SlideShare une entreprise Scribd logo
1  sur  15
Power Quality Improvement
INTRODUCTION OF POWER
QUALITY
 Power Quality is a combination of Voltage profile,
Frequency profile, Harmonics contain and reliability of
power supply.
 The Power Quality is defined as the degree to which
the power supply approaches the ideal case of stable,
uninterrupted, zero distortion and disturbance free supply.
 This presentation represents an overviews of electric
power quality with special emphasis on power quality
problems.
 The adverse impact on utility of customers and their
mitigation techniques.
 This presentation also deals with serious power quality
problems such as voltage distortion due to current
harmonics, flicker ,voltage sag and voltage surge..etc
 Power quality is related to deliver of “CLEAN”
electric power that compile with industry standards.
CAUSES OF POOR POWER
QUALITY
 Variation in voltage magnitude and frequency.
 Variation in magnitude can be due to sudden rise or fall of
load , outages, repetitive varying loading pattern in rolling
mills, power electronic converters, inverters, lightning..etc
 Variation in frequency can rise of out of system dynamics
or harmonics injection.
POWER QUALITY COVERS
1. Reliability :- continuous availability,
interruption/breakdown/outage free
2. Parameters:-
 Voltage- flicker, swell, sag/dip, unbalance
 Frequency- drop or rise
 Harmonics contains- SCR, converters, inverters etc.
 Transients
SOURCES OF POOR POWER
QUALITY
 Non linear loads
 Arcing loads
 Switching operation
 Reactive loads
 Atmospheric condition
 Unstable loads
 Neighboring unbalance system
TYPICAL POWER QUALITY
PROBLEMS
 Voltage Sags :- A reduction in RMS voltage or
current at the power frequency.
Voltage Surge:- voltage variation can be
positive (higher than normal) or negative (lower
than normal)
 Transients:- it manifest only as a short duration
change in voltage due to switching ON and OFF the
loads.
 Harmonics:- it is an integer multiple of fundamental
frequency in the sine wave of power supply or simply
distortion of waveforms.
 Lightning:- It produces very high currents, for a short
time interval, but enough to cause fires or to destroy
microcircuits.
IMPACT OF POOR POWER QUALITY
 The effect of poor power quality problems has serious implication on
the utilities and customers.
 Higher losses in transformers, cables .
 Neutral wire burning due to third harmonics generated by non linear
loads.
 Power factor capacitors may punctures.
 Energy meters will give faulty readings.
 Solid state protective relays may damaged .
 Speed drives may shut down.
 Motor will increase core and cu losses
 Non sinusoidal waveforms will reduce the efficiency of motors.
 Electronic computer may loss data due to voltage variation .
 Domestics TV and other equipments are affected by the poor quality.
SYMPTOMS OF POWER QUALITY
PROBLEM
 Electronic controlled system that stop unexpectedly
 Abnormal failure of electronic systems
 Transformer overheating
 Motor failing
 Power factor capacitors failing
 Test results will unreliable
TECHNIQUES TO MITIGATE
POWER QUALITY PROBLEMS
 Compensation techniques can be broadly classified into
two main categories:-
1. Passive techniques
2. Active techniques
 Passive techniques employ the following devices.
* Passive Shunt L-C Filters
* Power Factor Correction Capacitors
 Active techniques employ the following devices.
*PWM Active Filters.
SOME OTHER TECHNIQUES
 Segregate sensitive loads on separate branch
circuits , fed from a separate panel board , fed from
a separate feeders
 Use of harmonics rated circuit breakers, panel
board and transformers.
 Use surge and lightning protection.
 Oversize phase conductors to minimize voltage
drop.
 Choose material of superior quality.
CONCLUSION
The wide spread applications of non-linear power
electronics loads increases the poor power quality in the
electric systems. This presentation has focused broadly on
the utilities and customers in the power system. At the
same time, the sources of poor power quality and their
mitigations techniques has discussed in brief. The
effectives means of compensation through various
techniques have also been highlighted.
THANK YOU…!!!

Contenu connexe

Tendances

Tendances (20)

Reactive power compensation
Reactive power compensationReactive power compensation
Reactive power compensation
 
Power Quality
Power QualityPower Quality
Power Quality
 
Statcom
StatcomStatcom
Statcom
 
Storage In Smart Grids
Storage In Smart GridsStorage In Smart Grids
Storage In Smart Grids
 
Power system voltage stability
Power system voltage stabilityPower system voltage stability
Power system voltage stability
 
Power quality disturbances
Power quality disturbancesPower quality disturbances
Power quality disturbances
 
PPT ON POWER SYSTEM STABILITY
PPT ON POWER SYSTEM STABILITYPPT ON POWER SYSTEM STABILITY
PPT ON POWER SYSTEM STABILITY
 
Power system stability
Power system stabilityPower system stability
Power system stability
 
Hydrothermal scheduling
Hydrothermal schedulingHydrothermal scheduling
Hydrothermal scheduling
 
Power quality improvement techniques
Power quality improvement techniquesPower quality improvement techniques
Power quality improvement techniques
 
INTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLERINTERLINE FLOW CONTROLLER
INTERLINE FLOW CONTROLLER
 
Power Quality and Monitoring
Power Quality and MonitoringPower Quality and Monitoring
Power Quality and Monitoring
 
Power factor correction
Power factor correctionPower factor correction
Power factor correction
 
Power factor improvement
Power factor improvementPower factor improvement
Power factor improvement
 
EXCITATION SYSTEMS
EXCITATION SYSTEMSEXCITATION SYSTEMS
EXCITATION SYSTEMS
 
DISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAYDISTANCE PROTECTION RELAY
DISTANCE PROTECTION RELAY
 
Hvdc notes
Hvdc notesHvdc notes
Hvdc notes
 
Different method of frequency and voltage control
Different method of frequency and voltage controlDifferent method of frequency and voltage control
Different method of frequency and voltage control
 
upfc
upfcupfc
upfc
 
Power qualty conditioners
Power qualty conditionersPower qualty conditioners
Power qualty conditioners
 

En vedette

Power quality.ppt
Power quality.pptPower quality.ppt
Power quality.ppt
Krish Krishna
 
Power System Stability & Control
Power System Stability & ControlPower System Stability & Control
Power System Stability & Control
Azimah Aziz
 
Interruptores automáticos selectividad
Interruptores automáticos selectividadInterruptores automáticos selectividad
Interruptores automáticos selectividad
Arturo Iglesias Castro
 
PowerWorld 15. Transient Stability Quickstart
PowerWorld 15. Transient Stability QuickstartPowerWorld 15. Transient Stability Quickstart
PowerWorld 15. Transient Stability Quickstart
J. FR
 
Cuestionario de Maquinas Eléctricas I
Cuestionario de Maquinas Eléctricas ICuestionario de Maquinas Eléctricas I
Cuestionario de Maquinas Eléctricas I
Fco José Alemán Urbina
 
Cuestionario de motores#1
Cuestionario de motores#1Cuestionario de motores#1
Cuestionario de motores#1
Pablo Hernandez
 

En vedette (19)

Power quality ppt
Power quality pptPower quality ppt
Power quality ppt
 
Power quality.ppt
Power quality.pptPower quality.ppt
Power quality.ppt
 
Power quality-disturbances and monitoring Seminar
Power quality-disturbances and monitoring  SeminarPower quality-disturbances and monitoring  Seminar
Power quality-disturbances and monitoring Seminar
 
Power Quality
Power QualityPower Quality
Power Quality
 
Power System Stability & Control
Power System Stability & ControlPower System Stability & Control
Power System Stability & Control
 
Interruptores automáticos selectividad
Interruptores automáticos selectividadInterruptores automáticos selectividad
Interruptores automáticos selectividad
 
Capitulo 1 (motores fase partida)
Capitulo 1 (motores fase partida)Capitulo 1 (motores fase partida)
Capitulo 1 (motores fase partida)
 
Monticelli wu
Monticelli wuMonticelli wu
Monticelli wu
 
electrical transients in power system
electrical transients in power systemelectrical transients in power system
electrical transients in power system
 
Modelado y simulación del transformador eléctrico.
Modelado y simulación del transformador eléctrico.Modelado y simulación del transformador eléctrico.
Modelado y simulación del transformador eléctrico.
 
PowerWorld 15. Transient Stability Quickstart
PowerWorld 15. Transient Stability QuickstartPowerWorld 15. Transient Stability Quickstart
PowerWorld 15. Transient Stability Quickstart
 
Particle swarm optimization
Particle swarm optimizationParticle swarm optimization
Particle swarm optimization
 
Power system transients (IV-EEE)
Power system transients (IV-EEE)Power system transients (IV-EEE)
Power system transients (IV-EEE)
 
Coordinacion de protecciones 1
Coordinacion de protecciones 1Coordinacion de protecciones 1
Coordinacion de protecciones 1
 
Rosenberg Cuestionario 1 Motores de Fase Partida
Rosenberg Cuestionario 1 Motores de Fase PartidaRosenberg Cuestionario 1 Motores de Fase Partida
Rosenberg Cuestionario 1 Motores de Fase Partida
 
Cuestionario del capitulo 7, edison guaman, felipe quevedo, leonardo sarmiento
Cuestionario del capitulo 7, edison guaman, felipe quevedo, leonardo sarmientoCuestionario del capitulo 7, edison guaman, felipe quevedo, leonardo sarmiento
Cuestionario del capitulo 7, edison guaman, felipe quevedo, leonardo sarmiento
 
1
11
1
 
Cuestionario de Maquinas Eléctricas I
Cuestionario de Maquinas Eléctricas ICuestionario de Maquinas Eléctricas I
Cuestionario de Maquinas Eléctricas I
 
Cuestionario de motores#1
Cuestionario de motores#1Cuestionario de motores#1
Cuestionario de motores#1
 

Similaire à POWER QUALITY IMPROVEMENT

A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
ijiert bestjournal
 
A Voltage Controlled Dstatcom for Power Quality Improvement
A Voltage Controlled Dstatcom for Power Quality ImprovementA Voltage Controlled Dstatcom for Power Quality Improvement
A Voltage Controlled Dstatcom for Power Quality Improvement
iosrjce
 
Powerqualityppt kuldeep
Powerqualityppt kuldeepPowerqualityppt kuldeep
Powerqualityppt kuldeep
Kuldeep Singh
 

Similaire à POWER QUALITY IMPROVEMENT (20)

Power System quality implementation
Power System  quality implementation Power System  quality implementation
Power System quality implementation
 
International Journal of Computational Engineering Research (IJCER)
International Journal of Computational Engineering Research (IJCER)International Journal of Computational Engineering Research (IJCER)
International Journal of Computational Engineering Research (IJCER)
 
WHY POWER QUALITY AUDIT IS IMPORTANT ???
WHY POWER QUALITY AUDIT IS IMPORTANT ???WHY POWER QUALITY AUDIT IS IMPORTANT ???
WHY POWER QUALITY AUDIT IS IMPORTANT ???
 
A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
A High-Performance SPWM Controller for Three-Phase UPS Systems Operating Unde...
 
Power quality & demand side management
Power quality & demand side managementPower quality & demand side management
Power quality & demand side management
 
Power quality 1341013148
Power quality 1341013148Power quality 1341013148
Power quality 1341013148
 
Power Quality Improvement using AC To AC PWM converter for distribution line
Power Quality Improvement using AC To AC PWM converter for distribution linePower Quality Improvement using AC To AC PWM converter for distribution line
Power Quality Improvement using AC To AC PWM converter for distribution line
 
63-pq.ppt
63-pq.ppt63-pq.ppt
63-pq.ppt
 
63-pq.ppt
63-pq.ppt63-pq.ppt
63-pq.ppt
 
1660034363151685.pptx
1660034363151685.pptx1660034363151685.pptx
1660034363151685.pptx
 
A Voltage Controlled Dstatcom for Power Quality Improvement
A Voltage Controlled Dstatcom for Power Quality ImprovementA Voltage Controlled Dstatcom for Power Quality Improvement
A Voltage Controlled Dstatcom for Power Quality Improvement
 
E010612734
E010612734E010612734
E010612734
 
EE 6005 power quality unit I
EE 6005 power quality unit  IEE 6005 power quality unit  I
EE 6005 power quality unit I
 
An Overview of Power Quality
An Overview of Power QualityAn Overview of Power Quality
An Overview of Power Quality
 
An Overview Of Power Quality
An Overview Of Power QualityAn Overview Of Power Quality
An Overview Of Power Quality
 
UG POWER QUALITY (EE2028) ppt
UG POWER QUALITY (EE2028) pptUG POWER QUALITY (EE2028) ppt
UG POWER QUALITY (EE2028) ppt
 
Power quality notes unit 1
Power quality notes unit  1 Power quality notes unit  1
Power quality notes unit 1
 
Dynamic Voltage Regulator
Dynamic Voltage RegulatorDynamic Voltage Regulator
Dynamic Voltage Regulator
 
IRJET- Study on Power Quality Problem and its Mitigation Techniques in Electr...
IRJET- Study on Power Quality Problem and its Mitigation Techniques in Electr...IRJET- Study on Power Quality Problem and its Mitigation Techniques in Electr...
IRJET- Study on Power Quality Problem and its Mitigation Techniques in Electr...
 
Powerqualityppt kuldeep
Powerqualityppt kuldeepPowerqualityppt kuldeep
Powerqualityppt kuldeep
 

Plus de Uday Wankar

Optimization Shuffled Frog Leaping Algorithm
Optimization Shuffled Frog Leaping AlgorithmOptimization Shuffled Frog Leaping Algorithm
Optimization Shuffled Frog Leaping Algorithm
Uday Wankar
 
Optimization technique genetic algorithm
Optimization technique genetic algorithmOptimization technique genetic algorithm
Optimization technique genetic algorithm
Uday Wankar
 
Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control
Uday Wankar
 
Hybrid power generation by solar –wind
Hybrid power generation by solar –windHybrid power generation by solar –wind
Hybrid power generation by solar –wind
Uday Wankar
 
Hybrid power generation by and solar –wind
Hybrid power generation by and solar –windHybrid power generation by and solar –wind
Hybrid power generation by and solar –wind
Uday Wankar
 

Plus de Uday Wankar (20)

TEACHING AND LEARNING BASED OPTIMISATION
TEACHING AND LEARNING BASED OPTIMISATIONTEACHING AND LEARNING BASED OPTIMISATION
TEACHING AND LEARNING BASED OPTIMISATION
 
Optimization Simulated Annealing
Optimization Simulated AnnealingOptimization Simulated Annealing
Optimization Simulated Annealing
 
Optimization Shuffled Frog Leaping Algorithm
Optimization Shuffled Frog Leaping AlgorithmOptimization Shuffled Frog Leaping Algorithm
Optimization Shuffled Frog Leaping Algorithm
 
Optimization technique genetic algorithm
Optimization technique genetic algorithmOptimization technique genetic algorithm
Optimization technique genetic algorithm
 
Optimization Technique Harmony Search
Optimization Technique Harmony Search Optimization Technique Harmony Search
Optimization Technique Harmony Search
 
Optimization by Ant Colony Method
Optimization by Ant Colony MethodOptimization by Ant Colony Method
Optimization by Ant Colony Method
 
Gas turbine engine
Gas turbine engineGas turbine engine
Gas turbine engine
 
Gas turbine engine
Gas turbine engineGas turbine engine
Gas turbine engine
 
Rewinding a brushless motor
Rewinding a brushless motorRewinding a brushless motor
Rewinding a brushless motor
 
Rewinding a bldc motor
Rewinding a bldc motorRewinding a bldc motor
Rewinding a bldc motor
 
Persistence of Vision Display
Persistence of Vision DisplayPersistence of Vision Display
Persistence of Vision Display
 
Arm cortex (lpc 2148) based motor speed
Arm cortex (lpc 2148) based motor speedArm cortex (lpc 2148) based motor speed
Arm cortex (lpc 2148) based motor speed
 
Arm Processor Based Speed Control Of BLDC Motor
Arm Processor Based Speed Control Of BLDC MotorArm Processor Based Speed Control Of BLDC Motor
Arm Processor Based Speed Control Of BLDC Motor
 
Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control
 
Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control Arm cortex ( lpc 2148 ) based motor speed control
Arm cortex ( lpc 2148 ) based motor speed control
 
CSTPS training REPORT
CSTPS training REPORTCSTPS training REPORT
CSTPS training REPORT
 
Hybrid power generation by solar –wind
Hybrid power generation by solar –windHybrid power generation by solar –wind
Hybrid power generation by solar –wind
 
Hybrid power generation by and solar –wind
Hybrid power generation by and solar –windHybrid power generation by and solar –wind
Hybrid power generation by and solar –wind
 
Grid solving robot
Grid solving robotGrid solving robot
Grid solving robot
 
A PROJECT REPORT ON BGPPL BALARPUR
A PROJECT REPORT ON BGPPL BALARPURA PROJECT REPORT ON BGPPL BALARPUR
A PROJECT REPORT ON BGPPL BALARPUR
 

Dernier

Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Kandungan 087776558899
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
mphochane1998
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
Epec Engineered Technologies
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
MayuraD1
 

Dernier (20)

Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech Civil
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Wadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptxWadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptx
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLEGEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.ppt
 
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
NO1 Top No1 Amil Baba In Azad Kashmir, Kashmir Black Magic Specialist Expert ...
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
Introduction to Serverless with AWS Lambda
Introduction to Serverless with AWS LambdaIntroduction to Serverless with AWS Lambda
Introduction to Serverless with AWS Lambda
 

POWER QUALITY IMPROVEMENT

  • 2. INTRODUCTION OF POWER QUALITY  Power Quality is a combination of Voltage profile, Frequency profile, Harmonics contain and reliability of power supply.  The Power Quality is defined as the degree to which the power supply approaches the ideal case of stable, uninterrupted, zero distortion and disturbance free supply.
  • 3.  This presentation represents an overviews of electric power quality with special emphasis on power quality problems.  The adverse impact on utility of customers and their mitigation techniques.  This presentation also deals with serious power quality problems such as voltage distortion due to current harmonics, flicker ,voltage sag and voltage surge..etc  Power quality is related to deliver of “CLEAN” electric power that compile with industry standards.
  • 4. CAUSES OF POOR POWER QUALITY  Variation in voltage magnitude and frequency.  Variation in magnitude can be due to sudden rise or fall of load , outages, repetitive varying loading pattern in rolling mills, power electronic converters, inverters, lightning..etc  Variation in frequency can rise of out of system dynamics or harmonics injection.
  • 5. POWER QUALITY COVERS 1. Reliability :- continuous availability, interruption/breakdown/outage free 2. Parameters:-  Voltage- flicker, swell, sag/dip, unbalance  Frequency- drop or rise  Harmonics contains- SCR, converters, inverters etc.  Transients
  • 6. SOURCES OF POOR POWER QUALITY  Non linear loads  Arcing loads  Switching operation  Reactive loads  Atmospheric condition  Unstable loads  Neighboring unbalance system
  • 7. TYPICAL POWER QUALITY PROBLEMS  Voltage Sags :- A reduction in RMS voltage or current at the power frequency.
  • 8. Voltage Surge:- voltage variation can be positive (higher than normal) or negative (lower than normal)
  • 9.  Transients:- it manifest only as a short duration change in voltage due to switching ON and OFF the loads.  Harmonics:- it is an integer multiple of fundamental frequency in the sine wave of power supply or simply distortion of waveforms.  Lightning:- It produces very high currents, for a short time interval, but enough to cause fires or to destroy microcircuits.
  • 10. IMPACT OF POOR POWER QUALITY  The effect of poor power quality problems has serious implication on the utilities and customers.  Higher losses in transformers, cables .  Neutral wire burning due to third harmonics generated by non linear loads.  Power factor capacitors may punctures.  Energy meters will give faulty readings.  Solid state protective relays may damaged .  Speed drives may shut down.  Motor will increase core and cu losses  Non sinusoidal waveforms will reduce the efficiency of motors.  Electronic computer may loss data due to voltage variation .  Domestics TV and other equipments are affected by the poor quality.
  • 11. SYMPTOMS OF POWER QUALITY PROBLEM  Electronic controlled system that stop unexpectedly  Abnormal failure of electronic systems  Transformer overheating  Motor failing  Power factor capacitors failing  Test results will unreliable
  • 12. TECHNIQUES TO MITIGATE POWER QUALITY PROBLEMS  Compensation techniques can be broadly classified into two main categories:- 1. Passive techniques 2. Active techniques  Passive techniques employ the following devices. * Passive Shunt L-C Filters * Power Factor Correction Capacitors  Active techniques employ the following devices. *PWM Active Filters.
  • 13. SOME OTHER TECHNIQUES  Segregate sensitive loads on separate branch circuits , fed from a separate panel board , fed from a separate feeders  Use of harmonics rated circuit breakers, panel board and transformers.  Use surge and lightning protection.  Oversize phase conductors to minimize voltage drop.  Choose material of superior quality.
  • 14. CONCLUSION The wide spread applications of non-linear power electronics loads increases the poor power quality in the electric systems. This presentation has focused broadly on the utilities and customers in the power system. At the same time, the sources of poor power quality and their mitigations techniques has discussed in brief. The effectives means of compensation through various techniques have also been highlighted.