SlideShare a Scribd company logo
1 of 30
Power Factor basics
By: Jafar Khan
Content

 What is power factor
 What causes low power factor
 Why should I improve my power factor
 How should I correct (Improve) my power factor
What is Power Factor?

Power factor is the measure of how effectively your electrical
equipment converts electric power (supplied by your power utility)
into useful power output.
In technical terms, it is the ratio of Active Power (kW)) to the
Apparent Power (kVA) of an electrical installation.
• KW is Working Power (also called Actual Power or Active
Power or Real Power). It is the power that actually powers the
equipment and performs useful work.
• KVAR is Reactive Power. It is the power that magnetic
equipment (transformer, motor and relay) needs to produce
the magnetizing flux.
• KVA is Apparent Power. It is the “vectorial summation” of
KVAR and KW.
Simple analogy in order to better understand these terms….
P.F. = KW
KVA
P.F. =

KW
KW+KVAR

P.F. =

Beer
Beer+Foam

 The more foam you have (the higher the percentage of KVAR), the lower your
ratio of KW (beer) to KVA (beer plus foam). Thus, the lower your power factor.
 The less foam you have (the lower the percentage of KVAR), the higher your ratio
of KW (beer) to KVA (beer plus foam). In fact, as your foam (or KVAR) approaches
zero, your power factor approaches 1.0.
Let’s look at another analogy ……

Mac here is dragging a heavy load. Mac’s Working Power (or
Actual Power) in the forward direction, where he most wants his load to
travel, is KW.
Unfortunately, Mac can’t drag his load on a perfect horizontal (he would
get a tremendous backache), so his shoulder height adds a little Reactive
Power, or KVAR.
The Apparent Power Mac is dragging, KVA, is this “vectorial summation”
of KVAR and KW.
KVAR (Reactive Power)

Power Traingle ……

Power Traingle…
KV
A

(Ap
par
e

nt
P

ow
er)

Ø
KW (Real Power)

= COS Ø

Power Factor (COS Ø) should be close to unity
What causes Low Power Factor?

Low power factor results when KW is small in relation to KVA.
Remembering our beer mug analogy, this would occur when KVAR (foam, or Mac’s
shoulder height) is large.

What causes a large KVAR in a system? The answer is…inductive loads.
􀂉 Transformers
􀂉 Induction motors
􀂉 Induction generators (wind mill generators)
􀂉 High intensity discharge (HID) lighting
KVAR
KVAR

KVAR

 Reactive power (KVAR) required by inductive loads increases the amount of
apparent power (KVA) in distribution system.
 This increase in reactive and apparent power results in a larger angle
measured between KW and KVA.
 As θ increases, cosine θ (or power factor) decreases.

KV
A

KV
A
KV
A

Ø

Ø
KW

KW
Why should I Improve my Power Factor?
• Lower the Utility bill
inductive loads require reactive power, caused your low power factor. This
increase in required reactive power (KVAR) causes an increase in required
apparent power (KVA), which is what the utility is supplying.
So, a facility’s low power factor causes the utility to have to increase its
generation and transmission capacity in order to handle this extra demand.
By raising your power factor, you use less KVAR. This results in less KW,
which equates to savings from the utility.

• Increased system capacity and reduced system losses
By adding capacitors (KVAR generators) to the system, the power factor is
improved and the KW capacity of the system is increased.
Reduces I2R losses in conductors
• Increased voltage level and cooler, more efficient motors
As uncorrected power factor causes power losses in distribution system. As
power losses increase, you may experience voltage drops. Excessive voltage
drops can cause overheating and premature failure of motors and other
inductive equipment.
So, by raising power factor, minimizes these voltage drops along feeder cables
and avoid related problems. Your motors will run cooler and be more efficient,
with a slight increase in capacity and starting torque.
A 10% drop in terminal voltage from the rated,
 Will reduce the Induction motor torque by approx 19%,
 Increase full load current by approx 11%,
 Reduce overload capacity
 Increase temperature rise by approx 6-7 degrees.
Five lightson
Fourlight on
Three lights
Twolightson on
Onelights on
Six lights on
No
25
24
23 Watts total
20Watts total
14
0
(room gets brighter)
(some light darker)
(room is dark)room)
in
Voltage drops more
Voltage is normal
some
12/11/97

13
• Reduces loading on transformers
For example, a 1,000 KVA transformer with an 80% power factor provides 800
KW (600 KVAR) of power to the main bus.
1000 KVA =

(800 KW)2 + ( ? KVAR)2

KVAR = 600
By increasing the power factor to 90%, more KW can be supplied for the same
amount of KVA.
1000 KVA =

(900 KW)2 + ( ? KVAR)2

KVAR = 436
The KW capacity of the system increases to 900 KW and the utility supplies only
436 KVAR.
How do I correct my Power Factor?
We have seen that consumers of Reactive power (Inductive loads) decrease
power factor
Similarly, Sources of Reactive Power increase power factor:
􀂉 Capacitors
􀂉 Synchronous generators (utility and emergency)
􀂉 Synchronous motors
One way to increase power factor is to add capacitors to the system.
• Installing capacitors (KVAR Generators)
Installing capacitors decreases the magnitude of reactive power (KVAR), thus
increasing your power factor.
Reactive power (KVARS), caused by inductive loads, always acts at a 90-degree
angle to working power (KW).
Capacitance (KVAR)

Working power (KW)

Reactance (KVAR)
Capacitors store KVARS and release energy opposing
the reactive energy caused by the inductor.
If the motor is unloaded and is located a short distance from the generator,
the energy from the generator causes magnetic fields to form around the
motor coils.

Reactive power
In both directions between the
generator and the motor
Feeder line

True power
delivered to load
Generator
Output—apparent power
(Combination of true and reactive power)
Since the coils of the motor are reactive, the current causes a magnetic
field to expand around the coils during one portion of the alternation.
During another portion of the alternation, the magnetic field collapses,
induces a voltage at the coil, and causes current from the motor to flow
back to generator.
The current causes a magnetic field to expand around the coils during one
portion of the alternation.

Reactive power from the
generator to the motor

For Ascending
Positive Alternation
During another portion of the alternation, the magnetic field collapses,
induces a voltage at the coil, and causes current from the motor to flow
back to generator.

Reactive power from the
motor to the generator

For Descending
Positive Alternation
The current causes a magnetic field to expand around the coils during one
portion of the alternation.

Reactive power from the
generator to the motor

For Ascending
Negative Alternation
During another portion of the alternation, the magnetic field collapses,
induces a voltage at the coil, and causes current from the motor to flow
back to generator.

Reactive power from the
motor to the generator

For Descending
Negative Alternation
Individual Correction
Group Correction
Capacitor sizing
KVAr required = kW (tan Ø 1 – tan Ø 2)
Where Ø 1 = Cos-1 (PF 1) and
Ø 1 = Cos-1 (PF 2) and
PF1 and PF2 are initial and final
Power factors respectively

Q=

S2 - P2
Conclusion
 PF is the ratio of Active Power (kW)) to the Apparent Power
(kVA).
 More the reactive power, less is the power factor
 Power factor can be improved by locally providing required
Reactive power
Thank You

More Related Content

What's hot

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 factor presentation
Power factor presentationPower factor presentation
Power factor presentationAzhar Abbas
 
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
 
importance of reactive power in power system
importance of reactive power in power systemimportance of reactive power in power system
importance of reactive power in power systemsneh pratap singh
 
Basic types of facts controllers
Basic types of facts controllersBasic types of facts controllers
Basic types of facts controllersAyyarao T S L V
 
APFC project presentation
APFC project presentationAPFC project presentation
APFC project presentationkartickmp613
 
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 quality improvement techniques
Power quality improvement techniquesPower quality improvement techniques
Power quality improvement techniquessahid raja khan
 
Power Factor Improvement
Power Factor ImprovementPower Factor Improvement
Power Factor ImprovementArijitDhali
 
Economic dispatch
Economic dispatch  Economic dispatch
Economic dispatch Hussain Ali
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Deviceskhemraj298
 
Power Factor
Power FactorPower Factor
Power FactorTim Cohen
 

What's hot (20)

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 factor presentation
Power factor presentationPower factor presentation
Power factor presentation
 
upfc
upfcupfc
upfc
 
DFIG ppt.pptx
DFIG ppt.pptxDFIG ppt.pptx
DFIG ppt.pptx
 
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
 
importance of reactive power in power system
importance of reactive power in power systemimportance of reactive power in power system
importance of reactive power in power system
 
What is load management
What is load managementWhat is load management
What is load management
 
Basic types of facts controllers
Basic types of facts controllersBasic types of facts controllers
Basic types of facts controllers
 
APFC project presentation
APFC project presentationAPFC project presentation
APFC project presentation
 
High Voltage Direct Current Transmission System
High Voltage Direct Current Transmission SystemHigh Voltage Direct Current Transmission System
High Voltage Direct Current Transmission System
 
Protection of Transmission lines
Protection of Transmission linesProtection of Transmission lines
Protection of Transmission lines
 
Sssc
SsscSssc
Sssc
 
Reactive power
Reactive powerReactive power
Reactive power
 
Facts lectures-2014
Facts lectures-2014Facts lectures-2014
Facts lectures-2014
 
Power quality improvement techniques
Power quality improvement techniquesPower quality improvement techniques
Power quality improvement techniques
 
Power Factor Improvement
Power Factor ImprovementPower Factor Improvement
Power Factor Improvement
 
Economic dispatch
Economic dispatch  Economic dispatch
Economic dispatch
 
Series & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs DevicesSeries & shunt compensation and FACTs Devices
Series & shunt compensation and FACTs Devices
 
HVDC
HVDC HVDC
HVDC
 
Power Factor
Power FactorPower Factor
Power Factor
 

Viewers also liked

Power Factor: what it is, how to measure it and how to improve it to reduce u...
Power Factor: what it is, how to measure it and how to improve it to reduce u...Power Factor: what it is, how to measure it and how to improve it to reduce u...
Power Factor: what it is, how to measure it and how to improve it to reduce u...Pulse Energy
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basicsno suhaila
 
Power factor improvement of an induction motor
Power factor improvement of an induction motorPower factor improvement of an induction motor
Power factor improvement of an induction motorIIT Roorkee
 
Micro-controller based Automatic Power Factor Correction System Report
Micro-controller based Automatic Power Factor Correction System ReportMicro-controller based Automatic Power Factor Correction System Report
Micro-controller based Automatic Power Factor Correction System ReportTheory to Practical
 
Automatic power factor correction unit
Automatic power factor correction unitAutomatic power factor correction unit
Automatic power factor correction unitBiswajit Pratihari
 
automatic power factor controller
automatic power factor controllerautomatic power factor controller
automatic power factor controllersingh1515
 
Automatic power factor correction
Automatic power factor correction Automatic power factor correction
Automatic power factor correction VIKAS KUMAR MANJHI
 
Automatic power factor controller by microcontroller
Automatic power factor controller by microcontrollerAutomatic power factor controller by microcontroller
Automatic power factor controller by microcontrollerSanket Shitole
 
Product: Power Factor & Harmonics: StacoSine: Harmonics
Product: Power Factor & Harmonics: StacoSine: HarmonicsProduct: Power Factor & Harmonics: StacoSine: Harmonics
Product: Power Factor & Harmonics: StacoSine: HarmonicsStaco Energy
 
Product: Power Factor Harmonics
Product: Power Factor HarmonicsProduct: Power Factor Harmonics
Product: Power Factor HarmonicsStaco Energy
 
Power factor solution,presentation
Power factor solution,presentationPower factor solution,presentation
Power factor solution,presentationAmol Chande
 
Product: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalProduct: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalStaco Energy
 
Power factor
Power factorPower factor
Power factorwkugubre
 
IEEE Sustech Presentation - Energy and Environment in Indonesia
IEEE Sustech Presentation - Energy and Environment in IndonesiaIEEE Sustech Presentation - Energy and Environment in Indonesia
IEEE Sustech Presentation - Energy and Environment in IndonesiaAnjar Priandoyo
 
Identifying & correcting poor power factor
Identifying & correcting poor power factor Identifying & correcting poor power factor
Identifying & correcting poor power factor Yokogawa1
 

Viewers also liked (20)

Power Factor: what it is, how to measure it and how to improve it to reduce u...
Power Factor: what it is, how to measure it and how to improve it to reduce u...Power Factor: what it is, how to measure it and how to improve it to reduce u...
Power Factor: what it is, how to measure it and how to improve it to reduce u...
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basics
 
Power factor improvement of an induction motor
Power factor improvement of an induction motorPower factor improvement of an induction motor
Power factor improvement of an induction motor
 
Micro-controller based Automatic Power Factor Correction System Report
Micro-controller based Automatic Power Factor Correction System ReportMicro-controller based Automatic Power Factor Correction System Report
Micro-controller based Automatic Power Factor Correction System Report
 
Automatic power factor correction unit
Automatic power factor correction unitAutomatic power factor correction unit
Automatic power factor correction unit
 
automatic power factor controller
automatic power factor controllerautomatic power factor controller
automatic power factor controller
 
Automatic power factor correction
Automatic power factor correction Automatic power factor correction
Automatic power factor correction
 
Power factor
Power factorPower factor
Power factor
 
Automatic power factor controller by microcontroller
Automatic power factor controller by microcontrollerAutomatic power factor controller by microcontroller
Automatic power factor controller by microcontroller
 
Product: Power Factor & Harmonics: StacoSine: Harmonics
Product: Power Factor & Harmonics: StacoSine: HarmonicsProduct: Power Factor & Harmonics: StacoSine: Harmonics
Product: Power Factor & Harmonics: StacoSine: Harmonics
 
Product: Power Factor Harmonics
Product: Power Factor HarmonicsProduct: Power Factor Harmonics
Product: Power Factor Harmonics
 
Power Factor
Power FactorPower Factor
Power Factor
 
Power factor
Power factorPower factor
Power factor
 
Power factor solution,presentation
Power factor solution,presentationPower factor solution,presentation
Power factor solution,presentation
 
Product: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: TechnicalProduct: Power Factor & Harmonics: StacoSine: Technical
Product: Power Factor & Harmonics: StacoSine: Technical
 
Power factor
Power factorPower factor
Power factor
 
Reactive power
Reactive powerReactive power
Reactive power
 
Ashutosh CV
Ashutosh CVAshutosh CV
Ashutosh CV
 
IEEE Sustech Presentation - Energy and Environment in Indonesia
IEEE Sustech Presentation - Energy and Environment in IndonesiaIEEE Sustech Presentation - Energy and Environment in Indonesia
IEEE Sustech Presentation - Energy and Environment in Indonesia
 
Identifying & correcting poor power factor
Identifying & correcting poor power factor Identifying & correcting poor power factor
Identifying & correcting poor power factor
 

Similar to Power factor(r)

Power factor basics
Power factor basicsPower factor basics
Power factor basicsVijay Tiwari
 
35 power factor the basics
35 power factor   the basics35 power factor   the basics
35 power factor the basicsRagab Elsayaad
 
PowerFactorImprovement.pptx
PowerFactorImprovement.pptxPowerFactorImprovement.pptx
PowerFactorImprovement.pptxRishab Saini
 
Power factor and its importance
Power factor and its importancePower factor and its importance
Power factor and its importancePriyansh Thakar
 
Power Factor : Basics and Benefits of Improvement
Power Factor : Basics and  Benefits of ImprovementPower Factor : Basics and  Benefits of Improvement
Power Factor : Basics and Benefits of ImprovementBijadhar Pandey
 
Importance of Power Factor.pptx
Importance of Power Factor.pptxImportance of Power Factor.pptx
Importance of Power Factor.pptxVineet Shekhar
 
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdf
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdfpowerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdf
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdfBOOPATHIMADHAIYAN
 
Power factor introduction and its correction final
Power factor introduction and its correction final Power factor introduction and its correction final
Power factor introduction and its correction final manpreetsingh1076
 
Power Factor.ppt
Power Factor.pptPower Factor.ppt
Power Factor.pptVidya Sagar
 
Reducing Your Electric bills & your Carbon Footprint
Reducing Your Electric bills & your Carbon FootprintReducing Your Electric bills & your Carbon Footprint
Reducing Your Electric bills & your Carbon FootprintScottStephens
 
How Power Factor corection works.pdf
How Power Factor corection works.pdfHow Power Factor corection works.pdf
How Power Factor corection works.pdfChristinaBoyd12
 
Improvement of Load Power Factor by Using Capacitor
Improvement of Load Power Factor by Using CapacitorImprovement of Load Power Factor by Using Capacitor
Improvement of Load Power Factor by Using CapacitorIOSRJEEE
 
Cis eo dte_power_factor_138474_7
Cis eo dte_power_factor_138474_7Cis eo dte_power_factor_138474_7
Cis eo dte_power_factor_138474_7Lokesh Singh
 

Similar to Power factor(r) (20)

Power factor basics
Power factor basicsPower factor basics
Power factor basics
 
35 power factor the basics
35 power factor   the basics35 power factor   the basics
35 power factor the basics
 
PowerFactorImprovement.pptx
PowerFactorImprovement.pptxPowerFactorImprovement.pptx
PowerFactorImprovement.pptx
 
Power factor and its importance
Power factor and its importancePower factor and its importance
Power factor and its importance
 
Power Factor : Basics and Benefits of Improvement
Power Factor : Basics and  Benefits of ImprovementPower Factor : Basics and  Benefits of Improvement
Power Factor : Basics and Benefits of Improvement
 
Importance of Power Factor.pptx
Importance of Power Factor.pptxImportance of Power Factor.pptx
Importance of Power Factor.pptx
 
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdf
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdfpowerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdf
powerfactorintroductionanditscorrectionfinalokk-180401111606 (3).pdf
 
Power factor introduction and its correction final
Power factor introduction and its correction final Power factor introduction and its correction final
Power factor introduction and its correction final
 
Power Management in BMS
Power Management in BMSPower Management in BMS
Power Management in BMS
 
Power Factor.ppt
Power Factor.pptPower Factor.ppt
Power Factor.ppt
 
powerfactor.pdf
powerfactor.pdfpowerfactor.pdf
powerfactor.pdf
 
Reducing Your Electric bills & your Carbon Footprint
Reducing Your Electric bills & your Carbon FootprintReducing Your Electric bills & your Carbon Footprint
Reducing Your Electric bills & your Carbon Footprint
 
General Power Quality
General Power QualityGeneral Power Quality
General Power Quality
 
THE POWER FACTOR
THE POWER FACTOR THE POWER FACTOR
THE POWER FACTOR
 
Power factor
Power factorPower factor
Power factor
 
Power factor
Power factorPower factor
Power factor
 
How Power Factor corection works.pdf
How Power Factor corection works.pdfHow Power Factor corection works.pdf
How Power Factor corection works.pdf
 
Mohsin rana
Mohsin ranaMohsin rana
Mohsin rana
 
Improvement of Load Power Factor by Using Capacitor
Improvement of Load Power Factor by Using CapacitorImprovement of Load Power Factor by Using Capacitor
Improvement of Load Power Factor by Using Capacitor
 
Cis eo dte_power_factor_138474_7
Cis eo dte_power_factor_138474_7Cis eo dte_power_factor_138474_7
Cis eo dte_power_factor_138474_7
 

More from _fahad_shaikh

Introduction to robotics a(r)
Introduction to robotics a(r)Introduction to robotics a(r)
Introduction to robotics a(r)_fahad_shaikh
 
Interview techniques(r)
Interview techniques(r)Interview techniques(r)
Interview techniques(r)_fahad_shaikh
 
Industrial health and safety seminar(r)
Industrial health and safety seminar(r)Industrial health and safety seminar(r)
Industrial health and safety seminar(r)_fahad_shaikh
 
Presentation on at&c_losses(r)
Presentation on at&c_losses(r)Presentation on at&c_losses(r)
Presentation on at&c_losses(r)_fahad_shaikh
 
Gas insulated transmission line
Gas insulated transmission lineGas insulated transmission line
Gas insulated transmission line_fahad_shaikh
 
Java presentation on insertion sort
Java presentation on insertion sortJava presentation on insertion sort
Java presentation on insertion sort_fahad_shaikh
 
Magnetic levitation(5)
Magnetic levitation(5)Magnetic levitation(5)
Magnetic levitation(5)_fahad_shaikh
 
Effect of development on environment
Effect of development on environmentEffect of development on environment
Effect of development on environment_fahad_shaikh
 
Gps mobile based human position(2)
Gps mobile based human position(2)Gps mobile based human position(2)
Gps mobile based human position(2)_fahad_shaikh
 

More from _fahad_shaikh (15)

Cycle of Life
Cycle of LifeCycle of Life
Cycle of Life
 
Hts cable (6)
Hts cable (6)Hts cable (6)
Hts cable (6)
 
Introduction to robotics a(r)
Introduction to robotics a(r)Introduction to robotics a(r)
Introduction to robotics a(r)
 
Interview techniques(r)
Interview techniques(r)Interview techniques(r)
Interview techniques(r)
 
Industrial health and safety seminar(r)
Industrial health and safety seminar(r)Industrial health and safety seminar(r)
Industrial health and safety seminar(r)
 
Hydro p-s(r)
Hydro p-s(r)Hydro p-s(r)
Hydro p-s(r)
 
Presentation on at&c_losses(r)
Presentation on at&c_losses(r)Presentation on at&c_losses(r)
Presentation on at&c_losses(r)
 
Gas insulated transmission line
Gas insulated transmission lineGas insulated transmission line
Gas insulated transmission line
 
Java presentation on insertion sort
Java presentation on insertion sortJava presentation on insertion sort
Java presentation on insertion sort
 
Magnetic levitation(5)
Magnetic levitation(5)Magnetic levitation(5)
Magnetic levitation(5)
 
Effect of development on environment
Effect of development on environmentEffect of development on environment
Effect of development on environment
 
Harmonics
HarmonicsHarmonics
Harmonics
 
What is nfc(3)
What is nfc(3)What is nfc(3)
What is nfc(3)
 
Gps mobile based human position(2)
Gps mobile based human position(2)Gps mobile based human position(2)
Gps mobile based human position(2)
 
What is nfc(4)
What is nfc(4)What is nfc(4)
What is nfc(4)
 

Recently uploaded

call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
Meghan Sutherland In Media Res Media Component
Meghan Sutherland In Media Res Media ComponentMeghan Sutherland In Media Res Media Component
Meghan Sutherland In Media Res Media ComponentInMediaRes1
 
Presiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsPresiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsanshu789521
 
AmericanHighSchoolsprezentacijaoskolama.
AmericanHighSchoolsprezentacijaoskolama.AmericanHighSchoolsprezentacijaoskolama.
AmericanHighSchoolsprezentacijaoskolama.arsicmarija21
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon AUnboundStockton
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaVirag Sontakke
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptxVS Mahajan Coaching Centre
 
MICROBIOLOGY biochemical test detailed.pptx
MICROBIOLOGY biochemical test detailed.pptxMICROBIOLOGY biochemical test detailed.pptx
MICROBIOLOGY biochemical test detailed.pptxabhijeetpadhi001
 
What is Model Inheritance in Odoo 17 ERP
What is Model Inheritance in Odoo 17 ERPWhat is Model Inheritance in Odoo 17 ERP
What is Model Inheritance in Odoo 17 ERPCeline George
 
Procuring digital preservation CAN be quick and painless with our new dynamic...
Procuring digital preservation CAN be quick and painless with our new dynamic...Procuring digital preservation CAN be quick and painless with our new dynamic...
Procuring digital preservation CAN be quick and painless with our new dynamic...Jisc
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
MARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupMARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupJonathanParaisoCruz
 
Pharmacognosy Flower 3. Compositae 2023.pdf
Pharmacognosy Flower 3. Compositae 2023.pdfPharmacognosy Flower 3. Compositae 2023.pdf
Pharmacognosy Flower 3. Compositae 2023.pdfMahmoud M. Sallam
 
EPANDING THE CONTENT OF AN OUTLINE using notes.pptx
EPANDING THE CONTENT OF AN OUTLINE using notes.pptxEPANDING THE CONTENT OF AN OUTLINE using notes.pptx
EPANDING THE CONTENT OF AN OUTLINE using notes.pptxRaymartEstabillo3
 
Proudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxProudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxthorishapillay1
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdfssuser54595a
 
Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Celine George
 

Recently uploaded (20)

call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
 
Meghan Sutherland In Media Res Media Component
Meghan Sutherland In Media Res Media ComponentMeghan Sutherland In Media Res Media Component
Meghan Sutherland In Media Res Media Component
 
Presiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha electionsPresiding Officer Training module 2024 lok sabha elections
Presiding Officer Training module 2024 lok sabha elections
 
AmericanHighSchoolsprezentacijaoskolama.
AmericanHighSchoolsprezentacijaoskolama.AmericanHighSchoolsprezentacijaoskolama.
AmericanHighSchoolsprezentacijaoskolama.
 
Crayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon ACrayon Activity Handout For the Crayon A
Crayon Activity Handout For the Crayon A
 
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdfTataKelola dan KamSiber Kecerdasan Buatan v022.pdf
TataKelola dan KamSiber Kecerdasan Buatan v022.pdf
 
Painted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of IndiaPainted Grey Ware.pptx, PGW Culture of India
Painted Grey Ware.pptx, PGW Culture of India
 
OS-operating systems- ch04 (Threads) ...
OS-operating systems- ch04 (Threads) ...OS-operating systems- ch04 (Threads) ...
OS-operating systems- ch04 (Threads) ...
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
 
MICROBIOLOGY biochemical test detailed.pptx
MICROBIOLOGY biochemical test detailed.pptxMICROBIOLOGY biochemical test detailed.pptx
MICROBIOLOGY biochemical test detailed.pptx
 
What is Model Inheritance in Odoo 17 ERP
What is Model Inheritance in Odoo 17 ERPWhat is Model Inheritance in Odoo 17 ERP
What is Model Inheritance in Odoo 17 ERP
 
Procuring digital preservation CAN be quick and painless with our new dynamic...
Procuring digital preservation CAN be quick and painless with our new dynamic...Procuring digital preservation CAN be quick and painless with our new dynamic...
Procuring digital preservation CAN be quick and painless with our new dynamic...
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
MARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized GroupMARGINALIZATION (Different learners in Marginalized Group
MARGINALIZATION (Different learners in Marginalized Group
 
Pharmacognosy Flower 3. Compositae 2023.pdf
Pharmacognosy Flower 3. Compositae 2023.pdfPharmacognosy Flower 3. Compositae 2023.pdf
Pharmacognosy Flower 3. Compositae 2023.pdf
 
EPANDING THE CONTENT OF AN OUTLINE using notes.pptx
EPANDING THE CONTENT OF AN OUTLINE using notes.pptxEPANDING THE CONTENT OF AN OUTLINE using notes.pptx
EPANDING THE CONTENT OF AN OUTLINE using notes.pptx
 
Proudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxProudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptx
 
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝Model Call Girl in Bikash Puri  Delhi reach out to us at 🔝9953056974🔝
Model Call Girl in Bikash Puri Delhi reach out to us at 🔝9953056974🔝
 
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
18-04-UA_REPORT_MEDIALITERAСY_INDEX-DM_23-1-final-eng.pdf
 
Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17
 

Power factor(r)

  • 2. Content  What is power factor  What causes low power factor  Why should I improve my power factor  How should I correct (Improve) my power factor
  • 3. What is Power Factor? Power factor is the measure of how effectively your electrical equipment converts electric power (supplied by your power utility) into useful power output. In technical terms, it is the ratio of Active Power (kW)) to the Apparent Power (kVA) of an electrical installation.
  • 4. • KW is Working Power (also called Actual Power or Active Power or Real Power). It is the power that actually powers the equipment and performs useful work. • KVAR is Reactive Power. It is the power that magnetic equipment (transformer, motor and relay) needs to produce the magnetizing flux. • KVA is Apparent Power. It is the “vectorial summation” of KVAR and KW.
  • 5. Simple analogy in order to better understand these terms…. P.F. = KW KVA P.F. = KW KW+KVAR P.F. = Beer Beer+Foam  The more foam you have (the higher the percentage of KVAR), the lower your ratio of KW (beer) to KVA (beer plus foam). Thus, the lower your power factor.  The less foam you have (the lower the percentage of KVAR), the higher your ratio of KW (beer) to KVA (beer plus foam). In fact, as your foam (or KVAR) approaches zero, your power factor approaches 1.0.
  • 6. Let’s look at another analogy …… Mac here is dragging a heavy load. Mac’s Working Power (or Actual Power) in the forward direction, where he most wants his load to travel, is KW. Unfortunately, Mac can’t drag his load on a perfect horizontal (he would get a tremendous backache), so his shoulder height adds a little Reactive Power, or KVAR. The Apparent Power Mac is dragging, KVA, is this “vectorial summation” of KVAR and KW.
  • 7. KVAR (Reactive Power) Power Traingle …… Power Traingle… KV A (Ap par e nt P ow er) Ø KW (Real Power) = COS Ø Power Factor (COS Ø) should be close to unity
  • 8. What causes Low Power Factor? Low power factor results when KW is small in relation to KVA. Remembering our beer mug analogy, this would occur when KVAR (foam, or Mac’s shoulder height) is large. What causes a large KVAR in a system? The answer is…inductive loads. 􀂉 Transformers 􀂉 Induction motors 􀂉 Induction generators (wind mill generators) 􀂉 High intensity discharge (HID) lighting
  • 9. KVAR KVAR KVAR  Reactive power (KVAR) required by inductive loads increases the amount of apparent power (KVA) in distribution system.  This increase in reactive and apparent power results in a larger angle measured between KW and KVA.  As θ increases, cosine θ (or power factor) decreases. KV A KV A KV A Ø Ø KW KW
  • 10. Why should I Improve my Power Factor? • Lower the Utility bill inductive loads require reactive power, caused your low power factor. This increase in required reactive power (KVAR) causes an increase in required apparent power (KVA), which is what the utility is supplying. So, a facility’s low power factor causes the utility to have to increase its generation and transmission capacity in order to handle this extra demand. By raising your power factor, you use less KVAR. This results in less KW, which equates to savings from the utility. • Increased system capacity and reduced system losses By adding capacitors (KVAR generators) to the system, the power factor is improved and the KW capacity of the system is increased. Reduces I2R losses in conductors
  • 11. • Increased voltage level and cooler, more efficient motors As uncorrected power factor causes power losses in distribution system. As power losses increase, you may experience voltage drops. Excessive voltage drops can cause overheating and premature failure of motors and other inductive equipment. So, by raising power factor, minimizes these voltage drops along feeder cables and avoid related problems. Your motors will run cooler and be more efficient, with a slight increase in capacity and starting torque. A 10% drop in terminal voltage from the rated,  Will reduce the Induction motor torque by approx 19%,  Increase full load current by approx 11%,  Reduce overload capacity  Increase temperature rise by approx 6-7 degrees.
  • 12. Five lightson Fourlight on Three lights Twolightson on Onelights on Six lights on No 25 24 23 Watts total 20Watts total 14 0 (room gets brighter) (some light darker) (room is dark)room) in Voltage drops more Voltage is normal some
  • 14. • Reduces loading on transformers For example, a 1,000 KVA transformer with an 80% power factor provides 800 KW (600 KVAR) of power to the main bus. 1000 KVA = (800 KW)2 + ( ? KVAR)2 KVAR = 600 By increasing the power factor to 90%, more KW can be supplied for the same amount of KVA. 1000 KVA = (900 KW)2 + ( ? KVAR)2 KVAR = 436 The KW capacity of the system increases to 900 KW and the utility supplies only 436 KVAR.
  • 15. How do I correct my Power Factor? We have seen that consumers of Reactive power (Inductive loads) decrease power factor Similarly, Sources of Reactive Power increase power factor: 􀂉 Capacitors 􀂉 Synchronous generators (utility and emergency) 􀂉 Synchronous motors One way to increase power factor is to add capacitors to the system.
  • 16. • Installing capacitors (KVAR Generators) Installing capacitors decreases the magnitude of reactive power (KVAR), thus increasing your power factor. Reactive power (KVARS), caused by inductive loads, always acts at a 90-degree angle to working power (KW). Capacitance (KVAR) Working power (KW) Reactance (KVAR) Capacitors store KVARS and release energy opposing the reactive energy caused by the inductor.
  • 17.
  • 18. If the motor is unloaded and is located a short distance from the generator, the energy from the generator causes magnetic fields to form around the motor coils. Reactive power In both directions between the generator and the motor Feeder line True power delivered to load Generator Output—apparent power (Combination of true and reactive power)
  • 19. Since the coils of the motor are reactive, the current causes a magnetic field to expand around the coils during one portion of the alternation. During another portion of the alternation, the magnetic field collapses, induces a voltage at the coil, and causes current from the motor to flow back to generator.
  • 20. The current causes a magnetic field to expand around the coils during one portion of the alternation. Reactive power from the generator to the motor For Ascending Positive Alternation
  • 21. During another portion of the alternation, the magnetic field collapses, induces a voltage at the coil, and causes current from the motor to flow back to generator. Reactive power from the motor to the generator For Descending Positive Alternation
  • 22. The current causes a magnetic field to expand around the coils during one portion of the alternation. Reactive power from the generator to the motor For Ascending Negative Alternation
  • 23. During another portion of the alternation, the magnetic field collapses, induces a voltage at the coil, and causes current from the motor to flow back to generator. Reactive power from the motor to the generator For Descending Negative Alternation
  • 24.
  • 25.
  • 28. Capacitor sizing KVAr required = kW (tan Ø 1 – tan Ø 2) Where Ø 1 = Cos-1 (PF 1) and Ø 1 = Cos-1 (PF 2) and PF1 and PF2 are initial and final Power factors respectively Q= S2 - P2
  • 29. Conclusion  PF is the ratio of Active Power (kW)) to the Apparent Power (kVA).  More the reactive power, less is the power factor  Power factor can be improved by locally providing required Reactive power