SlideShare uma empresa Scribd logo
1 de 37
Baixar para ler offline
Power Factor & APFCPower Factor & APFC
1
By: Ravi Shankar Singh
What is power factor…?What is power factor…?
2
Power Factor = Active Power (kW)/Apparent Power (kVA)
PF≤1.0
Usually P.F is always “Lag” (Inductive)
Some time P.F can be “Lead” (Capacitive).
Origin of Low Power FactorOrigin of Low Power Factor
3
 Electrical Equipment need Reactive Power
 Inductive loads draw Reactive Power
 Phase difference between current & Voltage
reduces “Displacement PF”.
 Reactive Power to maintain magnetic fields
in Motors.
 Non-Linear loads reduces “Distortion PF”.
 True PF, being product of displacement and
distortion PF is lower than both.
Capacitors can only improve displacement PF.
Disadvantages of low power factorDisadvantages of low power factor
 Inefficient use of Electrical Energy:
 Overloading of Transformer/Generator;
 Overloading of Cable, Switchgear, Busbar …
 Higher temperature due to increased losses
 Imposes larger kVA demand
 Limits No. of loads that can be connected
 Reduced revenue to Electrical Utilities
 Poor Voltage regulation
4
Power FactorPower Factor
CorrectionCorrection
5
Ø2
Ø1
V= Line Voltage
I=Active Current
I1
I2
IR(L)
IR(C)
Reactive Current
(inductive)
Reactive Current
(capacitive)
6
Reduction in
Transformer Rating
Reduction in KVAR
Demand
Advantages of P.F
Correction
Reduction in KVA
Demand
Reduction in Line
Current
Reduction in Line
loss
Reduction in
Cable / Bus-bar
size
Reduction in
Switchgear
Rating
Avoid power factor
penalties
Reduction in KVA
Demand
ESTIMATION OF kVAr REQUIREDESTIMATION OF kVAr REQUIRED
for New Electrical Installationsfor New Electrical Installations
7
M M M
75 HP,
(415V,
3ph,
compressor
pf. 0.7)
75 HP,
(415V,
3ph,
compressor)
20 HP,
(415V,
3ph,
Pump,
PF =0.70
Lag)
Other loads,
(total of 25
Kw)
500kVA, 11kV/415V,
%Impedance = 4.25%
50 kVA,
(440V,
3ph,
UPS)
Lighting
(Load
10kW)
M
30 HP,
(415V,
3ph, I M pf
0.7)
Let us assume that the target Power Factor as desired by the Customer is
0.95.
8
Kvar For The Supply Transformer-
For 500 kVA transformer, kVAr = 30 kVAr
Kvar For Induction Motor-
rating of motor = 200 HP x 0.746
= 150 kW
Kvar for motor = 150*[tan(cos-1
(0.95)- tan(cos-1
(0.99)]
= 104 Kvar
Kvar For UPS-
rating of UPS = 50 KVA* 0.7
= 35 Kw
Kvar for UPS = 35 [tan(cos-1
(0.70)- tan(cos-1
(0.99)]
= 25 Kvar
Kvar For Others & lighting load-
Kvar for UPS = 24 [tan(cos-1
(0.70)- tan(cos-1
(0.99)]
= 17 Kvar
Total kvar requirement = (30+104+35+25+17)kvar =211 Kvar
Assuming 15% design assumption and contigency = 221*0.15=31.65 Kvar
Total kvar = 242.65 kvar
Kavr recommended= 250 kvar
Capacitor req. (c) = Qc/V2
(2πf)
Hence Capacitor req. for UPF=106
*250/(2302
*100π)
= 150.51µF.
Type of compensationType of compensation
 Fixed compensation
 Variable compensation(for varying loads)- APFC
 Svc
9
1. Individual compensation
2. Group compensation
3. Central compensation
- Steady Loads
– No load compensation of Induction Motors
– No load compensation of Transformers
Disadvantages of fixed capacitorDisadvantages of fixed capacitor
 Manual operation(on/off)
 Not meet the require kvar under varying
loads.
 Can result leading power factor
 Cause over voltage
 Mal-operation of relays, diesel generators
 Saturation of transformer
 Penalty by electricity authority
10
11
•varying power demand on the supply system.
•power factor also varies as a function of the load requirements.
•difficult to maintain a consistent power factor by use of Fixed
Compensation i.e. fixed capacitors.
• leading power factor under light load conditions(fixed
compensation)
•This result in over voltages, saturation of transformers, mal-
operation of diesel generating sets, penalties by electric supply
authorities.
•automatically variation, without manual intervention, the compensation to
suit the load requirements.
•Automatic Power Factor Correction(APFC) system provide this facility.
•leading power factor will be also prevented.
NEED FOR AUTOMATIC POWER FACTOR
CORRECTION
Benefits of APFCBenefits of APFC
 Consistently high power factor under fluctuating loads
 Prevention of leading power factor
 Eliminate power factor penalty
 Lower energy consumption by reducing losses.
 Continuously sense and monitor load
 Automatically switch on/off relevant capacitors steps for
consistent power factor.
 Ensures easy user interface
 Protect under any internal fault
 Advance µ- relay with communication facility
 Used MPP-H/MD-XL/FF(APP) type capacitors
 User friendly, aesthetecally designed enclosure, dust and vermin
proof.
12
Automatic Power Factor CorrectionAutomatic Power Factor Correction
(APFC):(APFC):
 Capacitors grouped into several steps.
 • Suitable switching devices with coupled with
inrush current limiting devices are provided for
each step
 • Power Factor sensed by CT in line side
 • kVAr required to achieve target PF is computed
by the Microprocessor based APFC relay
 • APFC relay switches appropriate capacitor steps
 • CT senses improved PF and gives feedback
 • Thus target PF is achieved
13
How to Improve Power Factor WithoutHow to Improve Power Factor Without
Causing Harmonic Problem ?Causing Harmonic Problem ?
14
 Conventional capacitors should not be used.
 Capacitors should be replaced by harmonic suppression filters
(series combination of suitable series reactor & capacitors) so
that,
 It offers capacitive reactance at fundamental frequency for
necessary power factor correction.
 It offers inductive reactance at all higher order dominant
harmonic frequencies to avoid resonance.
 Its self series resonance frequency “fR” do not coincide with
predominant harmonics.
Network With HarmonicNetwork With Harmonic
FiltersFilters
15
No resonance at harmonic frequencies
as filter is inductive at such
frequencies
Harmonic currents flow towards Grid ,
as it offers least impedance compared
to filter
Predominantly fundamental current
flows through Capacitors
Moderate THD(V) in the Bus
No harmonic overloading of
Capacitors
Improvement in Power Factor
without Harmonic overload
NonLinear
Load
BUS
M
GRID
ZT
Equivalent Load
Impedance “ZL”
ZN
L
C
Specification of capacitors in APFCSpecification of capacitors in APFC
 Qkvar
 Degree Of Protection IP20
 Ambient temperature
 Voltage rise should be≤ 3.0% [% Vc = (Q kvar
*%X)/(kva)]
 Voltage rise due to series reactor and harmonics
 Size of individual capacitor banks (step requirement)
 Directly connected Discharge Device(Resistor, VT)
to discharge the capacitor to reduce voltage to 50
volts within one minute
16
Selection of switching equipmentSelection of switching equipment
FOR LT
 Switch- fuse units/CBs/ Thyristers
 Switch should be quick make and break type
 Rating of CB, contactors, fuse and cable should be≥130% of
capacitor rated current.
 For automatic switching, each step capacitor should be provided
with fuse and contactor.
FOR HT
 Ht capacitor is connected to bus by CB
 Cb rating should be ≥ maximum operating voltage of circuit
 Continuous current rating of CB should be ≥ 135% of rated
capacitor bank current
17
Harmonics and parallel resonanceHarmonics and parallel resonance
 H=Kp ± 1 (converter) where k= 1,2,3,4,…….
 p= pulsating index
 High Harmonics current produces high harmonics
voltages.
 When harminics current frequency and parrellel
resonance become equal than corrosponding
harmonics voltage produces over current in
capacitor.
18
Series reactorSeries reactor
 XT= Xc/h2
 Supress high inrush current to safe value at
time of capacitor switching.
 Improve voltage waveform
 Reactor should be able to carry 135%of rated
contineous current.
Discharge VT
 To discharge voltage of capacitor
19
TYPES OF CAPACITOR TECHNOLOGIESTYPES OF CAPACITOR TECHNOLOGIES
20
 MPP - METALLISED POLYPROPYLENE
 MD - MIXED DIELECTRIC
 FF/ALL PP - FILM - FOIL OR ALL POLY
PROPELENE
 MD -XL - MIXED DIELECTRIC LOW LOSS
METALISED POLYPROPELENE CAPACITORMETALISED POLYPROPELENE CAPACITOR
21
 MPP - METALLISED
POLYPROPELENE
 METALISATION HAS BEEN DONE ON
ONE SIDE OF POLY PROPELENE
FILM AND USED FOR CAPACITOR
WINDING
 ECNOMICAL AND COMPETITIVE
DESIGN
 MPP-S - NORMAL DUTY
 MPP-H - MEDIUM DUTY
PP FILM
METALLISED LAYER
MIXEDMIXED DIELECTRIC TYPEDIELECTRIC TYPE
22
 MD - MIXED DIELECTRIC
 PP FILM, FOIL AND PAPER ARE USED
TO FORM CAPACITOR WINDING
PP FILM
FOIL
PAPER
FILM FOIL OR APPFILM FOIL OR APP
23
 FILM FOIL OR APP - ALL POLY
PROPELENE
 METAL LAYER IS PLACED IN -
BETWEEN PP FILM TO FORM
CAPACITOR WINDING
PP FILM
FOIL
PP FILM
FILM FOIL OR APPFILM FOIL OR APP
24
 FILM FOIL OR APP - ALL POLY
PROPELENE
 METAL LAYER IS PLACED IN -
BETWEEN PP FILM TO FORM
CAPACITOR WINDING
PP FILM
FOIL
PP FILM
MIXED DIELECTRIC - LOWMIXED DIELECTRIC - LOW
LOSSLOSS
25
 MD-XL - MIXED DIELECTRIC LOW LOSS
 PP FILM AND DOUBLE SIDED
METALISED FILM ARE USED TO FORM
CAPACITOR WINDING
PP FILM
DOUBLE SIDE METALLISED
PAPER
26
Film foil/APP verses Mixed
dielectric comparison
Film foil/APP Mixed dielectric
• low dielectric watt loss
• Film not impregnable
• More prone to ‘Self healing’
• Inferior long term stability
• Moderate harmonic overload
capability
• High dielectric watt loss
• Paper impregnable
• less prone to ‘Self healing’
• Superior long term stability
• Good harmonic overload
capability
27
Mixed dielectric verses MDXL
Comparison
Mixed dielectric MDXL
• High dielectric watt loss
• Paper impregnable
• less prone to ‘Self healing’
• Superior long term stability
• Good harmonic overload
capability
• Lowest dielectric watt loss
• Combines plus points of MD
and APP types
• Excellent long term stability
• Superior harmonic overload
capability
APFCAPFC
28
29
30
Power factor correction inPower factor correction in
harmonics enrich environmentharmonics enrich environment
 percentage of Non linear loads in an
installation becomes greater than 20% of
connected load.
31
Conventional
capacitor
N/w Harmonics
Parallel resonance
Current amp
Overloading cap
Voltage distortion
Cap failure
solutionsolution
Use detuned filter circuit
 Avoid parallel resonance by offering inductive impedance to specific
harmonics frequency.
 The tuning frequency is generally lower than 90 % of the lowest
harmonic frequency whose amplitude is significant.
 Protect capacitors from harmonics over loading
 Reduces over loading of transformer and other rotating equipments.
 Prevent current amplification
 Achieve consistently high power factor.
 Can be used as fixed or APFC
32
COMPONENTSCOMPONENTS
33
CONTROLLERCONTROLLER
34
REACTORREACTOR
35
DRY TYPE RESIGN EMBADED
Circuit DiagramCircuit Diagram
36
37
THYRISTER CONTROLLED
VAR STATCOM

Mais conteúdo relacionado

Mais procurados

automatic power factor controller
automatic power factor controllerautomatic power factor controller
automatic power factor controllersingh1515
 
VSC based HVDC system
VSC based HVDC systemVSC based HVDC system
VSC based HVDC systemmdhsudhan
 
Substation protection devices
Substation protection devicesSubstation protection devices
Substation protection devicesRahul Aman
 
Power factor presentation
Power factor presentationPower factor presentation
Power factor presentationAzhar Abbas
 
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
 
Synchronous condensers
Synchronous condensersSynchronous condensers
Synchronous condensersujvnl
 
PPT ON 33/11KV SUBSTATION
PPT ON 33/11KV SUBSTATIONPPT ON 33/11KV SUBSTATION
PPT ON 33/11KV SUBSTATIONRavi Phadtare
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basicsno suhaila
 
Switchgear and protection lecture 1
Switchgear and protection lecture 1Switchgear and protection lecture 1
Switchgear and protection lecture 1anuphowlader1
 
Substation Maintenance
Substation MaintenanceSubstation Maintenance
Substation Maintenancekarikalan123
 
automatic power factor correction report
automatic power factor correction reportautomatic power factor correction report
automatic power factor correction reportamaljo joju e
 
Protection of transmission lines (distance)
Protection of transmission lines (distance)Protection of transmission lines (distance)
Protection of transmission lines (distance)Rohini Haridas
 

Mais procurados (20)

automatic power factor controller
automatic power factor controllerautomatic power factor controller
automatic power factor controller
 
VSC based HVDC system
VSC based HVDC systemVSC based HVDC system
VSC based HVDC system
 
Substation protection devices
Substation protection devicesSubstation protection devices
Substation protection devices
 
Power factor presentation
Power factor presentationPower factor presentation
Power factor presentation
 
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
 
Synchronous condensers
Synchronous condensersSynchronous condensers
Synchronous condensers
 
PPT ON 33/11KV SUBSTATION
PPT ON 33/11KV SUBSTATIONPPT ON 33/11KV SUBSTATION
PPT ON 33/11KV SUBSTATION
 
33 kv substation vt report
33 kv substation vt report33 kv substation vt report
33 kv substation vt report
 
220 kv gss
220 kv gss220 kv gss
220 kv gss
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basics
 
Switchgear and protection lecture 1
Switchgear and protection lecture 1Switchgear and protection lecture 1
Switchgear and protection lecture 1
 
Electrical SUBSTATION ppt
Electrical SUBSTATION pptElectrical SUBSTATION ppt
Electrical SUBSTATION ppt
 
Substation Maintenance
Substation MaintenanceSubstation Maintenance
Substation Maintenance
 
Facts controllers
Facts controllersFacts controllers
Facts controllers
 
Reactive power compensation
Reactive power compensationReactive power compensation
Reactive power compensation
 
automatic power factor correction report
automatic power factor correction reportautomatic power factor correction report
automatic power factor correction report
 
Introduction
IntroductionIntroduction
Introduction
 
Protection of transmission lines (distance)
Protection of transmission lines (distance)Protection of transmission lines (distance)
Protection of transmission lines (distance)
 
Dstatcom
DstatcomDstatcom
Dstatcom
 
Statcom
StatcomStatcom
Statcom
 

Semelhante a Apfc panel

Apf Cpresentation
Apf CpresentationApf Cpresentation
Apf Cpresentationprabhus_19
 
Mitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesMitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesDien Ha The
 
Mitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesMitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesDien Ha The
 
Mitsubishi inverter freqrol-hc2 series dienhathe.vn
Mitsubishi inverter freqrol-hc2 series dienhathe.vnMitsubishi inverter freqrol-hc2 series dienhathe.vn
Mitsubishi inverter freqrol-hc2 series dienhathe.vnDien Ha The
 
power factor correction soham+niraj
power factor correction soham+nirajpower factor correction soham+niraj
power factor correction soham+nirajsoham patel
 
Energy Metering ICs with Active Real Power
Energy Metering ICs with Active Real PowerEnergy Metering ICs with Active Real Power
Energy Metering ICs with Active Real PowerPremier Farnell
 
Power Quality Of Lighting Loads
Power Quality Of Lighting LoadsPower Quality Of Lighting Loads
Power Quality Of Lighting LoadsNereus Fernandes
 
Installation testing and_commissioning_o (1)
Installation testing and_commissioning_o (1)Installation testing and_commissioning_o (1)
Installation testing and_commissioning_o (1)FunExplode
 
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUES
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUESpower factor and power factor correction schneider EMERSON EDUARDO RODRIGUES
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUESEMERSON EDUARDO RODRIGUES
 
IRJET-Management of power factor and harmonic
IRJET-Management of power factor and harmonicIRJET-Management of power factor and harmonic
IRJET-Management of power factor and harmonicIRJET Journal
 
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...IOSR Journals
 
Day 3: Power Supply Quality in Buildings
Day 3: Power Supply Quality in Buildings Day 3: Power Supply Quality in Buildings
Day 3: Power Supply Quality in Buildings RCREEE
 
International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)inventionjournals
 
Analysis of harmonic at different level on distribution system ,its effect a...
Analysis of harmonic at different level on distribution system ,its effect  a...Analysis of harmonic at different level on distribution system ,its effect  a...
Analysis of harmonic at different level on distribution system ,its effect a...Anuj Arora
 
Impact of APFC Panel at LT Side of Transformer
Impact of APFC Panel at LT Side of TransformerImpact of APFC Panel at LT Side of Transformer
Impact of APFC Panel at LT Side of TransformerIJERA Editor
 
Product: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalProduct: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalStaco Energy
 

Semelhante a Apfc panel (20)

Capacitor
CapacitorCapacitor
Capacitor
 
Apf Cpresentation
Apf CpresentationApf Cpresentation
Apf Cpresentation
 
APFC AMTL 30.01.2015
APFC  AMTL  30.01.2015APFC  AMTL  30.01.2015
APFC AMTL 30.01.2015
 
Mitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesMitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 series
 
Mitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 seriesMitsubishi inverter freqrol-hc2 series
Mitsubishi inverter freqrol-hc2 series
 
Mitsubishi inverter freqrol-hc2 series dienhathe.vn
Mitsubishi inverter freqrol-hc2 series dienhathe.vnMitsubishi inverter freqrol-hc2 series dienhathe.vn
Mitsubishi inverter freqrol-hc2 series dienhathe.vn
 
power factor correction soham+niraj
power factor correction soham+nirajpower factor correction soham+niraj
power factor correction soham+niraj
 
Energy Metering ICs with Active Real Power
Energy Metering ICs with Active Real PowerEnergy Metering ICs with Active Real Power
Energy Metering ICs with Active Real Power
 
Power Quality Of Lighting Loads
Power Quality Of Lighting LoadsPower Quality Of Lighting Loads
Power Quality Of Lighting Loads
 
Installation testing and_commissioning_o (1)
Installation testing and_commissioning_o (1)Installation testing and_commissioning_o (1)
Installation testing and_commissioning_o (1)
 
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUES
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUESpower factor and power factor correction schneider EMERSON EDUARDO RODRIGUES
power factor and power factor correction schneider EMERSON EDUARDO RODRIGUES
 
Sme apfc panel catalogue
Sme apfc panel catalogueSme apfc panel catalogue
Sme apfc panel catalogue
 
IRJET-Management of power factor and harmonic
IRJET-Management of power factor and harmonicIRJET-Management of power factor and harmonic
IRJET-Management of power factor and harmonic
 
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...
Design and Simulation of PFC Circuit for AC/DC Converter Based on PWM Boost R...
 
Day 3: Power Supply Quality in Buildings
Day 3: Power Supply Quality in Buildings Day 3: Power Supply Quality in Buildings
Day 3: Power Supply Quality in Buildings
 
International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)
 
Analysis of harmonic at different level on distribution system ,its effect a...
Analysis of harmonic at different level on distribution system ,its effect  a...Analysis of harmonic at different level on distribution system ,its effect  a...
Analysis of harmonic at different level on distribution system ,its effect a...
 
Impact of APFC Panel at LT Side of Transformer
Impact of APFC Panel at LT Side of TransformerImpact of APFC Panel at LT Side of Transformer
Impact of APFC Panel at LT Side of Transformer
 
Sheela arokia mary
Sheela arokia marySheela arokia mary
Sheela arokia mary
 
Product: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalProduct: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: Technical
 

Último

UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingUNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingrknatarajan
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxAsutosh Ranjan
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escortsranjana rawat
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingrakeshbaidya232001
 
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 
Introduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxIntroduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxupamatechverse
 
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).pptssuser5c9d4b1
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxpranjaldaimarysona
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxupamatechverse
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSSIVASHANKAR N
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝soniya singh
 
UNIT-III FMM. DIMENSIONAL ANALYSIS
UNIT-III FMM.        DIMENSIONAL ANALYSISUNIT-III FMM.        DIMENSIONAL ANALYSIS
UNIT-III FMM. DIMENSIONAL ANALYSISrknatarajan
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxJoão Esperancinha
 
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)Suman Mia
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations120cr0395
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxupamatechverse
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINESIVASHANKAR N
 

Último (20)

UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingUNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptx
 
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
(MEERA) Dapodi Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Escorts
 
Porous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writingPorous Ceramics seminar and technical writing
Porous Ceramics seminar and technical writing
 
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 
Introduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxIntroduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptx
 
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
247267395-1-Symmetric-and-distributed-shared-memory-architectures-ppt (1).ppt
 
Processing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptxProcessing & Properties of Floor and Wall Tiles.pptx
Processing & Properties of Floor and Wall Tiles.pptx
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptx
 
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLSMANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
MANUFACTURING PROCESS-II UNIT-5 NC MACHINE TOOLS
 
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
Model Call Girl in Narela Delhi reach out to us at 🔝8264348440🔝
 
UNIT-III FMM. DIMENSIONAL ANALYSIS
UNIT-III FMM.        DIMENSIONAL ANALYSISUNIT-III FMM.        DIMENSIONAL ANALYSIS
UNIT-III FMM. DIMENSIONAL ANALYSIS
 
Roadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and RoutesRoadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and Routes
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptxDecoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
Decoding Kotlin - Your guide to solving the mysterious in Kotlin.pptx
 
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)Software Development Life Cycle By  Team Orange (Dept. of Pharmacy)
Software Development Life Cycle By Team Orange (Dept. of Pharmacy)
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations
 
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCRCall Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
 
Introduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptxIntroduction to Multiple Access Protocol.pptx
Introduction to Multiple Access Protocol.pptx
 
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINEMANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
MANUFACTURING PROCESS-II UNIT-2 LATHE MACHINE
 

Apfc panel

  • 1. Power Factor & APFCPower Factor & APFC 1 By: Ravi Shankar Singh
  • 2. What is power factor…?What is power factor…? 2 Power Factor = Active Power (kW)/Apparent Power (kVA) PF≤1.0 Usually P.F is always “Lag” (Inductive) Some time P.F can be “Lead” (Capacitive).
  • 3. Origin of Low Power FactorOrigin of Low Power Factor 3  Electrical Equipment need Reactive Power  Inductive loads draw Reactive Power  Phase difference between current & Voltage reduces “Displacement PF”.  Reactive Power to maintain magnetic fields in Motors.  Non-Linear loads reduces “Distortion PF”.  True PF, being product of displacement and distortion PF is lower than both. Capacitors can only improve displacement PF.
  • 4. Disadvantages of low power factorDisadvantages of low power factor  Inefficient use of Electrical Energy:  Overloading of Transformer/Generator;  Overloading of Cable, Switchgear, Busbar …  Higher temperature due to increased losses  Imposes larger kVA demand  Limits No. of loads that can be connected  Reduced revenue to Electrical Utilities  Poor Voltage regulation 4
  • 5. Power FactorPower Factor CorrectionCorrection 5 Ø2 Ø1 V= Line Voltage I=Active Current I1 I2 IR(L) IR(C) Reactive Current (inductive) Reactive Current (capacitive)
  • 6. 6 Reduction in Transformer Rating Reduction in KVAR Demand Advantages of P.F Correction Reduction in KVA Demand Reduction in Line Current Reduction in Line loss Reduction in Cable / Bus-bar size Reduction in Switchgear Rating Avoid power factor penalties Reduction in KVA Demand
  • 7. ESTIMATION OF kVAr REQUIREDESTIMATION OF kVAr REQUIRED for New Electrical Installationsfor New Electrical Installations 7 M M M 75 HP, (415V, 3ph, compressor pf. 0.7) 75 HP, (415V, 3ph, compressor) 20 HP, (415V, 3ph, Pump, PF =0.70 Lag) Other loads, (total of 25 Kw) 500kVA, 11kV/415V, %Impedance = 4.25% 50 kVA, (440V, 3ph, UPS) Lighting (Load 10kW) M 30 HP, (415V, 3ph, I M pf 0.7) Let us assume that the target Power Factor as desired by the Customer is 0.95.
  • 8. 8 Kvar For The Supply Transformer- For 500 kVA transformer, kVAr = 30 kVAr Kvar For Induction Motor- rating of motor = 200 HP x 0.746 = 150 kW Kvar for motor = 150*[tan(cos-1 (0.95)- tan(cos-1 (0.99)] = 104 Kvar Kvar For UPS- rating of UPS = 50 KVA* 0.7 = 35 Kw Kvar for UPS = 35 [tan(cos-1 (0.70)- tan(cos-1 (0.99)] = 25 Kvar Kvar For Others & lighting load- Kvar for UPS = 24 [tan(cos-1 (0.70)- tan(cos-1 (0.99)] = 17 Kvar Total kvar requirement = (30+104+35+25+17)kvar =211 Kvar Assuming 15% design assumption and contigency = 221*0.15=31.65 Kvar Total kvar = 242.65 kvar Kavr recommended= 250 kvar Capacitor req. (c) = Qc/V2 (2πf) Hence Capacitor req. for UPF=106 *250/(2302 *100π) = 150.51µF.
  • 9. Type of compensationType of compensation  Fixed compensation  Variable compensation(for varying loads)- APFC  Svc 9 1. Individual compensation 2. Group compensation 3. Central compensation - Steady Loads – No load compensation of Induction Motors – No load compensation of Transformers
  • 10. Disadvantages of fixed capacitorDisadvantages of fixed capacitor  Manual operation(on/off)  Not meet the require kvar under varying loads.  Can result leading power factor  Cause over voltage  Mal-operation of relays, diesel generators  Saturation of transformer  Penalty by electricity authority 10
  • 11. 11 •varying power demand on the supply system. •power factor also varies as a function of the load requirements. •difficult to maintain a consistent power factor by use of Fixed Compensation i.e. fixed capacitors. • leading power factor under light load conditions(fixed compensation) •This result in over voltages, saturation of transformers, mal- operation of diesel generating sets, penalties by electric supply authorities. •automatically variation, without manual intervention, the compensation to suit the load requirements. •Automatic Power Factor Correction(APFC) system provide this facility. •leading power factor will be also prevented. NEED FOR AUTOMATIC POWER FACTOR CORRECTION
  • 12. Benefits of APFCBenefits of APFC  Consistently high power factor under fluctuating loads  Prevention of leading power factor  Eliminate power factor penalty  Lower energy consumption by reducing losses.  Continuously sense and monitor load  Automatically switch on/off relevant capacitors steps for consistent power factor.  Ensures easy user interface  Protect under any internal fault  Advance µ- relay with communication facility  Used MPP-H/MD-XL/FF(APP) type capacitors  User friendly, aesthetecally designed enclosure, dust and vermin proof. 12
  • 13. Automatic Power Factor CorrectionAutomatic Power Factor Correction (APFC):(APFC):  Capacitors grouped into several steps.  • Suitable switching devices with coupled with inrush current limiting devices are provided for each step  • Power Factor sensed by CT in line side  • kVAr required to achieve target PF is computed by the Microprocessor based APFC relay  • APFC relay switches appropriate capacitor steps  • CT senses improved PF and gives feedback  • Thus target PF is achieved 13
  • 14. How to Improve Power Factor WithoutHow to Improve Power Factor Without Causing Harmonic Problem ?Causing Harmonic Problem ? 14  Conventional capacitors should not be used.  Capacitors should be replaced by harmonic suppression filters (series combination of suitable series reactor & capacitors) so that,  It offers capacitive reactance at fundamental frequency for necessary power factor correction.  It offers inductive reactance at all higher order dominant harmonic frequencies to avoid resonance.  Its self series resonance frequency “fR” do not coincide with predominant harmonics.
  • 15. Network With HarmonicNetwork With Harmonic FiltersFilters 15 No resonance at harmonic frequencies as filter is inductive at such frequencies Harmonic currents flow towards Grid , as it offers least impedance compared to filter Predominantly fundamental current flows through Capacitors Moderate THD(V) in the Bus No harmonic overloading of Capacitors Improvement in Power Factor without Harmonic overload NonLinear Load BUS M GRID ZT Equivalent Load Impedance “ZL” ZN L C
  • 16. Specification of capacitors in APFCSpecification of capacitors in APFC  Qkvar  Degree Of Protection IP20  Ambient temperature  Voltage rise should be≤ 3.0% [% Vc = (Q kvar *%X)/(kva)]  Voltage rise due to series reactor and harmonics  Size of individual capacitor banks (step requirement)  Directly connected Discharge Device(Resistor, VT) to discharge the capacitor to reduce voltage to 50 volts within one minute 16
  • 17. Selection of switching equipmentSelection of switching equipment FOR LT  Switch- fuse units/CBs/ Thyristers  Switch should be quick make and break type  Rating of CB, contactors, fuse and cable should be≥130% of capacitor rated current.  For automatic switching, each step capacitor should be provided with fuse and contactor. FOR HT  Ht capacitor is connected to bus by CB  Cb rating should be ≥ maximum operating voltage of circuit  Continuous current rating of CB should be ≥ 135% of rated capacitor bank current 17
  • 18. Harmonics and parallel resonanceHarmonics and parallel resonance  H=Kp ± 1 (converter) where k= 1,2,3,4,…….  p= pulsating index  High Harmonics current produces high harmonics voltages.  When harminics current frequency and parrellel resonance become equal than corrosponding harmonics voltage produces over current in capacitor. 18
  • 19. Series reactorSeries reactor  XT= Xc/h2  Supress high inrush current to safe value at time of capacitor switching.  Improve voltage waveform  Reactor should be able to carry 135%of rated contineous current. Discharge VT  To discharge voltage of capacitor 19
  • 20. TYPES OF CAPACITOR TECHNOLOGIESTYPES OF CAPACITOR TECHNOLOGIES 20  MPP - METALLISED POLYPROPYLENE  MD - MIXED DIELECTRIC  FF/ALL PP - FILM - FOIL OR ALL POLY PROPELENE  MD -XL - MIXED DIELECTRIC LOW LOSS
  • 21. METALISED POLYPROPELENE CAPACITORMETALISED POLYPROPELENE CAPACITOR 21  MPP - METALLISED POLYPROPELENE  METALISATION HAS BEEN DONE ON ONE SIDE OF POLY PROPELENE FILM AND USED FOR CAPACITOR WINDING  ECNOMICAL AND COMPETITIVE DESIGN  MPP-S - NORMAL DUTY  MPP-H - MEDIUM DUTY PP FILM METALLISED LAYER
  • 22. MIXEDMIXED DIELECTRIC TYPEDIELECTRIC TYPE 22  MD - MIXED DIELECTRIC  PP FILM, FOIL AND PAPER ARE USED TO FORM CAPACITOR WINDING PP FILM FOIL PAPER
  • 23. FILM FOIL OR APPFILM FOIL OR APP 23  FILM FOIL OR APP - ALL POLY PROPELENE  METAL LAYER IS PLACED IN - BETWEEN PP FILM TO FORM CAPACITOR WINDING PP FILM FOIL PP FILM
  • 24. FILM FOIL OR APPFILM FOIL OR APP 24  FILM FOIL OR APP - ALL POLY PROPELENE  METAL LAYER IS PLACED IN - BETWEEN PP FILM TO FORM CAPACITOR WINDING PP FILM FOIL PP FILM
  • 25. MIXED DIELECTRIC - LOWMIXED DIELECTRIC - LOW LOSSLOSS 25  MD-XL - MIXED DIELECTRIC LOW LOSS  PP FILM AND DOUBLE SIDED METALISED FILM ARE USED TO FORM CAPACITOR WINDING PP FILM DOUBLE SIDE METALLISED PAPER
  • 26. 26 Film foil/APP verses Mixed dielectric comparison Film foil/APP Mixed dielectric • low dielectric watt loss • Film not impregnable • More prone to ‘Self healing’ • Inferior long term stability • Moderate harmonic overload capability • High dielectric watt loss • Paper impregnable • less prone to ‘Self healing’ • Superior long term stability • Good harmonic overload capability
  • 27. 27 Mixed dielectric verses MDXL Comparison Mixed dielectric MDXL • High dielectric watt loss • Paper impregnable • less prone to ‘Self healing’ • Superior long term stability • Good harmonic overload capability • Lowest dielectric watt loss • Combines plus points of MD and APP types • Excellent long term stability • Superior harmonic overload capability
  • 29. 29
  • 30. 30
  • 31. Power factor correction inPower factor correction in harmonics enrich environmentharmonics enrich environment  percentage of Non linear loads in an installation becomes greater than 20% of connected load. 31 Conventional capacitor N/w Harmonics Parallel resonance Current amp Overloading cap Voltage distortion Cap failure
  • 32. solutionsolution Use detuned filter circuit  Avoid parallel resonance by offering inductive impedance to specific harmonics frequency.  The tuning frequency is generally lower than 90 % of the lowest harmonic frequency whose amplitude is significant.  Protect capacitors from harmonics over loading  Reduces over loading of transformer and other rotating equipments.  Prevent current amplification  Achieve consistently high power factor.  Can be used as fixed or APFC 32