SlideShare a Scribd company logo
1 of 24
Download to read offline
Power System Analysis
Presented By: Engr. FAZAL UR REHMAN
Lecturer Electrical KPTEVTA
Visiting Lecturer COMWAVE INSTITUTE ISLAMABAD
Course Objectives
 This course is focused on
 Generalized Circuit Constants
 Representation of Power System
 Symmetrical Three Phase Faults
 Symmetrical Components
 Unsymmetrical Faults and
 Power System Stability.
Today's Topics
Generalized Circuit Constants
 General Circuit Equation
 Generalized Constants of simple network
 Constants of combined network
General Circuit Equation
 In any four terminal network, the input voltage and
input current can be expressed in terms of output
voltage and output current.
 Incidentally, a Circuit Constants of a Transmission
Line is a 4-terminal network ; two input terminals
where power enters the network and two output
terminals where power leaves the network.
 Therefore, the input voltage (VS) and input current (IS)
of a 3-phase Circuit Constants of a Transmission Line
can be expressed as :
 A,B,C and D (generally complex numbers) are the
constants, known as Generalised Circuit
Constants of the transmission line.
 The values of these constants depend upon the
particular method adopted for solving a Circuit
Constants of a Transmission Line.
 Once the values of these constants are known,
performance calculations of the line can be easily
worked out.
 The constants A,B,C and D are generally complex
numbers.
 The constants A and D are dimensionless whereas
the dimensions of B and C are ohms and Siemens
respectively.
 For a given transmission line,
 For a given transmission line,
Generalized Constants of simple
network
 As stated previously, the sending end voltage (VS) and
sending end current (IS) of a transmission line can be
expressed as :
 The values of these constants A, B, C and D can be found
for simple networks as follows;
 Simple Series
Impedance Circuit
 Comparing with standard equations we get;
Experimental Determination
 Simple Parallel Admittance Circuit
Vs = Vr + 0 * Ir
And
Is = Yp Vr + Ir
Comparing with equation 1 and 2. we get;
A = 1, B= 0, C= Yp and D= 1
Constants of combined network
 Medium lines — Nominal T method. In this
method, the whole line to neutral capacitance is
assumed to be concentrated at the middle point of the
line and half the line resistance and reactance are
lumped on either side as shown in Fig. 10.24.
 Substituting the value of V1 in eq. (v), we get,
 Substituting the value of IS, we get,
 Comparing eqs. (vii) and (vi) with those of (i) and (ii),
we have,
 Medium lines—Nominal π method. In this
method, line-to-neutral capacitance is divided into
two halves ; one half being concentrated at
the load end and the other half at the sending end as
shown in Fig. 10.25.
 Putting the value of VS from eq. (x), we get,
 Comparing equations (x) and (xi) with those of (i) and
(ii), we get,
 Long lines—Rigorous method. By rigorous method,
the sending end voltage and current of a long Circuit
Constants of a Transmission Line are given by :
 Comparing these equations with those of (i) and (ii),
we get,

More Related Content

What's hot

Power flow solution
Power flow solutionPower flow solution
Power flow solutionBalaram Das
 
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3Raghvendra Tiwari
 
Three phase delta connection
Three phase delta connectionThree phase delta connection
Three phase delta connectionMayur Ekhande
 
Elect principles 2 three phase systems
Elect principles 2   three phase systemsElect principles 2   three phase systems
Elect principles 2 three phase systemssdacey
 
FAULT ANALYSIS AND FAULT MATRIX DEVELOPMENT
FAULT ANALYSIS  AND  FAULT MATRIX DEVELOPMENTFAULT ANALYSIS  AND  FAULT MATRIX DEVELOPMENT
FAULT ANALYSIS AND FAULT MATRIX DEVELOPMENTKaransinh Parmar
 
Star delta transformation
Star delta transformation Star delta transformation
Star delta transformation Nishant Katara
 
Three phase to six phase..
Three phase to six phase..Three phase to six phase..
Three phase to six phase..Sudha Raj
 
Exp 3 (1)3. To Formulate YBUS Matrix By Singular Transformation.
Exp 3 (1)3.	To Formulate YBUS Matrix By Singular Transformation.Exp 3 (1)3.	To Formulate YBUS Matrix By Singular Transformation.
Exp 3 (1)3. To Formulate YBUS Matrix By Singular Transformation.Shweta Yadav
 
1.6 three phase power measurement
1.6 three phase power measurement1.6 three phase power measurement
1.6 three phase power measurementW3Edify
 
Dynamic Power Factor Correction in a Non Linear Environment
Dynamic Power Factor Correction in a Non Linear EnvironmentDynamic Power Factor Correction in a Non Linear Environment
Dynamic Power Factor Correction in a Non Linear Environmentiosrjce
 
Power System Simulation Laboratory Manual
Power System Simulation Laboratory Manual Power System Simulation Laboratory Manual
Power System Simulation Laboratory Manual Santhosh Kumar
 
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase Sup...
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase  Sup...Modeling Of Converter “Single Phase to Three Phase by Using Single Phase  Sup...
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase Sup...IJMER
 
Answer assigment stabilitas & control
Answer assigment stabilitas & controlAnswer assigment stabilitas & control
Answer assigment stabilitas & controlsuparman unkhair
 

What's hot (19)

Power flow through transmission line.
Power flow through transmission line.Power flow through transmission line.
Power flow through transmission line.
 
Wye delta transformations
Wye delta transformationsWye delta transformations
Wye delta transformations
 
Power flow solution
Power flow solutionPower flow solution
Power flow solution
 
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3
Powerpoint slides to_chapter_12_three_phase_circuits_and_systems-corrected3
 
Three phase delta connection
Three phase delta connectionThree phase delta connection
Three phase delta connection
 
Load flow studies
Load flow studiesLoad flow studies
Load flow studies
 
Elect principles 2 three phase systems
Elect principles 2   three phase systemsElect principles 2   three phase systems
Elect principles 2 three phase systems
 
FAULT ANALYSIS AND FAULT MATRIX DEVELOPMENT
FAULT ANALYSIS  AND  FAULT MATRIX DEVELOPMENTFAULT ANALYSIS  AND  FAULT MATRIX DEVELOPMENT
FAULT ANALYSIS AND FAULT MATRIX DEVELOPMENT
 
Star delta transformation
Star delta transformation Star delta transformation
Star delta transformation
 
Pdf star delta stater
Pdf star delta staterPdf star delta stater
Pdf star delta stater
 
Three phase to six phase..
Three phase to six phase..Three phase to six phase..
Three phase to six phase..
 
Exp 3 (1)3. To Formulate YBUS Matrix By Singular Transformation.
Exp 3 (1)3.	To Formulate YBUS Matrix By Singular Transformation.Exp 3 (1)3.	To Formulate YBUS Matrix By Singular Transformation.
Exp 3 (1)3. To Formulate YBUS Matrix By Singular Transformation.
 
1.6 three phase power measurement
1.6 three phase power measurement1.6 three phase power measurement
1.6 three phase power measurement
 
3-phase circuit
3-phase circuit3-phase circuit
3-phase circuit
 
Dynamic Power Factor Correction in a Non Linear Environment
Dynamic Power Factor Correction in a Non Linear EnvironmentDynamic Power Factor Correction in a Non Linear Environment
Dynamic Power Factor Correction in a Non Linear Environment
 
Power System Simulation Laboratory Manual
Power System Simulation Laboratory Manual Power System Simulation Laboratory Manual
Power System Simulation Laboratory Manual
 
EE6501 - Power System Analysis
EE6501 - Power System AnalysisEE6501 - Power System Analysis
EE6501 - Power System Analysis
 
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase Sup...
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase  Sup...Modeling Of Converter “Single Phase to Three Phase by Using Single Phase  Sup...
Modeling Of Converter “Single Phase to Three Phase by Using Single Phase Sup...
 
Answer assigment stabilitas & control
Answer assigment stabilitas & controlAnswer assigment stabilitas & control
Answer assigment stabilitas & control
 

Similar to Lecture no 1 power system analysis elc353 et313 converted

Electrical transmission line
Electrical transmission lineElectrical transmission line
Electrical transmission lineDhananjay Jha
 
Phase angles as a proxy for voltage stability
Phase angles as a proxy for voltage stabilityPhase angles as a proxy for voltage stability
Phase angles as a proxy for voltage stabilityPower System Operation
 
Chapter 3 transmission line performance
Chapter 3  transmission line performanceChapter 3  transmission line performance
Chapter 3 transmission line performancefiraoltemesgen1
 
153010010 mohammad babor
153010010  mohammad  babor153010010  mohammad  babor
153010010 mohammad baborBabor10
 
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) ijceronline
 
lecture note AC fundamental LESSON 2.pptx
lecture note AC fundamental LESSON 2.pptxlecture note AC fundamental LESSON 2.pptx
lecture note AC fundamental LESSON 2.pptxkifle203
 
CH-3 Introduction to power point materials.pptx
CH-3 Introduction to power point materials.pptxCH-3 Introduction to power point materials.pptx
CH-3 Introduction to power point materials.pptxGetahunShankoKefeni
 
Representation of short & medium transmission lines
Representation of short & medium transmission linesRepresentation of short & medium transmission lines
Representation of short & medium transmission linesvishalgohel12195
 
representation-of-transmission-lines.pdf
representation-of-transmission-lines.pdfrepresentation-of-transmission-lines.pdf
representation-of-transmission-lines.pdfchauhangopal7354
 
L 3,t-1,eee, 2018-2019
L 3,t-1,eee, 2018-2019L 3,t-1,eee, 2018-2019
L 3,t-1,eee, 2018-2019TamimAhmed43
 
short transmission line
short transmission lineshort transmission line
short transmission lineMohil Shah
 
Symmetrical components in transient regime
Symmetrical components in transient regimeSymmetrical components in transient regime
Symmetrical components in transient regimegaonioni
 
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOM
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOMDistance Algorithm for Transmission Line with Mid-Point Connected STATCOM
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOMIRJET Journal
 
Improved dynamic response of dstatcom using genetic algorithm
Improved dynamic response of dstatcom using genetic algorithmImproved dynamic response of dstatcom using genetic algorithm
Improved dynamic response of dstatcom using genetic algorithmAlexander Decker
 
Performance Improvement of the Radial Distribution System by using Switched C...
Performance Improvement of the Radial Distribution System by using Switched C...Performance Improvement of the Radial Distribution System by using Switched C...
Performance Improvement of the Radial Distribution System by using Switched C...idescitation
 

Similar to Lecture no 1 power system analysis elc353 et313 converted (20)

Electrical transmission line
Electrical transmission lineElectrical transmission line
Electrical transmission line
 
Tranp.pptx
Tranp.pptxTranp.pptx
Tranp.pptx
 
Phase angles as a proxy for voltage stability
Phase angles as a proxy for voltage stabilityPhase angles as a proxy for voltage stability
Phase angles as a proxy for voltage stability
 
Circuit Theory- (Electronics)
Circuit Theory- (Electronics)Circuit Theory- (Electronics)
Circuit Theory- (Electronics)
 
Chapter 3 transmission line performance
Chapter 3  transmission line performanceChapter 3  transmission line performance
Chapter 3 transmission line performance
 
H010615159
H010615159H010615159
H010615159
 
153010010 mohammad babor
153010010  mohammad  babor153010010  mohammad  babor
153010010 mohammad babor
 
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)
 
lecture note AC fundamental LESSON 2.pptx
lecture note AC fundamental LESSON 2.pptxlecture note AC fundamental LESSON 2.pptx
lecture note AC fundamental LESSON 2.pptx
 
CH-3 Introduction to power point materials.pptx
CH-3 Introduction to power point materials.pptxCH-3 Introduction to power point materials.pptx
CH-3 Introduction to power point materials.pptx
 
A PWM Strategies for Diode Assisted NPC-MLI to Obtain Maximum Voltage Gain fo...
A PWM Strategies for Diode Assisted NPC-MLI to Obtain Maximum Voltage Gain fo...A PWM Strategies for Diode Assisted NPC-MLI to Obtain Maximum Voltage Gain fo...
A PWM Strategies for Diode Assisted NPC-MLI to Obtain Maximum Voltage Gain fo...
 
Representation of short & medium transmission lines
Representation of short & medium transmission linesRepresentation of short & medium transmission lines
Representation of short & medium transmission lines
 
representation-of-transmission-lines.pdf
representation-of-transmission-lines.pdfrepresentation-of-transmission-lines.pdf
representation-of-transmission-lines.pdf
 
L 3,t-1,eee, 2018-2019
L 3,t-1,eee, 2018-2019L 3,t-1,eee, 2018-2019
L 3,t-1,eee, 2018-2019
 
short transmission line
short transmission lineshort transmission line
short transmission line
 
Symmetrical components in transient regime
Symmetrical components in transient regimeSymmetrical components in transient regime
Symmetrical components in transient regime
 
W044151159
W044151159W044151159
W044151159
 
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOM
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOMDistance Algorithm for Transmission Line with Mid-Point Connected STATCOM
Distance Algorithm for Transmission Line with Mid-Point Connected STATCOM
 
Improved dynamic response of dstatcom using genetic algorithm
Improved dynamic response of dstatcom using genetic algorithmImproved dynamic response of dstatcom using genetic algorithm
Improved dynamic response of dstatcom using genetic algorithm
 
Performance Improvement of the Radial Distribution System by using Switched C...
Performance Improvement of the Radial Distribution System by using Switched C...Performance Improvement of the Radial Distribution System by using Switched C...
Performance Improvement of the Radial Distribution System by using Switched C...
 

More from Fazal Ur Rehman

Lecture no 5. instrumentations and measurement
Lecture no 5. instrumentations and measurementLecture no 5. instrumentations and measurement
Lecture no 5. instrumentations and measurementFazal Ur Rehman
 
Lecture no 4. instrumentations and measurement
Lecture no 4. instrumentations and measurementLecture no 4. instrumentations and measurement
Lecture no 4. instrumentations and measurementFazal Ur Rehman
 
Lecture no 3. instrumentations and measurement
Lecture no 3. instrumentations and measurementLecture no 3. instrumentations and measurement
Lecture no 3. instrumentations and measurementFazal Ur Rehman
 
Lecture no 3 switchgears bt255
Lecture no 3 switchgears bt255Lecture no 3 switchgears bt255
Lecture no 3 switchgears bt255Fazal Ur Rehman
 
Lecture no 4 power system analysis elc353 et313
Lecture no 4 power system analysis elc353 et313Lecture no 4 power system analysis elc353 et313
Lecture no 4 power system analysis elc353 et313Fazal Ur Rehman
 
Lecture no 3 power system analysis elc353 et313
Lecture no 3 power system analysis elc353 et313Lecture no 3 power system analysis elc353 et313
Lecture no 3 power system analysis elc353 et313Fazal Ur Rehman
 
Lecture no 2 switchgears bt255 converted
Lecture no 2 switchgears bt255 convertedLecture no 2 switchgears bt255 converted
Lecture no 2 switchgears bt255 convertedFazal Ur Rehman
 
Lecture no 2 power system analysis elc353 et313 converted
Lecture no 2 power system analysis elc353 et313 convertedLecture no 2 power system analysis elc353 et313 converted
Lecture no 2 power system analysis elc353 et313 convertedFazal Ur Rehman
 
Lecture no 2. instrumentations and measurement converted
Lecture no 2. instrumentations and measurement convertedLecture no 2. instrumentations and measurement converted
Lecture no 2. instrumentations and measurement convertedFazal Ur Rehman
 
Lecture no 1 switchgears bt255 converted
Lecture no 1 switchgears bt255 convertedLecture no 1 switchgears bt255 converted
Lecture no 1 switchgears bt255 convertedFazal Ur Rehman
 
Lecture no 1 instrumentation and measurement elc221 converted
Lecture no 1 instrumentation and measurement elc221 convertedLecture no 1 instrumentation and measurement elc221 converted
Lecture no 1 instrumentation and measurement elc221 convertedFazal Ur Rehman
 
Maximum power transfer theorem
Maximum power transfer theoremMaximum power transfer theorem
Maximum power transfer theoremFazal Ur Rehman
 

More from Fazal Ur Rehman (13)

Lecture no 5. instrumentations and measurement
Lecture no 5. instrumentations and measurementLecture no 5. instrumentations and measurement
Lecture no 5. instrumentations and measurement
 
Lecture no 4. instrumentations and measurement
Lecture no 4. instrumentations and measurementLecture no 4. instrumentations and measurement
Lecture no 4. instrumentations and measurement
 
Lecture no 3. instrumentations and measurement
Lecture no 3. instrumentations and measurementLecture no 3. instrumentations and measurement
Lecture no 3. instrumentations and measurement
 
Lecture no 3 switchgears bt255
Lecture no 3 switchgears bt255Lecture no 3 switchgears bt255
Lecture no 3 switchgears bt255
 
Lecture no 4 power system analysis elc353 et313
Lecture no 4 power system analysis elc353 et313Lecture no 4 power system analysis elc353 et313
Lecture no 4 power system analysis elc353 et313
 
Lecture no 3 power system analysis elc353 et313
Lecture no 3 power system analysis elc353 et313Lecture no 3 power system analysis elc353 et313
Lecture no 3 power system analysis elc353 et313
 
Lecture no 2 switchgears bt255 converted
Lecture no 2 switchgears bt255 convertedLecture no 2 switchgears bt255 converted
Lecture no 2 switchgears bt255 converted
 
Lecture no 2 power system analysis elc353 et313 converted
Lecture no 2 power system analysis elc353 et313 convertedLecture no 2 power system analysis elc353 et313 converted
Lecture no 2 power system analysis elc353 et313 converted
 
Lecture no 2. instrumentations and measurement converted
Lecture no 2. instrumentations and measurement convertedLecture no 2. instrumentations and measurement converted
Lecture no 2. instrumentations and measurement converted
 
Lecture no 1 switchgears bt255 converted
Lecture no 1 switchgears bt255 convertedLecture no 1 switchgears bt255 converted
Lecture no 1 switchgears bt255 converted
 
Lecture no 1 instrumentation and measurement elc221 converted
Lecture no 1 instrumentation and measurement elc221 convertedLecture no 1 instrumentation and measurement elc221 converted
Lecture no 1 instrumentation and measurement elc221 converted
 
Superposition theorem
Superposition theoremSuperposition theorem
Superposition theorem
 
Maximum power transfer theorem
Maximum power transfer theoremMaximum power transfer theorem
Maximum power transfer theorem
 

Recently uploaded

School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdfKamal Acharya
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . pptDineshKumar4165
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...drmkjayanthikannan
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXssuser89054b
 
UNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptxUNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptxkalpana413121
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startQuintin Balsdon
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 
Computer Graphics Introduction To Curves
Computer Graphics Introduction To CurvesComputer Graphics Introduction To Curves
Computer Graphics Introduction To CurvesChandrakantDivate1
 
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesLinux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesRashidFaridChishti
 
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 PlayEpec Engineered Technologies
 
Introduction to Data Visualization,Matplotlib.pdf
Introduction to Data Visualization,Matplotlib.pdfIntroduction to Data Visualization,Matplotlib.pdf
Introduction to Data Visualization,Matplotlib.pdfsumitt6_25730773
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Servicemeghakumariji156
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network DevicesChandrakantDivate1
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdfKamal Acharya
 
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 propertiessarkmank1
 
fitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .pptfitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .pptAfnanAhmad53
 
Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...ppkakm
 

Recently uploaded (20)

School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdf
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 
Signal Processing and Linear System Analysis
Signal Processing and Linear System AnalysisSignal Processing and Linear System Analysis
Signal Processing and Linear System Analysis
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
Call Girls in South Ex (delhi) call me [🔝9953056974🔝] escort service 24X7
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 
UNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptxUNIT 4 PTRP final Convergence in probability.pptx
UNIT 4 PTRP final Convergence in probability.pptx
 
Design For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the startDesign For Accessibility: Getting it right from the start
Design For Accessibility: Getting it right from the start
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Computer Graphics Introduction To Curves
Computer Graphics Introduction To CurvesComputer Graphics Introduction To Curves
Computer Graphics Introduction To Curves
 
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using PipesLinux Systems Programming: Inter Process Communication (IPC) using Pipes
Linux Systems Programming: Inter Process Communication (IPC) using Pipes
 
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
 
Introduction to Data Visualization,Matplotlib.pdf
Introduction to Data Visualization,Matplotlib.pdfIntroduction to Data Visualization,Matplotlib.pdf
Introduction to Data Visualization,Matplotlib.pdf
 
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best ServiceTamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
Tamil Call Girls Bhayandar WhatsApp +91-9930687706, Best Service
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
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
 
fitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .pptfitting shop and tools used in fitting shop .ppt
fitting shop and tools used in fitting shop .ppt
 
Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...Basic Electronics for diploma students as per technical education Kerala Syll...
Basic Electronics for diploma students as per technical education Kerala Syll...
 

Lecture no 1 power system analysis elc353 et313 converted

  • 1. Power System Analysis Presented By: Engr. FAZAL UR REHMAN Lecturer Electrical KPTEVTA Visiting Lecturer COMWAVE INSTITUTE ISLAMABAD
  • 2. Course Objectives  This course is focused on  Generalized Circuit Constants  Representation of Power System  Symmetrical Three Phase Faults  Symmetrical Components  Unsymmetrical Faults and  Power System Stability.
  • 3. Today's Topics Generalized Circuit Constants  General Circuit Equation  Generalized Constants of simple network  Constants of combined network
  • 4. General Circuit Equation  In any four terminal network, the input voltage and input current can be expressed in terms of output voltage and output current.  Incidentally, a Circuit Constants of a Transmission Line is a 4-terminal network ; two input terminals where power enters the network and two output terminals where power leaves the network.  Therefore, the input voltage (VS) and input current (IS) of a 3-phase Circuit Constants of a Transmission Line can be expressed as :
  • 5.
  • 6.  A,B,C and D (generally complex numbers) are the constants, known as Generalised Circuit Constants of the transmission line.  The values of these constants depend upon the particular method adopted for solving a Circuit Constants of a Transmission Line.  Once the values of these constants are known, performance calculations of the line can be easily worked out.
  • 7.  The constants A,B,C and D are generally complex numbers.  The constants A and D are dimensionless whereas the dimensions of B and C are ohms and Siemens respectively.  For a given transmission line,  For a given transmission line,
  • 8. Generalized Constants of simple network  As stated previously, the sending end voltage (VS) and sending end current (IS) of a transmission line can be expressed as :  The values of these constants A, B, C and D can be found for simple networks as follows;
  • 9.  Simple Series Impedance Circuit  Comparing with standard equations we get;
  • 11.
  • 12.  Simple Parallel Admittance Circuit Vs = Vr + 0 * Ir And Is = Yp Vr + Ir Comparing with equation 1 and 2. we get; A = 1, B= 0, C= Yp and D= 1
  • 14.
  • 15.
  • 16.  Medium lines — Nominal T method. In this method, the whole line to neutral capacitance is assumed to be concentrated at the middle point of the line and half the line resistance and reactance are lumped on either side as shown in Fig. 10.24.
  • 17.
  • 18.  Substituting the value of V1 in eq. (v), we get,  Substituting the value of IS, we get,
  • 19.  Comparing eqs. (vii) and (vi) with those of (i) and (ii), we have,
  • 20.  Medium lines—Nominal π method. In this method, line-to-neutral capacitance is divided into two halves ; one half being concentrated at the load end and the other half at the sending end as shown in Fig. 10.25.
  • 21.
  • 22.  Putting the value of VS from eq. (x), we get,
  • 23.  Comparing equations (x) and (xi) with those of (i) and (ii), we get,
  • 24.  Long lines—Rigorous method. By rigorous method, the sending end voltage and current of a long Circuit Constants of a Transmission Line are given by :  Comparing these equations with those of (i) and (ii), we get,