SlideShare uma empresa Scribd logo
1 de 26
Baixar para ler offline
Small Scale Renewable Energy Systems
           Hands-on Short course
                 July 2012


                University of Gondar
                in collaboration with
Institute for Sustainable Energy, Environment and
                 Economy (ISEEE)
                University of Calgary


                  D. Yeboah
Graduate Student, ISEEE, University of Calgary
Introduction to Photovoltaic (Solar) Cells
Cross-Section of a PV Cell
Solar Panel Configurations
Theory of I-V Characterization




  I-V Curve of PV Cell and Associated Electrical Diagram
Ideal PV Cell
In an ideal cell, the total current I is equal to the current Iℓ generated by the
 photoelectric effect minus the diode current ID, according to the equation:



   Expanding the equation gives:




where
I0 is the saturation current of the diode
q is the elementary charge 1.6x10-19 Coulombs
                                                        Single-Diode Model .
k is a constant of value 1.38x10-23J/K
T is the cell temperature in Kelvin
V is the measured cell voltage that is either produced (power
quadrant) or applied (voltage bias)
n is the diode ideality factor (typically between 1 and 2)
RS and RSH represents the series and shunt resistances respectively
The I-V curve of an illuminated PV cell has the shape as shown below as the
     voltage across the measuring load is swept from zero to VOC, and many
     performance parameters for the cell can be determined from this data.




Short Circuit Current (ISC)
The short circuit current ISC corresponds to the short circuit condition when the
impedance is low and is calculated when the voltage equals 0. I (at V=0) = ISC
ISC occurs at the beginning of the forward-bias sweep and is the maximum current value
in the power quadrant. For an ideal cell, this maximum current value is the total current
produced in the solar cell by photon excitation. ISC = IMAX = Iℓ for forward-bias power
quadrant
Open Circuit Voltage (VOC)
The open circuit voltage (VOC) occurs when there is no current passing through the cell.
V (at I=0) = VOC
VOC is also the maximum voltage difference across the cell for a forward-bias sweep in
the power quadrant. VOC= VMAX for forward-bias power quadrant
Maximum Power (PMAX), Current at PMAX
       (IMP), Voltage at PMAX (VMP)




The power produced by the cell in Watts can be easily calculated along the I-V
sweep by the equation P=IV. At the ISC and VOC points, the power will be zero
 and the maximum value for power will occur between the two. The voltage
    and current at this maximum power point are denoted as VMP and IMP
                                respectively.
Fill Factor
The Fill Factor (FF) is essentially a measure of quality of the
solar cell. It is calculated by comparing the maximum power
to the theoretical power (PT) that would be output at both the
open circuit voltage and short circuit current together.
Efficiency (η)
Efficiency is the ratio of the electrical power output Pout, compared to the
solar power input, Pin, into the PV cell. Pout can be taken to be PMAX since
the solar cell can be operated up to its maximum power output to get the
maximum efficiency.
Temperature Measurement Consideration
  When a PV cell is exposed to higher temperatures, ISC
  increases slightly, while VOC decreases more significantly.




                  Temperature Effect on I-V Curve
Fundamentals of PV
Typical Solar PV Module: 60 cells in series
PV Fundamentals: The Solar
        Module
              But what if we shaded one cell?
PV Fundamentals: The Solar Module
                             0V




Due to the series connection, no current can flow through the module, so it
cannot produce any power!
PV Fundamentals: The Solar Module

           0V

                 Furthermore, there is a reverse bias
                 across the shaded cell due to the voltages
                 produced by the other cells…

                 -44*0.6 = -26.4V



                 +15*0.6 = +9V
PV Fundamentals: The Solar Module

           0V




                 -44*0.6 = -26.4V



                 +15*0.6 = +9V
                 Voltage Across Shaded Cell = -35.4V (Reverse Bias)
PV Fundamentals: The Solar Module

           0V




                 -44*0.6 = -26.4V



                 +15*0.6 = +9V

                 Voltage Across Shaded Cell = -35.4V
                 (Reverse Bias)
                 Multi-crystalline Solar Cell Reverse Bias
                 Breakdown Voltage: -13V
PV Fundamentals: The Solar Module

           0V




                 -44*0.6 = -26.4V



                 +15*0.6 = +9V

                 Voltage Across Shaded Cell = -35.4V
                 (Reverse Bias)
                 Multi-crystalline Solar Cell Reverse Bias
                 Breakdown Voltage: -13V
                  Result: Cell over heats and is
                  damaged (hot spot)!!
PV Fundamentals: The Solar Module




            Solution…
PV Fundamentals: The Solar Module




                   Maximum Reverse Bias: 19*0.6 = 11.4V
                   (OK!)




            Solution… BYPASS DIODES
PV Fundamentals: The Solar Module




                      Normal Operation:

                      Voc = 60*0.6 = 36V
                      Isc = 8A




            Solution… BYPASS DIODES
PV Fundamentals: The Solar Module




                   Partial Shade Operation:

                   Voc = (40*0.6)-0.5 = 23.5V
                   Isc = 8A

                   …we can still get 2/3 of the power
                   out of the module, but the voltage is
                   reduced.

            Solution… BYPASS DIODES
PV Fundamentals: The Solar Module



                      Sub-Modules




            Solution… BYPASS DIODES
Shading : Solutions (Cont.)

Micro-inverters
                                    +

    String of n Modules in Series




    Voc = n*36V

    Where ‘n’ is the number of
    modules
PV Fundamentals: The Solar Array

_                                                               +
                                                                    Voc = n*36V
       String of n Modules in Series
                                                                    Isc = m*8A




                                        m Strings In Parallel
      String of n Modules in Series




        String of n Modules in Series
PV Fundamentals: The Solar Array
_
                                                                 +
                                                                     Voc = n*36V
         String of n Modules in Series
                                                                     Isc = m*8A

                                                                          Inverter




                                         m Strings In Parallel
         String of n Modules in Series
                                                                                   AC Ou

                                                                        Varies the load
                                                                        on the array
                                                                        to operate at
                                                                        the Maximum
         String of n Modules in Series                                  Power Point
                                                                        (MPP)

Mais conteúdo relacionado

Mais procurados

EE452_ClosedLoop Boost Converter
EE452_ClosedLoop Boost ConverterEE452_ClosedLoop Boost Converter
EE452_ClosedLoop Boost Converterki hei chan
 
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTER
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTERCHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTER
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTERshiv kapil
 
Electrical and Electronics Engineering Interview Q & A
Electrical and Electronics Engineering Interview  Q & AElectrical and Electronics Engineering Interview  Q & A
Electrical and Electronics Engineering Interview Q & AMostafizur Rahman
 
2k w free energy device don smith
2k w free energy device   don smith2k w free energy device   don smith
2k w free energy device don smithDilJalaay
 
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV system
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV systemDc-Dc boost converter topologies & MPPT techniques for grid connected PV system
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV systemrameshwar meena
 
Electromechanical energy conversion principles
Electromechanical energy conversion principlesElectromechanical energy conversion principles
Electromechanical energy conversion principlesVijay Raskar
 
Simulation of dcdc converter
Simulation of dcdc converterSimulation of dcdc converter
Simulation of dcdc converterRajesh Pindoriya
 
Three State Switching Boost Converter ppt
Three State Switching Boost Converter pptThree State Switching Boost Converter ppt
Three State Switching Boost Converter pptMamta Bagoria
 
Ee 791 drives lab maual
Ee 791 drives lab maualEe 791 drives lab maual
Ee 791 drives lab maualDivya15121983
 
Closed loop control of boost coverter for a led load connected photovoltaic s...
Closed loop control of boost coverter for a led load connected photovoltaic s...Closed loop control of boost coverter for a led load connected photovoltaic s...
Closed loop control of boost coverter for a led load connected photovoltaic s...Sangeeth Soman
 
How to Make a Bi-Toroid Transformer and Exceed 100 % Efficiency
How to Make a Bi-Toroid Transformer and Exceed 100 % EfficiencyHow to Make a Bi-Toroid Transformer and Exceed 100 % Efficiency
How to Make a Bi-Toroid Transformer and Exceed 100 % EfficiencyThane Heins
 

Mais procurados (20)

POWER POINT TRACKING
POWER POINT TRACKINGPOWER POINT TRACKING
POWER POINT TRACKING
 
EE452_ClosedLoop Boost Converter
EE452_ClosedLoop Boost ConverterEE452_ClosedLoop Boost Converter
EE452_ClosedLoop Boost Converter
 
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTER
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTERCHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTER
CHANGING OF BATTERY FROM SOLAR SUPPLY USING BOOST CONVERTER
 
Electrical and Electronics Engineering Interview Q & A
Electrical and Electronics Engineering Interview  Q & AElectrical and Electronics Engineering Interview  Q & A
Electrical and Electronics Engineering Interview Q & A
 
2k w free energy device don smith
2k w free energy device   don smith2k w free energy device   don smith
2k w free energy device don smith
 
Boost converter
Boost converterBoost converter
Boost converter
 
C.c esa
C.c esaC.c esa
C.c esa
 
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV system
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV systemDc-Dc boost converter topologies & MPPT techniques for grid connected PV system
Dc-Dc boost converter topologies & MPPT techniques for grid connected PV system
 
solar cell
solar cellsolar cell
solar cell
 
Electromechanical energy conversion principles
Electromechanical energy conversion principlesElectromechanical energy conversion principles
Electromechanical energy conversion principles
 
Simulation of dcdc converter
Simulation of dcdc converterSimulation of dcdc converter
Simulation of dcdc converter
 
Three State Switching Boost Converter ppt
Three State Switching Boost Converter pptThree State Switching Boost Converter ppt
Three State Switching Boost Converter ppt
 
Ee 791 drives lab maual
Ee 791 drives lab maualEe 791 drives lab maual
Ee 791 drives lab maual
 
Alexander ch13final r1
Alexander ch13final r1Alexander ch13final r1
Alexander ch13final r1
 
Closed loop control of boost coverter for a led load connected photovoltaic s...
Closed loop control of boost coverter for a led load connected photovoltaic s...Closed loop control of boost coverter for a led load connected photovoltaic s...
Closed loop control of boost coverter for a led load connected photovoltaic s...
 
How to Make a Bi-Toroid Transformer and Exceed 100 % Efficiency
How to Make a Bi-Toroid Transformer and Exceed 100 % EfficiencyHow to Make a Bi-Toroid Transformer and Exceed 100 % Efficiency
How to Make a Bi-Toroid Transformer and Exceed 100 % Efficiency
 
3phase circuits
3phase circuits3phase circuits
3phase circuits
 
study of a DC-DC converter for solar LED street lighting
study of a DC-DC converter for solar LED street lightingstudy of a DC-DC converter for solar LED street lighting
study of a DC-DC converter for solar LED street lighting
 
N1103048593
N1103048593N1103048593
N1103048593
 
Electrical Machines-1
Electrical Machines-1Electrical Machines-1
Electrical Machines-1
 

Semelhante a Douglas yeboah solar shading and its effects

Simulation Model for PV Array & Its Characteristics
Simulation Model for PV Array & Its CharacteristicsSimulation Model for PV Array & Its Characteristics
Simulation Model for PV Array & Its CharacteristicsIJEEE
 
Simulation of grid connected photovoltaic system using MATLAB/ Simulink
Simulation of grid connected photovoltaic system using MATLAB/ SimulinkSimulation of grid connected photovoltaic system using MATLAB/ Simulink
Simulation of grid connected photovoltaic system using MATLAB/ SimulinkIJAEMSJORNAL
 
Mathematical modeling and simulation of solar panel
Mathematical modeling and simulation of solar panelMathematical modeling and simulation of solar panel
Mathematical modeling and simulation of solar panelSomu Gupta
 
RENEWABLE SOLAR ENERGY solarenergypartII.ppt
RENEWABLE SOLAR ENERGY solarenergypartII.pptRENEWABLE SOLAR ENERGY solarenergypartII.ppt
RENEWABLE SOLAR ENERGY solarenergypartII.pptssuserca5764
 
Multilevel Inverters for PV Applications
Multilevel Inverters for PV ApplicationsMultilevel Inverters for PV Applications
Multilevel Inverters for PV ApplicationsEhab Al hamayel
 
A single stage photo voltaic grid-connected inverter using spwm
A single stage photo voltaic grid-connected inverter using spwmA single stage photo voltaic grid-connected inverter using spwm
A single stage photo voltaic grid-connected inverter using spwmSHAIK AMANULLA
 
Res lecture 11 solar pv
Res lecture 11 solar pvRes lecture 11 solar pv
Res lecture 11 solar pvEngr umar
 
PV cell chara.ppt
PV cell chara.pptPV cell chara.ppt
PV cell chara.pptBlessyJoy18
 
6 d electronics 231110
6 d electronics 2311106 d electronics 231110
6 d electronics 231110drgav2005
 
An Intelligent Technique By Using The Method of Constant Coefficient of Short...
An Intelligent Technique By Using The Method of Constant Coefficient of Short...An Intelligent Technique By Using The Method of Constant Coefficient of Short...
An Intelligent Technique By Using The Method of Constant Coefficient of Short...Ali Mahmood
 
Webinar 02 demonstration of pv system design pvsyst
Webinar 02 demonstration of pv system design pvsystWebinar 02 demonstration of pv system design pvsyst
Webinar 02 demonstration of pv system design pvsystsolpowerpeople
 

Semelhante a Douglas yeboah solar shading and its effects (20)

Solar energy
Solar energy Solar energy
Solar energy
 
Simulation Model for PV Array & Its Characteristics
Simulation Model for PV Array & Its CharacteristicsSimulation Model for PV Array & Its Characteristics
Simulation Model for PV Array & Its Characteristics
 
Maximum power point tracking algorithms for solar(pv) systems
Maximum power point tracking algorithms for solar(pv) systemsMaximum power point tracking algorithms for solar(pv) systems
Maximum power point tracking algorithms for solar(pv) systems
 
Solar photovoltaic
Solar photovoltaicSolar photovoltaic
Solar photovoltaic
 
F1102033540
F1102033540F1102033540
F1102033540
 
Simulation of grid connected photovoltaic system using MATLAB/ Simulink
Simulation of grid connected photovoltaic system using MATLAB/ SimulinkSimulation of grid connected photovoltaic system using MATLAB/ Simulink
Simulation of grid connected photovoltaic system using MATLAB/ Simulink
 
Mathematical modeling and simulation of solar panel
Mathematical modeling and simulation of solar panelMathematical modeling and simulation of solar panel
Mathematical modeling and simulation of solar panel
 
RENEWABLE SOLAR ENERGY solarenergypartII.ppt
RENEWABLE SOLAR ENERGY solarenergypartII.pptRENEWABLE SOLAR ENERGY solarenergypartII.ppt
RENEWABLE SOLAR ENERGY solarenergypartII.ppt
 
Multilevel Inverters for PV Applications
Multilevel Inverters for PV ApplicationsMultilevel Inverters for PV Applications
Multilevel Inverters for PV Applications
 
A single stage photo voltaic grid-connected inverter using spwm
A single stage photo voltaic grid-connected inverter using spwmA single stage photo voltaic grid-connected inverter using spwm
A single stage photo voltaic grid-connected inverter using spwm
 
Res lecture 11 solar pv
Res lecture 11 solar pvRes lecture 11 solar pv
Res lecture 11 solar pv
 
PV cell chara.ppt
PV cell chara.pptPV cell chara.ppt
PV cell chara.ppt
 
1st course
1st course1st course
1st course
 
6 d electronics 231110
6 d electronics 2311106 d electronics 231110
6 d electronics 231110
 
Circuitanly
CircuitanlyCircuitanly
Circuitanly
 
Circuit Theory- (Electronics)
Circuit Theory- (Electronics)Circuit Theory- (Electronics)
Circuit Theory- (Electronics)
 
Voltage
VoltageVoltage
Voltage
 
An Intelligent Technique By Using The Method of Constant Coefficient of Short...
An Intelligent Technique By Using The Method of Constant Coefficient of Short...An Intelligent Technique By Using The Method of Constant Coefficient of Short...
An Intelligent Technique By Using The Method of Constant Coefficient of Short...
 
Webinar 02 demonstration of pv system design pvsyst
Webinar 02 demonstration of pv system design pvsystWebinar 02 demonstration of pv system design pvsyst
Webinar 02 demonstration of pv system design pvsyst
 
Iq2616601665
Iq2616601665Iq2616601665
Iq2616601665
 

Último

Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactPECB
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfJayanti Pande
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityGeoBlogs
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfAdmir Softic
 
An Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfAn Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfSanaAli374401
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxnegromaestrong
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeThiyagu K
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Class 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfClass 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfAyushMahapatra5
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
APM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAPM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAssociation for Project Management
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxVishalSingh1417
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxAreebaZafar22
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxheathfieldcps1
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17Celine George
 
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...Shubhangi Sonawane
 

Último (20)

Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global Impact
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdf
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activity
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
An Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfAn Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdf
 
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
Seal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptxSeal of Good Local Governance (SGLG) 2024Final.pptx
Seal of Good Local Governance (SGLG) 2024Final.pptx
 
Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and Mode
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Class 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfClass 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdf
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
APM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across SectorsAPM Welcome, APM North West Network Conference, Synergies Across Sectors
APM Welcome, APM North West Network Conference, Synergies Across Sectors
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
ICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptxICT Role in 21st Century Education & its Challenges.pptx
ICT Role in 21st Century Education & its Challenges.pptx
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptx
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...
Ecological Succession. ( ECOSYSTEM, B. Pharmacy, 1st Year, Sem-II, Environmen...
 

Douglas yeboah solar shading and its effects

  • 1. Small Scale Renewable Energy Systems Hands-on Short course July 2012 University of Gondar in collaboration with Institute for Sustainable Energy, Environment and Economy (ISEEE) University of Calgary D. Yeboah Graduate Student, ISEEE, University of Calgary
  • 5. Theory of I-V Characterization I-V Curve of PV Cell and Associated Electrical Diagram
  • 6. Ideal PV Cell In an ideal cell, the total current I is equal to the current Iℓ generated by the photoelectric effect minus the diode current ID, according to the equation: Expanding the equation gives: where I0 is the saturation current of the diode q is the elementary charge 1.6x10-19 Coulombs Single-Diode Model . k is a constant of value 1.38x10-23J/K T is the cell temperature in Kelvin V is the measured cell voltage that is either produced (power quadrant) or applied (voltage bias) n is the diode ideality factor (typically between 1 and 2) RS and RSH represents the series and shunt resistances respectively
  • 7. The I-V curve of an illuminated PV cell has the shape as shown below as the voltage across the measuring load is swept from zero to VOC, and many performance parameters for the cell can be determined from this data. Short Circuit Current (ISC) The short circuit current ISC corresponds to the short circuit condition when the impedance is low and is calculated when the voltage equals 0. I (at V=0) = ISC ISC occurs at the beginning of the forward-bias sweep and is the maximum current value in the power quadrant. For an ideal cell, this maximum current value is the total current produced in the solar cell by photon excitation. ISC = IMAX = Iℓ for forward-bias power quadrant Open Circuit Voltage (VOC) The open circuit voltage (VOC) occurs when there is no current passing through the cell. V (at I=0) = VOC VOC is also the maximum voltage difference across the cell for a forward-bias sweep in the power quadrant. VOC= VMAX for forward-bias power quadrant
  • 8. Maximum Power (PMAX), Current at PMAX (IMP), Voltage at PMAX (VMP) The power produced by the cell in Watts can be easily calculated along the I-V sweep by the equation P=IV. At the ISC and VOC points, the power will be zero and the maximum value for power will occur between the two. The voltage and current at this maximum power point are denoted as VMP and IMP respectively.
  • 9. Fill Factor The Fill Factor (FF) is essentially a measure of quality of the solar cell. It is calculated by comparing the maximum power to the theoretical power (PT) that would be output at both the open circuit voltage and short circuit current together.
  • 10. Efficiency (η) Efficiency is the ratio of the electrical power output Pout, compared to the solar power input, Pin, into the PV cell. Pout can be taken to be PMAX since the solar cell can be operated up to its maximum power output to get the maximum efficiency.
  • 11. Temperature Measurement Consideration When a PV cell is exposed to higher temperatures, ISC increases slightly, while VOC decreases more significantly. Temperature Effect on I-V Curve
  • 12. Fundamentals of PV Typical Solar PV Module: 60 cells in series
  • 13. PV Fundamentals: The Solar Module But what if we shaded one cell?
  • 14. PV Fundamentals: The Solar Module 0V Due to the series connection, no current can flow through the module, so it cannot produce any power!
  • 15. PV Fundamentals: The Solar Module 0V Furthermore, there is a reverse bias across the shaded cell due to the voltages produced by the other cells… -44*0.6 = -26.4V +15*0.6 = +9V
  • 16. PV Fundamentals: The Solar Module 0V -44*0.6 = -26.4V +15*0.6 = +9V Voltage Across Shaded Cell = -35.4V (Reverse Bias)
  • 17. PV Fundamentals: The Solar Module 0V -44*0.6 = -26.4V +15*0.6 = +9V Voltage Across Shaded Cell = -35.4V (Reverse Bias) Multi-crystalline Solar Cell Reverse Bias Breakdown Voltage: -13V
  • 18. PV Fundamentals: The Solar Module 0V -44*0.6 = -26.4V +15*0.6 = +9V Voltage Across Shaded Cell = -35.4V (Reverse Bias) Multi-crystalline Solar Cell Reverse Bias Breakdown Voltage: -13V Result: Cell over heats and is damaged (hot spot)!!
  • 19. PV Fundamentals: The Solar Module Solution…
  • 20. PV Fundamentals: The Solar Module Maximum Reverse Bias: 19*0.6 = 11.4V (OK!) Solution… BYPASS DIODES
  • 21. PV Fundamentals: The Solar Module Normal Operation: Voc = 60*0.6 = 36V Isc = 8A Solution… BYPASS DIODES
  • 22. PV Fundamentals: The Solar Module Partial Shade Operation: Voc = (40*0.6)-0.5 = 23.5V Isc = 8A …we can still get 2/3 of the power out of the module, but the voltage is reduced. Solution… BYPASS DIODES
  • 23. PV Fundamentals: The Solar Module Sub-Modules Solution… BYPASS DIODES
  • 24. Shading : Solutions (Cont.) Micro-inverters + String of n Modules in Series Voc = n*36V Where ‘n’ is the number of modules
  • 25. PV Fundamentals: The Solar Array _ + Voc = n*36V String of n Modules in Series Isc = m*8A m Strings In Parallel String of n Modules in Series String of n Modules in Series
  • 26. PV Fundamentals: The Solar Array _ + Voc = n*36V String of n Modules in Series Isc = m*8A Inverter m Strings In Parallel String of n Modules in Series AC Ou Varies the load on the array to operate at the Maximum String of n Modules in Series Power Point (MPP)