SlideShare ist ein Scribd-Unternehmen logo
1 von 16
Power Factor
Instructor
Engr. Muhammad Yaseen
Power Factor
Introduction
 The cosine of angle made between the voltage and current is called the
power factor.
 In AC circuits, there is always the phase deference between the voltage
and current, which is calculated in terms of power factor.
 If the load is inductive the current lags behind the voltage and the power
factor is lagging.
 If the load is capacitive the current leads the voltage and the power factor
is leading.
 The value of power factor can never be more than unity.
 It is usual practice to attach the word “lagging” or “leading” with the
numerical value of the power factor to signify whether the current lags or
leads the voltage.
 Thus if the circuit has a p.f of 0.5 and current lags the voltage, we
generally write p.f. as 0.5 lagging or sometimes expressed as a percentage
(50% lagging)
Power Factor
Power Factor
Causes of Low Power Factor
 Ideally the power factor must be close to unity, where as low power
factor is undesirable.
 Following are the causes of low power factor:
1. Most of AC motors (i.e. induction motor) are used to work at low
lagging power factor, which causes the low power factor.
2. The load on power station is not constant but is varying; it is more
at peak time (Day time) and reduces at night time. During low
load period the supply voltage increases which increases the
magnetizing current , this decreases the power factor.
3. The arc lamps and industrial heating furnace operates on low
power factor.
Power Factor
Effect of Low Power Factor
 The low power factor causes the following effects:
1. Line losses (I2R) will be more.
2. Lower the power factor higher will be the rating of electrical
equipment, which makes the equipment more complex and larger
in size.
KW = kVA × CosØ
kVA = KW / CosØ
3. The useful load that can be transmitted is reduced.
4. There will be a poor voltage regulation
5. It reduces the handling capacity of the plant.
Power Factor
Methods of Improving Power Factor:
 Normally the power factor of the system ranges between 0.8 to 0.9,
however in case of low P.F. there is a need of improving power factor.
 There are three main methods used to improve the power factor of the
system:
i. Static Capacitor
ii. Phase Advancer
iii. Synchronous Condenser
i) Static Capacitor
 The power factor can be improved by connecting capacitors in parallel
with the equipment operating at lagging power factor.
 The capacitor (Generally known as static capacitor) draws a leading
current and partly or completely neutralizes the lagging reactive
component of load current. This rises the power factor of load.
Power Factor
 For three-phase loads, the capacitors can be connected in delta or
star as shown in below fig.
 Static capacitors are invariably used for power factor improvement
in factories.
Advantages:
i. They have low losses.
ii. They require little maintenance as there are no rotating parts.
iii. They can be easily installed as they are light and require no foundation.
iv. They can work under ordinary atmospheric conditions.
Disadvantages:
i. They have short service life ranging from 8 to 10 years.
ii. They are easily damaged if the voltage exceeds the rated value.
iii. Once the capacitors are damaged, their repair is uneconomical.
Power Factor
Power Factor
Power Factor
ii) Phase advancer
 Phase advancer are used to improve the power factor of induction motor.
 The low power factor of an induction motor is due to the fact that its
stator winding draws exciting current which lags behind the supply
voltage by 90o .
 If the exciting ampere turns can be provided from some other a.c. source,
then the stator winding will be relieved of exciting current and the power
factor of motor can be improved.
 This job is accomplished by the phase advancer which is simply an a.c.
exciter.
 The phase advancer is mounted on the same shaft as the main motor and
is connected in the rotor circuit of motor.
 The major disadvantage of phase advancers is that they are not
economical for motors below 200 H.P.
Power Factor
iii) Synchronous Condenser
 A synchronous motor takes a leading current when over-excited
and, therefore, behaves as a capacitor.
 An over-excited synchronous motor running on no load is known as
“Synchronous condenser”.
 When such a machine is connected in parallel with the supply, it
takes a leading current which partly neutralizes the lagging reactive
component of the load. Thus the power factor is improved.
 Synchronous condensers are generally used at major bulk supply
sub-stations for power factor improvement.
Power Factor
Power Factor
Advantages:
i. By using the field excitation, the magnitude of current drawn by the
motor can be changed by any amount. This helps in achieving stepless
control of power factor.
ii. The motor windings have high thermal stability to short circuit
currents.
iii. The fault can be removed easily.
Disadvantages:
i. There are considerable losses in the motor.
ii. The maintenance cost is high.
iii. It produces noise.
iv. Except in sizes above 500 kVA, the cost is greater than that of static
capacitors of the same rating.
v. As synchronous motor has no self-starting torque, therefore, an
auxiliary equipment has to be provided for this purpose.
Power Factor
Power Triangle:
 The analysis of power factor can also made
in terms of power drawn by a.c. circuit.
OA = VI cos Ø and represents the active power
in the watts or kW.
AB = VI sin Ø and represents the reactive power in VAR or kVAR
OB = VI and represents the apparent power in VA or kVA.
The following points may be noted from the power triangle:
(i) The apparent power in an a.c. circuit has two components viz.,
active and reactive power at right angles to each other.
OB2 = OA2 + AB2
(Apparent power)2 = (Active power)2 + (Reactive power)2
(kVA)2 = (kW)2 + (kVAR)2
Power Factor
(ii)Power factor, cos Ø = OA / OB
= active power/ apparent power
= kW / kVA
 Thus the power factor of a circuit may also be defined as the ratio of
active power to the apparent power.
 This is perfectly general definition and can be applied to all cases,
whatever be the waveform
(iii)The lagging reactive power is responsible for the low power factor.
It is clear from the power triangle that smaller the reactive power
component, the higher is the power factor of the circuit
sin sin
cos
tan
kW
kVAR kVA
kVAR kW
   

 
Power Factor
 The power factor correction can also be
illustrated from power triangle.
 Thus referring to figure, the power
triangle OAB is for the power factor cos
Ø1 , where the power triangle OAC is
for the improved power factor cos Ø2
 It may be seen that active power (OA) does not change with power factor
improvement.
 However the lagging kVAR of the load is reduced by the power factor
correction equipment , thus improving power factor to cos Ø2 .
 Leading kVAR supplied by p.f. correction equipment:
1 2
BC AB AC
kVAR kVAR
  
 
 
 
1 2
1 2
tan tan
tan tan
OA
kW
   
   

Weitere ähnliche Inhalte

Was ist angesagt?

Current Source Inverter and Voltage Source Inverter
Current Source Inverter and Voltage Source Inverter Current Source Inverter and Voltage Source Inverter
Current Source Inverter and Voltage Source Inverter Sadanand Purohit
 
TRANSFORMERS and LOSSES
TRANSFORMERS and LOSSESTRANSFORMERS and LOSSES
TRANSFORMERS and LOSSESPraveen Kumar
 
Lecture 2: Power Diodes
Lecture 2: Power DiodesLecture 2: Power Diodes
Lecture 2: Power Diodesaadesharya
 
Planning and modern trends in hvdc
Planning and modern trends in hvdcPlanning and modern trends in hvdc
Planning and modern trends in hvdcjawaharramaya
 
measurement of high voltage and high currents
 measurement of high voltage and high currents  measurement of high voltage and high currents
measurement of high voltage and high currents mukund mukund.m
 
Single phase induction motor
Single phase induction motorSingle phase induction motor
Single phase induction motorSirat Mahmood
 
Power electronics Introduction
Power electronics   IntroductionPower electronics   Introduction
Power electronics IntroductionBurdwan University
 
Parallel Operation of Transformers
Parallel Operation of TransformersParallel Operation of Transformers
Parallel Operation of TransformersRama Jalamanchili
 
Ideal Transformers
           Ideal Transformers           Ideal Transformers
Ideal Transformersmasum heera
 
ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the TransformerYuvraj Singh
 
BREAKDOWN IN LIQUIDS_NDS
BREAKDOWN IN LIQUIDS_NDSBREAKDOWN IN LIQUIDS_NDS
BREAKDOWN IN LIQUIDS_NDSNiraj Solanki
 
Symmetrical Fault Analysis
Symmetrical Fault AnalysisSymmetrical Fault Analysis
Symmetrical Fault AnalysisSANTOSH GADEKAR
 
Economics of power generation
Economics of power generationEconomics of power generation
Economics of power generationMaharishi Tiwari
 

Was ist angesagt? (20)

Speed control of dc motor
Speed control of dc motorSpeed control of dc motor
Speed control of dc motor
 
Current Source Inverter and Voltage Source Inverter
Current Source Inverter and Voltage Source Inverter Current Source Inverter and Voltage Source Inverter
Current Source Inverter and Voltage Source Inverter
 
TRANSFORMERS and LOSSES
TRANSFORMERS and LOSSESTRANSFORMERS and LOSSES
TRANSFORMERS and LOSSES
 
Lecture 2: Power Diodes
Lecture 2: Power DiodesLecture 2: Power Diodes
Lecture 2: Power Diodes
 
Choppers
ChoppersChoppers
Choppers
 
Power factor
Power factorPower factor
Power factor
 
Electrical machines 2 AC Machines
Electrical machines 2 AC MachinesElectrical machines 2 AC Machines
Electrical machines 2 AC Machines
 
BREAKDOWN IN GASES
BREAKDOWN IN GASESBREAKDOWN IN GASES
BREAKDOWN IN GASES
 
Planning and modern trends in hvdc
Planning and modern trends in hvdcPlanning and modern trends in hvdc
Planning and modern trends in hvdc
 
measurement of high voltage and high currents
 measurement of high voltage and high currents  measurement of high voltage and high currents
measurement of high voltage and high currents
 
Single phase induction motor
Single phase induction motorSingle phase induction motor
Single phase induction motor
 
Power electronics Introduction
Power electronics   IntroductionPower electronics   Introduction
Power electronics Introduction
 
Parallel Operation of Transformers
Parallel Operation of TransformersParallel Operation of Transformers
Parallel Operation of Transformers
 
Ideal Transformers
           Ideal Transformers           Ideal Transformers
Ideal Transformers
 
ppt on the Transformer
ppt on the Transformerppt on the Transformer
ppt on the Transformer
 
BREAKDOWN IN LIQUIDS_NDS
BREAKDOWN IN LIQUIDS_NDSBREAKDOWN IN LIQUIDS_NDS
BREAKDOWN IN LIQUIDS_NDS
 
Transformer
TransformerTransformer
Transformer
 
Transformer
TransformerTransformer
Transformer
 
Symmetrical Fault Analysis
Symmetrical Fault AnalysisSymmetrical Fault Analysis
Symmetrical Fault Analysis
 
Economics of power generation
Economics of power generationEconomics of power generation
Economics of power generation
 

Andere mochten auch

Power Factor
Power FactorPower Factor
Power FactorTim Cohen
 
Power factor presentation
Power factor presentationPower factor presentation
Power factor presentationAzhar Abbas
 
Power factor & Power factor correction
Power factor & Power factor correctionPower factor & Power factor correction
Power factor & Power factor correctionLong Thang Pham
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basicsno suhaila
 
Project report on 33kv Substation and Automatic Power Factor Controller in ONGC
Project report on 33kv Substation and Automatic Power Factor Controller in ONGCProject report on 33kv Substation and Automatic Power Factor Controller in ONGC
Project report on 33kv Substation and Automatic Power Factor Controller in ONGCGirish Gupta
 
fault location estimator in series compensator
fault location estimator in series compensatorfault location estimator in series compensator
fault location estimator in series compensatorABHISHEK RAI
 
Stator and rotor of a monoblock motor
Stator and rotor of a monoblock motorStator and rotor of a monoblock motor
Stator and rotor of a monoblock motorAnand Prithviraj
 
Examination of the Change in the Power Factor Due to Loading Effect
Examination of the Change in the Power Factor Due to Loading EffectExamination of the Change in the Power Factor Due to Loading Effect
Examination of the Change in the Power Factor Due to Loading EffectIRJAES Editor
 
power factor
power factorpower factor
power factor2461998
 
14.2.1 Power Triangle
14.2.1 Power Triangle14.2.1 Power Triangle
14.2.1 Power TriangleTalia Carbis
 
Power Quality Systems and Power Factor Correction Presentation
Power Quality Systems and Power Factor Correction PresentationPower Quality Systems and Power Factor Correction Presentation
Power Quality Systems and Power Factor Correction PresentationMircea Gingu
 
20120504 LISAT slides Colum
20120504 LISAT slides Colum20120504 LISAT slides Colum
20120504 LISAT slides Colummosesnbklyn
 
Power factor correction
Power factor correctionPower factor correction
Power factor correctionAbdur rehman
 
Power factor correction
Power factor correctionPower factor correction
Power factor correctionJamilah Abbas
 
Application of Capacitors to Distribution System and Voltage Regulation
Application of Capacitors to Distribution System and Voltage RegulationApplication of Capacitors to Distribution System and Voltage Regulation
Application of Capacitors to Distribution System and Voltage RegulationAmeen San
 

Andere mochten auch (20)

Power factor correction
Power factor correctionPower factor correction
Power factor correction
 
Power Factor
Power FactorPower Factor
Power Factor
 
Power factor presentation
Power factor presentationPower factor presentation
Power factor presentation
 
Power factor & Power factor correction
Power factor & Power factor correctionPower factor & Power factor correction
Power factor & Power factor correction
 
Power factor(r)
Power factor(r)Power factor(r)
Power factor(r)
 
Power Factor Basics
Power Factor BasicsPower Factor Basics
Power Factor Basics
 
Power Factor
Power FactorPower Factor
Power Factor
 
Power factor improvement
Power factor improvementPower factor improvement
Power factor improvement
 
Project report on 33kv Substation and Automatic Power Factor Controller in ONGC
Project report on 33kv Substation and Automatic Power Factor Controller in ONGCProject report on 33kv Substation and Automatic Power Factor Controller in ONGC
Project report on 33kv Substation and Automatic Power Factor Controller in ONGC
 
System Works Knowledge Sharing
System Works Knowledge SharingSystem Works Knowledge Sharing
System Works Knowledge Sharing
 
fault location estimator in series compensator
fault location estimator in series compensatorfault location estimator in series compensator
fault location estimator in series compensator
 
Stator and rotor of a monoblock motor
Stator and rotor of a monoblock motorStator and rotor of a monoblock motor
Stator and rotor of a monoblock motor
 
Examination of the Change in the Power Factor Due to Loading Effect
Examination of the Change in the Power Factor Due to Loading EffectExamination of the Change in the Power Factor Due to Loading Effect
Examination of the Change in the Power Factor Due to Loading Effect
 
power factor
power factorpower factor
power factor
 
14.2.1 Power Triangle
14.2.1 Power Triangle14.2.1 Power Triangle
14.2.1 Power Triangle
 
Power Quality Systems and Power Factor Correction Presentation
Power Quality Systems and Power Factor Correction PresentationPower Quality Systems and Power Factor Correction Presentation
Power Quality Systems and Power Factor Correction Presentation
 
20120504 LISAT slides Colum
20120504 LISAT slides Colum20120504 LISAT slides Colum
20120504 LISAT slides Colum
 
Power factor correction
Power factor correctionPower factor correction
Power factor correction
 
Power factor correction
Power factor correctionPower factor correction
Power factor correction
 
Application of Capacitors to Distribution System and Voltage Regulation
Application of Capacitors to Distribution System and Voltage RegulationApplication of Capacitors to Distribution System and Voltage Regulation
Application of Capacitors to Distribution System and Voltage Regulation
 

Ähnlich wie Power factor

Principles of Power Systems V.K Mehta Complete Book - Chapter 6
Principles of Power Systems V.K Mehta Complete Book - Chapter 6Principles of Power Systems V.K Mehta Complete Book - Chapter 6
Principles of Power Systems V.K Mehta Complete Book - Chapter 6Power System Operation
 
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
 
Power Factor its Importance and Improvement.pptx
Power Factor its Importance and Improvement.pptxPower Factor its Importance and Improvement.pptx
Power Factor its Importance and Improvement.pptxaafadf1
 
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdfasprilla mangombe
 
power factor correction using smart relay
power factor correction using smart relaypower factor correction using smart relay
power factor correction using smart relayHatem Seoudy
 
MINOR PROJECT gb 08 (3).pdf
MINOR PROJECT gb 08 (3).pdfMINOR PROJECT gb 08 (3).pdf
MINOR PROJECT gb 08 (3).pdfDrSabhyataSoni
 
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
 
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...IRJET Journal
 
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...IRJET Journal
 
Power factor and its importance
Power factor and its importancePower factor and its importance
Power factor and its importancePriyansh Thakar
 
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
 
IRJET- Automated Energy Monitering System and Power Factor Improvement
IRJET-  	  Automated Energy Monitering System and Power Factor ImprovementIRJET-  	  Automated Energy Monitering System and Power Factor Improvement
IRJET- Automated Energy Monitering System and Power Factor ImprovementIRJET Journal
 
International Journal of Engineering Research and Development (IJERD)
International Journal of Engineering Research and Development (IJERD)International Journal of Engineering Research and Development (IJERD)
International Journal of Engineering Research and Development (IJERD)IJERD Editor
 
automatic power factor correction report
automatic power factor correction reportautomatic power factor correction report
automatic power factor correction reportamaljo joju e
 
power factor correction soham+niraj
power factor correction soham+nirajpower factor correction soham+niraj
power factor correction soham+nirajsoham patel
 

Ähnlich wie Power factor (20)

Power factor improvement
Power factor improvement Power factor improvement
Power factor improvement
 
8925273.ppt
8925273.ppt8925273.ppt
8925273.ppt
 
Principles of Power Systems V.K Mehta Complete Book - Chapter 6
Principles of Power Systems V.K Mehta Complete Book - Chapter 6Principles of Power Systems V.K Mehta Complete Book - Chapter 6
Principles of Power Systems V.K Mehta Complete Book - Chapter 6
 
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
 
Power Factor its Importance and Improvement.pptx
Power Factor its Importance and Improvement.pptxPower Factor its Importance and Improvement.pptx
Power Factor its Importance and Improvement.pptx
 
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf
2006_18_spring_wiring_matters_power_factor_correction_pfc.pdf
 
PFI GUIDE
PFI GUIDEPFI GUIDE
PFI GUIDE
 
power factor correction using smart relay
power factor correction using smart relaypower factor correction using smart relay
power factor correction using smart relay
 
MINOR PROJECT gb 08 (3).pdf
MINOR PROJECT gb 08 (3).pdfMINOR PROJECT gb 08 (3).pdf
MINOR PROJECT gb 08 (3).pdf
 
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
 
Power Factors
Power FactorsPower Factors
Power Factors
 
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...
IRJET- Power Saver for Industrial and Commercial Establishments by Power Fact...
 
A010410109
A010410109A010410109
A010410109
 
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...
IRJET- Simulation & Hardware Implementation of APFC Meter to Boost Up Power F...
 
Power factor and its importance
Power factor and its importancePower factor and its importance
Power factor and its importance
 
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
 
IRJET- Automated Energy Monitering System and Power Factor Improvement
IRJET-  	  Automated Energy Monitering System and Power Factor ImprovementIRJET-  	  Automated Energy Monitering System and Power Factor Improvement
IRJET- Automated Energy Monitering System and Power Factor Improvement
 
International Journal of Engineering Research and Development (IJERD)
International Journal of Engineering Research and Development (IJERD)International Journal of Engineering Research and Development (IJERD)
International Journal of Engineering Research and Development (IJERD)
 
automatic power factor correction report
automatic power factor correction reportautomatic power factor correction report
automatic power factor correction report
 
power factor correction soham+niraj
power factor correction soham+nirajpower factor correction soham+niraj
power factor correction soham+niraj
 

Mehr von Engr Muhammad Imran (11)

Engr cv converted
Engr cv convertedEngr cv converted
Engr cv converted
 
Batteries and Electrochemical Processes
Batteries and Electrochemical ProcessesBatteries and Electrochemical Processes
Batteries and Electrochemical Processes
 
Measurenments of DC Resistivity
Measurenments of DC ResistivityMeasurenments of DC Resistivity
Measurenments of DC Resistivity
 
Substations
Substations Substations
Substations
 
Distribution transformer
Distribution transformerDistribution transformer
Distribution transformer
 
Electrical front page
Electrical front pageElectrical front page
Electrical front page
 
Petersen coil grounding
Petersen coil groundingPetersen coil grounding
Petersen coil grounding
 
Petersen coil grounding
Petersen coil groundingPetersen coil grounding
Petersen coil grounding
 
Grounding, neutral & earthing
Grounding, neutral & earthingGrounding, neutral & earthing
Grounding, neutral & earthing
 
Project report
Project reportProject report
Project report
 
Front
FrontFront
Front
 

Kürzlich hochgeladen

Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...VICTOR MAESTRE RAMIREZ
 
Mine Environment II Lab_MI10448MI__________.pptx
Mine Environment II Lab_MI10448MI__________.pptxMine Environment II Lab_MI10448MI__________.pptx
Mine Environment II Lab_MI10448MI__________.pptxRomil Mishra
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating SystemRashmi Bhat
 
Industrial Safety Unit-IV workplace health and safety.ppt
Industrial Safety Unit-IV workplace health and safety.pptIndustrial Safety Unit-IV workplace health and safety.ppt
Industrial Safety Unit-IV workplace health and safety.pptNarmatha D
 
home automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadhome automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadaditya806802
 
Class 1 | NFPA 72 | Overview Fire Alarm System
Class 1 | NFPA 72 | Overview Fire Alarm SystemClass 1 | NFPA 72 | Overview Fire Alarm System
Class 1 | NFPA 72 | Overview Fire Alarm Systemirfanmechengr
 
BSNL Internship Training presentation.pptx
BSNL Internship Training presentation.pptxBSNL Internship Training presentation.pptx
BSNL Internship Training presentation.pptxNiranjanYadav41
 
DM Pillar Training Manual.ppt will be useful in deploying TPM in project
DM Pillar Training Manual.ppt will be useful in deploying TPM in projectDM Pillar Training Manual.ppt will be useful in deploying TPM in project
DM Pillar Training Manual.ppt will be useful in deploying TPM in projectssuserb6619e
 
Configuration of IoT devices - Systems managament
Configuration of IoT devices - Systems managamentConfiguration of IoT devices - Systems managament
Configuration of IoT devices - Systems managamentBharaniDharan195623
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 
"Exploring the Essential Functions and Design Considerations of Spillways in ...
"Exploring the Essential Functions and Design Considerations of Spillways in ..."Exploring the Essential Functions and Design Considerations of Spillways in ...
"Exploring the Essential Functions and Design Considerations of Spillways in ...Erbil Polytechnic University
 
Risk Management in Engineering Construction Project
Risk Management in Engineering Construction ProjectRisk Management in Engineering Construction Project
Risk Management in Engineering Construction ProjectErbil Polytechnic University
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptMadan Karki
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfAsst.prof M.Gokilavani
 
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgUnit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgsaravananr517913
 
Ch10-Global Supply Chain - Cadena de Suministro.pdf
Ch10-Global Supply Chain - Cadena de Suministro.pdfCh10-Global Supply Chain - Cadena de Suministro.pdf
Ch10-Global Supply Chain - Cadena de Suministro.pdfChristianCDAM
 
Autonomous emergency braking system (aeb) ppt.ppt
Autonomous emergency braking system (aeb) ppt.pptAutonomous emergency braking system (aeb) ppt.ppt
Autonomous emergency braking system (aeb) ppt.pptbibisarnayak0
 
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...Erbil Polytechnic University
 

Kürzlich hochgeladen (20)

Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...Software and Systems Engineering Standards: Verification and Validation of Sy...
Software and Systems Engineering Standards: Verification and Validation of Sy...
 
POWER SYSTEMS-1 Complete notes examples
POWER SYSTEMS-1 Complete notes  examplesPOWER SYSTEMS-1 Complete notes  examples
POWER SYSTEMS-1 Complete notes examples
 
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
 
Mine Environment II Lab_MI10448MI__________.pptx
Mine Environment II Lab_MI10448MI__________.pptxMine Environment II Lab_MI10448MI__________.pptx
Mine Environment II Lab_MI10448MI__________.pptx
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating System
 
Industrial Safety Unit-IV workplace health and safety.ppt
Industrial Safety Unit-IV workplace health and safety.pptIndustrial Safety Unit-IV workplace health and safety.ppt
Industrial Safety Unit-IV workplace health and safety.ppt
 
home automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasadhome automation using Arduino by Aditya Prasad
home automation using Arduino by Aditya Prasad
 
Class 1 | NFPA 72 | Overview Fire Alarm System
Class 1 | NFPA 72 | Overview Fire Alarm SystemClass 1 | NFPA 72 | Overview Fire Alarm System
Class 1 | NFPA 72 | Overview Fire Alarm System
 
BSNL Internship Training presentation.pptx
BSNL Internship Training presentation.pptxBSNL Internship Training presentation.pptx
BSNL Internship Training presentation.pptx
 
DM Pillar Training Manual.ppt will be useful in deploying TPM in project
DM Pillar Training Manual.ppt will be useful in deploying TPM in projectDM Pillar Training Manual.ppt will be useful in deploying TPM in project
DM Pillar Training Manual.ppt will be useful in deploying TPM in project
 
Configuration of IoT devices - Systems managament
Configuration of IoT devices - Systems managamentConfiguration of IoT devices - Systems managament
Configuration of IoT devices - Systems managament
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 
"Exploring the Essential Functions and Design Considerations of Spillways in ...
"Exploring the Essential Functions and Design Considerations of Spillways in ..."Exploring the Essential Functions and Design Considerations of Spillways in ...
"Exploring the Essential Functions and Design Considerations of Spillways in ...
 
Risk Management in Engineering Construction Project
Risk Management in Engineering Construction ProjectRisk Management in Engineering Construction Project
Risk Management in Engineering Construction Project
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.ppt
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
 
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgUnit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
 
Ch10-Global Supply Chain - Cadena de Suministro.pdf
Ch10-Global Supply Chain - Cadena de Suministro.pdfCh10-Global Supply Chain - Cadena de Suministro.pdf
Ch10-Global Supply Chain - Cadena de Suministro.pdf
 
Autonomous emergency braking system (aeb) ppt.ppt
Autonomous emergency braking system (aeb) ppt.pptAutonomous emergency braking system (aeb) ppt.ppt
Autonomous emergency braking system (aeb) ppt.ppt
 
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...
Comparative study of High-rise Building Using ETABS,SAP200 and SAFE., SAFE an...
 

Power factor

  • 2. Power Factor Introduction  The cosine of angle made between the voltage and current is called the power factor.  In AC circuits, there is always the phase deference between the voltage and current, which is calculated in terms of power factor.  If the load is inductive the current lags behind the voltage and the power factor is lagging.  If the load is capacitive the current leads the voltage and the power factor is leading.  The value of power factor can never be more than unity.  It is usual practice to attach the word “lagging” or “leading” with the numerical value of the power factor to signify whether the current lags or leads the voltage.  Thus if the circuit has a p.f of 0.5 and current lags the voltage, we generally write p.f. as 0.5 lagging or sometimes expressed as a percentage (50% lagging)
  • 4. Power Factor Causes of Low Power Factor  Ideally the power factor must be close to unity, where as low power factor is undesirable.  Following are the causes of low power factor: 1. Most of AC motors (i.e. induction motor) are used to work at low lagging power factor, which causes the low power factor. 2. The load on power station is not constant but is varying; it is more at peak time (Day time) and reduces at night time. During low load period the supply voltage increases which increases the magnetizing current , this decreases the power factor. 3. The arc lamps and industrial heating furnace operates on low power factor.
  • 5. Power Factor Effect of Low Power Factor  The low power factor causes the following effects: 1. Line losses (I2R) will be more. 2. Lower the power factor higher will be the rating of electrical equipment, which makes the equipment more complex and larger in size. KW = kVA × CosØ kVA = KW / CosØ 3. The useful load that can be transmitted is reduced. 4. There will be a poor voltage regulation 5. It reduces the handling capacity of the plant.
  • 6. Power Factor Methods of Improving Power Factor:  Normally the power factor of the system ranges between 0.8 to 0.9, however in case of low P.F. there is a need of improving power factor.  There are three main methods used to improve the power factor of the system: i. Static Capacitor ii. Phase Advancer iii. Synchronous Condenser i) Static Capacitor  The power factor can be improved by connecting capacitors in parallel with the equipment operating at lagging power factor.  The capacitor (Generally known as static capacitor) draws a leading current and partly or completely neutralizes the lagging reactive component of load current. This rises the power factor of load.
  • 7. Power Factor  For three-phase loads, the capacitors can be connected in delta or star as shown in below fig.  Static capacitors are invariably used for power factor improvement in factories. Advantages: i. They have low losses. ii. They require little maintenance as there are no rotating parts. iii. They can be easily installed as they are light and require no foundation. iv. They can work under ordinary atmospheric conditions. Disadvantages: i. They have short service life ranging from 8 to 10 years. ii. They are easily damaged if the voltage exceeds the rated value. iii. Once the capacitors are damaged, their repair is uneconomical.
  • 10. Power Factor ii) Phase advancer  Phase advancer are used to improve the power factor of induction motor.  The low power factor of an induction motor is due to the fact that its stator winding draws exciting current which lags behind the supply voltage by 90o .  If the exciting ampere turns can be provided from some other a.c. source, then the stator winding will be relieved of exciting current and the power factor of motor can be improved.  This job is accomplished by the phase advancer which is simply an a.c. exciter.  The phase advancer is mounted on the same shaft as the main motor and is connected in the rotor circuit of motor.  The major disadvantage of phase advancers is that they are not economical for motors below 200 H.P.
  • 11. Power Factor iii) Synchronous Condenser  A synchronous motor takes a leading current when over-excited and, therefore, behaves as a capacitor.  An over-excited synchronous motor running on no load is known as “Synchronous condenser”.  When such a machine is connected in parallel with the supply, it takes a leading current which partly neutralizes the lagging reactive component of the load. Thus the power factor is improved.  Synchronous condensers are generally used at major bulk supply sub-stations for power factor improvement.
  • 13. Power Factor Advantages: i. By using the field excitation, the magnitude of current drawn by the motor can be changed by any amount. This helps in achieving stepless control of power factor. ii. The motor windings have high thermal stability to short circuit currents. iii. The fault can be removed easily. Disadvantages: i. There are considerable losses in the motor. ii. The maintenance cost is high. iii. It produces noise. iv. Except in sizes above 500 kVA, the cost is greater than that of static capacitors of the same rating. v. As synchronous motor has no self-starting torque, therefore, an auxiliary equipment has to be provided for this purpose.
  • 14. Power Factor Power Triangle:  The analysis of power factor can also made in terms of power drawn by a.c. circuit. OA = VI cos Ø and represents the active power in the watts or kW. AB = VI sin Ø and represents the reactive power in VAR or kVAR OB = VI and represents the apparent power in VA or kVA. The following points may be noted from the power triangle: (i) The apparent power in an a.c. circuit has two components viz., active and reactive power at right angles to each other. OB2 = OA2 + AB2 (Apparent power)2 = (Active power)2 + (Reactive power)2 (kVA)2 = (kW)2 + (kVAR)2
  • 15. Power Factor (ii)Power factor, cos Ø = OA / OB = active power/ apparent power = kW / kVA  Thus the power factor of a circuit may also be defined as the ratio of active power to the apparent power.  This is perfectly general definition and can be applied to all cases, whatever be the waveform (iii)The lagging reactive power is responsible for the low power factor. It is clear from the power triangle that smaller the reactive power component, the higher is the power factor of the circuit sin sin cos tan kW kVAR kVA kVAR kW       
  • 16. Power Factor  The power factor correction can also be illustrated from power triangle.  Thus referring to figure, the power triangle OAB is for the power factor cos Ø1 , where the power triangle OAC is for the improved power factor cos Ø2  It may be seen that active power (OA) does not change with power factor improvement.  However the lagging kVAR of the load is reduced by the power factor correction equipment , thus improving power factor to cos Ø2 .  Leading kVAR supplied by p.f. correction equipment: 1 2 BC AB AC kVAR kVAR          1 2 1 2 tan tan tan tan OA kW        