2011Netscribes, Inc.
 
Electrical Transfomers
Electrical TransfomersElectrical Transfomers
Electrical TransfomersA.S. Krishna
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmissionSajan Sahu
 
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020IndexBox Marketing
 
High Voltage Direct Current Transmission System
High Voltage Direct Current Transmission SystemHigh Voltage Direct Current Transmission System
High Voltage Direct Current Transmission SystemNadeem Khilji
 
Power Grid Control System
Power Grid Control SystemPower Grid Control System
Power Grid Control SystemJigyasa Singh
 

Viewers also liked (20)

HVDC and FACTS for Improved Power Delivery Through Long Transmission Lines
HVDC and FACTS for Improved Power Delivery Through Long Transmission LinesHVDC and FACTS for Improved Power Delivery Through Long Transmission Lines
HVDC and FACTS for Improved Power Delivery Through Long Transmission Lines
 
Hvdc ppt with animated videos
Hvdc ppt with animated videosHvdc ppt with animated videos
Hvdc ppt with animated videos
 
HVDC
HVDCHVDC
HVDC
 
Hvdc technology
Hvdc technologyHvdc technology
Hvdc technology
 
hvdc transimission line
hvdc transimission linehvdc transimission line
hvdc transimission line
 
Hvdc
HvdcHvdc
Hvdc
 
Theory of HVDC transmission
Theory of HVDC transmission Theory of HVDC transmission
Theory of HVDC transmission
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmission
 
Application of power electronics in hvdc
Application of power electronics in hvdcApplication of power electronics in hvdc
Application of power electronics in hvdc
 
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...
HVDC Transmission lines Market, Technology and Geographical Trends 2016 Prese...
 
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC Research
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC ResearchOPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC Research
OPAL-RT RT14 Conference: Application of RT-LAB in Flexible HVDC Research
 
Status of hvdc links
Status of hvdc linksStatus of hvdc links
Status of hvdc links
 
Market Research Report : Transformers Market in India 2011
Market Research Report : Transformers Market in India 2011Market Research Report : Transformers Market in India 2011
Market Research Report : Transformers Market in India 2011
 
Electrical Transfomers
Electrical TransfomersElectrical Transfomers
Electrical Transfomers
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmission
 
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020
EU: Electrical Transformers – Market Report. Analysis and Forecast to 2020
 
High Voltage Direct Current Transmission System
High Voltage Direct Current Transmission SystemHigh Voltage Direct Current Transmission System
High Voltage Direct Current Transmission System
 
Power Grid Control System
Power Grid Control SystemPower Grid Control System
Power Grid Control System
 
Multi level inverter
Multi level inverterMulti level inverter
Multi level inverter
 
Slide Chat
Slide ChatSlide Chat
Slide Chat
 

Similar to Hvdc

Applications of power electronics in HVDC
Applications of  power electronics in HVDCApplications of  power electronics in HVDC
Applications of power electronics in HVDCKabilesh K
 
HDVC transmission AND SRC operation.pptx
HDVC transmission AND SRC operation.pptxHDVC transmission AND SRC operation.pptx
HDVC transmission AND SRC operation.pptxAJITTHAKUR68
 
Comparative evaluation of hvdc
Comparative evaluation of hvdcComparative evaluation of hvdc
Comparative evaluation of hvdcshivamverma394
 
high-voltage-dc-transmission-hvdc PKP.pptx
high-voltage-dc-transmission-hvdc PKP.pptxhigh-voltage-dc-transmission-hvdc PKP.pptx
high-voltage-dc-transmission-hvdc PKP.pptxSatish Pydimarla
 
TDU - Unit 02 - HVDC, FACTS and sub-stations
TDU - Unit  02 - HVDC, FACTS and sub-stations TDU - Unit  02 - HVDC, FACTS and sub-stations
TDU - Unit 02 - HVDC, FACTS and sub-stations PremanandDesai
 
HVDC Transmission Line
HVDC Transmission LineHVDC Transmission Line
HVDC Transmission LineManikyam7
 
Ehv ac dc ppt u 5
Ehv ac dc ppt u 5Ehv ac dc ppt u 5
Ehv ac dc ppt u 5eeeraviriet
 
HVDC transmission system and its components
HVDC transmission system and its componentsHVDC transmission system and its components
HVDC transmission system and its componentsMuppaniSiddharthaRed
 
PPTs_Module-5_EEE2701_EPTD-II (1).pdf
PPTs_Module-5_EEE2701_EPTD-II (1).pdfPPTs_Module-5_EEE2701_EPTD-II (1).pdf
PPTs_Module-5_EEE2701_EPTD-II (1).pdfAkshayUnni8
 
315564438 hvdc-transmission-ppt
315564438 hvdc-transmission-ppt315564438 hvdc-transmission-ppt
315564438 hvdc-transmission-pptLaveen Raghunam
 
HVDC Transmission system
HVDC Transmission system HVDC Transmission system
HVDC Transmission system aniketpathak45
 

Similar to Hvdc (20)

Applications of power electronics in HVDC
Applications of  power electronics in HVDCApplications of  power electronics in HVDC
Applications of power electronics in HVDC
 
HDVC transmission AND SRC operation.pptx
HDVC transmission AND SRC operation.pptxHDVC transmission AND SRC operation.pptx
HDVC transmission AND SRC operation.pptx
 
Hvdc dad
Hvdc dadHvdc dad
Hvdc dad
 
HVDC System
HVDC SystemHVDC System
HVDC System
 
Comparative evaluation of hvdc
Comparative evaluation of hvdcComparative evaluation of hvdc
Comparative evaluation of hvdc
 
Edited hvdc2222upload
Edited hvdc2222uploadEdited hvdc2222upload
Edited hvdc2222upload
 
RGPV EX7102 unit I
RGPV EX7102 unit IRGPV EX7102 unit I
RGPV EX7102 unit I
 
Tectechnical
TectechnicalTectechnical
Tectechnical
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmission
 
Hvdc
HvdcHvdc
Hvdc
 
high-voltage-dc-transmission-hvdc PKP.pptx
high-voltage-dc-transmission-hvdc PKP.pptxhigh-voltage-dc-transmission-hvdc PKP.pptx
high-voltage-dc-transmission-hvdc PKP.pptx
 
TDU - Unit 02 - HVDC, FACTS and sub-stations
TDU - Unit  02 - HVDC, FACTS and sub-stations TDU - Unit  02 - HVDC, FACTS and sub-stations
TDU - Unit 02 - HVDC, FACTS and sub-stations
 
HVDC Transmission Line
HVDC Transmission LineHVDC Transmission Line
HVDC Transmission Line
 
Ehv ac dc ppt u 5
Ehv ac dc ppt u 5Ehv ac dc ppt u 5
Ehv ac dc ppt u 5
 
Hvdc system.pptx
Hvdc system.pptxHvdc system.pptx
Hvdc system.pptx
 
HVDC transmission system and its components
HVDC transmission system and its componentsHVDC transmission system and its components
HVDC transmission system and its components
 
PPTs_Module-5_EEE2701_EPTD-II (1).pdf
PPTs_Module-5_EEE2701_EPTD-II (1).pdfPPTs_Module-5_EEE2701_EPTD-II (1).pdf
PPTs_Module-5_EEE2701_EPTD-II (1).pdf
 
Hvdc transmission
Hvdc transmissionHvdc transmission
Hvdc transmission
 
315564438 hvdc-transmission-ppt
315564438 hvdc-transmission-ppt315564438 hvdc-transmission-ppt
315564438 hvdc-transmission-ppt
 
HVDC Transmission system
HVDC Transmission system HVDC Transmission system
HVDC Transmission system
 

More from rounak077

Nanowire battery
Nanowire batteryNanowire battery
Nanowire batteryrounak077
 
Rs232 485 fundamental
Rs232 485 fundamentalRs232 485 fundamental
Rs232 485 fundamentalrounak077
 
Sample and hold instru
Sample and hold instru Sample and hold instru
Sample and hold instru rounak077
 
 multiplexer 
 multiplexer  multiplexer 
 multiplexer rounak077
 

More from rounak077 (8)

Nanowire battery
Nanowire batteryNanowire battery
Nanowire battery
 
Windpower
WindpowerWindpower
Windpower
 
Rs232 485 fundamental
Rs232 485 fundamentalRs232 485 fundamental
Rs232 485 fundamental
 
Windpower
WindpowerWindpower
Windpower
 
Timer 555
Timer 555Timer 555
Timer 555
 
Sample and hold instru
Sample and hold instru Sample and hold instru
Sample and hold instru
 
 multiplexer 
 multiplexer  multiplexer 
 multiplexer 
 
Capacitors
Capacitors Capacitors
Capacitors
 

Recently uploaded

DATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage exampleDATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage examplePragyanshuParadkar1
 
Effects of rheological properties on mixing
Effects of rheological properties on mixingEffects of rheological properties on mixing
Effects of rheological properties on mixingviprabot1
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvLewisJB
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVRajaP95
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx959SahilShah
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024hassan khalil
 
main PPT.pptx of girls hostel security using rfid
main PPT.pptx of girls hostel security using rfidmain PPT.pptx of girls hostel security using rfid
main PPT.pptx of girls hostel security using rfidNikhilNagaraju
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxPoojaBan
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxwendy cai
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfROCENODodongVILLACER
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxKartikeyaDwivedi3
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024Mark Billinghurst
 

Recently uploaded (20)

DATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage exampleDATA ANALYTICS PPT definition usage example
DATA ANALYTICS PPT definition usage example
 
Effects of rheological properties on mixing
Effects of rheological properties on mixingEffects of rheological properties on mixing
Effects of rheological properties on mixing
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvv
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
VICTOR MAESTRE RAMIREZ - Planetary Defender on NASA's Double Asteroid Redirec...
 
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IVHARMONY IN THE NATURE AND EXISTENCE - Unit-IV
HARMONY IN THE NATURE AND EXISTENCE - Unit-IV
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024Architect Hassan Khalil Portfolio for 2024
Architect Hassan Khalil Portfolio for 2024
 
main PPT.pptx of girls hostel security using rfid
main PPT.pptx of girls hostel security using rfidmain PPT.pptx of girls hostel security using rfid
main PPT.pptx of girls hostel security using rfid
 
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Serviceyoung call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptx
 
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
9953056974 Call Girls In South Ex, Escorts (Delhi) NCR.pdf
 
What are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptxWhat are the advantages and disadvantages of membrane structures.pptx
What are the advantages and disadvantages of membrane structures.pptx
 
Design and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdfDesign and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdf
 
Risk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdfRisk Assessment For Installation of Drainage Pipes.pdf
Risk Assessment For Installation of Drainage Pipes.pdf
 
Concrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptxConcrete Mix Design - IS 10262-2019 - .pptx
Concrete Mix Design - IS 10262-2019 - .pptx
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024
 

Hvdc

  • 1. HIGH VOLTAGE DIRECT CURRENT TRANSMISSION (HVDC)
  • 2. History  First commercial application of HVDC between Swedish mainland and the island of Gotland in 1954.  Underwater link of 90 km and 20 MW.  With reduced size, cost and improved reliability of power electronic converters, has made HVDC transmission more widespread.
  • 3. Need of HVDC systems  For bulk transmission of electrical power.  In AC systems there arises some technical problems in long distances.  For high power transmission through underground cables.(AC-charging current problems)  In the view of the drawbacks HVDC transmission came into picture.
  • 5. HVDC System Configurations and Components HVDC links can be broadly classified into:  Monopolar links  Bipolar links  Homopolar links  Multiterminal links  Back-to-back links
  • 6. Monopolar Links  It uses one conductor  The return path is provided by ground or water  Use of this system is mainly due to cost considerations  A metallic return may be used where earth resistivity is too high  This configuration type is the first step towards a bipolar link
  • 7. Bipolar Links  It uses two conductors, one positive and the other negative.  Each terminal has two converters of equal rated voltage, connected in series on the DC side  The junctions between the converters is grounded  Currents in the two poles are equal and there is no ground current  If one pole is isolated due to fault, the other pole can operate with ground and carry half the rated load.
  • 8. Homopolar Links  It has two or more conductors all having the same polarity, usually negative  Since the corona effect in DC transmission lines is less for negative polarity, homopolar link is usually operated with negative polarity  The return path for such a system is through ground
  • 9. Multiterminal links  Transmits power between three or more AC substation.  Frequency conversion is possible.  In Europe where there is international grid, power can be exchanged between nations.
  • 10. Back-to-back links  For frequency conversion.  For asynchronous interconnection.  Both Rectifier & Inverter are at same place, connected in DC loop.  There is no DC transmission line.
  • 11. Components of HVDC Transmission Systems 1. Converter transformer 2. Converters 3. Smoothing reactors 4. Harmonic filters 5. Reactive power supplies 6. Electrodes 7. DC lines 8. AC circuit breakers
  • 12. Converter transformer  Connected between converter and the AC bus.  Specially deigned as they have dc component coming from converter side.  They may be three single units or a 3 ph unit
  • 13. Converters  They perform AC/DC and DC/AC conversion.  They consist of thyristor bridges and transformers.  Thyristor bridge consists of high voltage thyristor connected in a 6-pulse or 12-pulse arrangement.  The transformers are ungrounded such that the DC system will be able to establish its own reference to ground.
  • 14. Smoothing reactors  They are high reactors with inductance as high as 1 H in series with each pole  They function to smooth out the DC output from the rectifier circuit.
  • 15. Harmonic filters  Converters generate harmonics in voltages and currents.  These harmonics may cause overheating of capacitors and interference with telecommunication systems  Harmonic filters are used to mitigate these harmonics  twelve-pulse bridge converter is used because it creates harmonics of order 12n+1 on AC side and 12n on DC side
  • 16. Reactive power supplies  Under steady state condition conditions, the reactive power consumed by the converter is about 50% of the active power transferred  Under transient conditions it could be much higher  Reactive power is, therefore, provided near the converters  For a strong AC power system, this reactive power is provided by a shunt capacitor
  • 17. Electrodes  Electrodes are conductors that provide connection to the earth for neutral. They have large surface to minimize current densities and surface voltage gradients. DC lines  They may be overhead lines or cables  DC lines are very similar to AC lines
  • 18. AC circuit breakers  They used to clear faults in the transformer and for taking the DC link out of service  They are not used for clearing DC faults  DC faults are cleared by converter control more rapidly
  • 19.
  • 20. Multiple Bridge Converters  Two or more bridges are connected in series to obtain as a high a direct voltage as required  These bridges are series on the DC side, parallel on the AC side  A bank of transformers is connected between the AC source and the bridges  The ratio of the transformers are adjustable under load  Multiple bridge converters are used in even numbers and arranged in pairs for 12-pulse arrangement
  • 21. Multiple Bridge Converters  Two banks of transformers, one connected in Y-Y and the other Y- are used to supply each pair of bridges  The three-phase voltage supplied at one bridge is displaced from the other by 30 degrees  These AC wave shapes for the two bridges add up to produce a wave shape that is more sinusoidal than the current waves of each of the 6-pulse bridges  This 12-pulse arrangement effectively eliminates 5th and 7th harmonics on the AC side. This reduces the cost of harmonic filters  This arrangement also reduces ripple in the DC voltage
  • 22.
  • 23. Basic means of control  This can be accomplished by:  Controlling firing angles of the rectifier and inverter (for fast action)  Changing taps on the transformers on the AC side (slow response)  Power reversal is obtained by reversal of polarity of direct voltages at both ends
  • 24. Control implementation  Tap changer control  It is used to keep the converter firing angles ( and ) within the desired range  They are sized to allow for minimum and maximum steady state voltage variation  Current limits:  Maximum short circuit current is limited to 1.2 to 1.3 times normal full load current to avoid thermal damage to equipment  Minimum current limit is set to avoid ripple in the current that may cause it to be discontinuous or intermittent  Minimum firing angle limit:  In case of a DC fault, the inverter station may switch to rectification mode. This would result in reversal of power flow  To prevent this, the a minimum value for firing angle is set
  • 25. Advantages  In a number of applications HVDC is more effective than AC transmission. Examples include:  Undersea cables, where high capacitance causes additional AC losses. (e.g. 250 km Baltic Cable between Sweden and Germany)  Long power transmission without intermediate taps, for example, in remote areas  Power transmission and stabilization between unsynchronized AC distribution systems  Connecting a remote generating plant to the distribution grid  Reducing line cost: 1) fewer conductors 2) thinner conductors since HVDC does not suffer from the skin effect  Facilitate power transmission between different countries that use AC at differing voltages and/or frequencies  Synchronize AC produced by renewable energy sources
  • 26. Disadvantages  The disadvantages of HVDC are in conversion, switching and control.  Expensive inverters with limited overload capacity  Higher losses in static inverters at smaller transmission distances  The cost of the inverters may not be offset by reductions in line construction cost and lower line loss.  High voltage DC circuit breakers are difficult to build because some mechanism must be included in the circuit breaker to force current to zero, otherwise arcing and contact wear would be too great to allow reliable switching.