SlideShare a Scribd company logo
1 of 6
Stand alone Solar PV System
design
Solar PV design Modules: Design of 1KW stand alone SPV system: Calculation of Load,
Size of battery bank, Array Size, Distance between Modules in Array formation,
Costing, Grid Interactive PV System: Export of PV power to grid, Grid Interactive
Inverter, Islanding, reverse power flow, Surge protection, Wire sizes and voltage
ratings, AC modules
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 1
Stand Alone PV System Design
A. Load Estimation
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 2
A1 Inverter Efficiency 90% A2 Battery Bias Voltage 12 V Inverter AC Voltage 220 V
Appliances
Rating
(Watt)
Qty
Net Rated
Wattage
Adjustment factor
For dc 1, For ac A1
Adjusted
Wattage
Uses in Hours /day
Energy
/day (Wh)
A4 A5 A6 = A4/A5 A7 A8=A6*A7
LED Bulb 7 5 35 0.9 38.9 4 155.6
Fans 70 3 210 0.9 233.3 8 1866.4
LED TV 60 1 60 0.9 66.7 8 533.6
refrigerator 45 1 45 0.9 50 8 400
Washing machine 500 1 500 0.9 555.6 0.5 277.8
Laptop 50 1 50 0.9 55.6 2 111.2
A11 Total AC power req. 890 W A12 Total DC power req.989 W A9 Total Energy demand
per day
3244.6
Wh
A10 Total amp-hour demand per day (A9/A2) 270.4 Ah
Stand Alone PV System Design
B. Battery Sizing
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 3
Location Lucknow Lattitude 26.80 N Design temperature 25 degrees C / 77 degrees F
B1 Days of storage desired / required (autonomy) 3
B2 Allowable Depth of Discharge (DoD) limit 0.8
B3 Required battery Capacity (A10 x B1/B2) 1014 Ah
B4 capacity of selected 12 V battery ( Exide FIP0-IP150..(150Ah) Price 10100) 150 Ah
B5 Number of batteries in parallel (B3 / B4) 7
B6 Total battery amp-hour capacity (B5xB4) 1050 Ah
B7 Total battery kilowatt-hour capacity (B6xA2/1000) 12.6 KWh
B10 Average daily depth of discharge (.75xA10/B6) .19
Stand Alone PV System Design
C. PV Array Sizing
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 4
Design Tilt Lucknow (Latitude+100) 36.80 Design month: February
C1 Total energy demand per day (A9) 3244.6 Wh
C2 Battery round trip efficiency (0.70-0.85) 0.85
C3 Required array output per day (C1 / C2) 3817.2 Wh
C4 Selected PV module max power voltage at STC (18x0.85) 15.3 V
C5 Selected PV module guaranteed power output at STC 100 W
C6 Peek sum hours at design tilt for design month 4.63 hours (Av PSH Lucknow =5.3 h)
C7 Energy output per module per day (C5xC6) 463 Wh 530 Wh
C8 Module output at operating temperature (DFxC7) 324.1 Wh 424 Wh
DF=0.80 for hot climates. DF=0.90 for moderate climates
C9 Number of modules req. to meet energy req. (C3 / C8) 12 modules 10 modules
C13 Nominal rated PV module output 1200 W 1000 W
MODEL: GS-STAR-100W
Stand Alone PV System Design
D. Balance of Systems
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 5
A voltage regulator (Charge Controller) is recommended unless array output current (at 1000 W/m2
conditions), less any continuous load current, is less than 5 % of the selected battery bank capacity (at
the 8 hour discharge rate0).
Wiring should be adequate to ensure that losses are less than 1% of the energy produced.
In low voltage (i.e., less than 50 volts) systems, germanium or Schottky blocking diodes are preferred
over silicon diodes.
Fuses, fuse holders, switches, and other components should be selected to satisfy both voltage and
current requirements.
All battery series branches should contain fuses.
Fused disconnects are strongly recommended to isolate the battery bank from the rest of the system.
Refer to electrical and mechanical design sections for other considerations.
Grid Connected Rooftop PV System Design
31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 6
A voltage regulator (Charge Controller) is recommended unless array output current (at 1000 W/m2
conditions), less any continuous load current, is less than 5 % of the selected battery bank capacity (at
the 8 hour discharge rate0).
Wiring should be adequate to ensure that losses are less than 1% of the energy produced.
In low voltage (i.e., less than 50 volts) systems, germanium or Schottky blocking diodes are preferred
over silicon diodes.
Fuses, fuse holders, switches, and other components should be selected to satisfy both voltage and
current requirements.
All battery series branches should contain fuses.
Fused disconnects are strongly recommended to isolate the battery bank from the rest of the system.
Inverter

More Related Content

What's hot

How solar rooftop system works
How solar rooftop system worksHow solar rooftop system works
How solar rooftop system worksHardik Parmar
 
A quick guide to off grid solar power systems design
A quick guide to off grid solar power systems designA quick guide to off grid solar power systems design
A quick guide to off grid solar power systems designMathy Mpassy Isinki
 
PV solar Design and Installtion
PV solar Design and InstalltionPV solar Design and Installtion
PV solar Design and InstalltionEli Israeli
 
Solar PV design and installation
Solar PV design and installationSolar PV design and installation
Solar PV design and installationAYISHA NAZIBA
 
solar photovolatic power system
solar photovolatic power systemsolar photovolatic power system
solar photovolatic power systemSubir paul
 
factor affecting on PV performance
factor affecting on PV performancefactor affecting on PV performance
factor affecting on PV performanceakshay harad
 
Solar photovoltaic systems
Solar photovoltaic systemsSolar photovoltaic systems
Solar photovoltaic systemsanish_hercules
 
Photovoltaic Project
Photovoltaic ProjectPhotovoltaic Project
Photovoltaic ProjectHarry Indig
 
Solar charge-controller-presentation
Solar charge-controller-presentationSolar charge-controller-presentation
Solar charge-controller-presentationBorshon sen
 
Installation and troubleshooting of solar pv power plants
Installation and troubleshooting of solar pv power plantsInstallation and troubleshooting of solar pv power plants
Installation and troubleshooting of solar pv power plantsGomathy Sengottaiyan
 
Rooftop solar power plant components
Rooftop solar power plant   componentsRooftop solar power plant   components
Rooftop solar power plant componentsNeha Pathak Kher
 

What's hot (20)

Charge controller
Charge controllerCharge controller
Charge controller
 
How solar rooftop system works
How solar rooftop system worksHow solar rooftop system works
How solar rooftop system works
 
A quick guide to off grid solar power systems design
A quick guide to off grid solar power systems designA quick guide to off grid solar power systems design
A quick guide to off grid solar power systems design
 
Grid Connected PV Systems
Grid Connected PV SystemsGrid Connected PV Systems
Grid Connected PV Systems
 
Designing Solar PV Systems (Rooftops)
Designing Solar PV Systems(Rooftops)Designing Solar PV Systems(Rooftops)
Designing Solar PV Systems (Rooftops)
 
Solar PV System
Solar PV SystemSolar PV System
Solar PV System
 
PV solar Design and Installtion
PV solar Design and InstalltionPV solar Design and Installtion
PV solar Design and Installtion
 
Solar PV design and installation
Solar PV design and installationSolar PV design and installation
Solar PV design and installation
 
Grid tie solar power system
Grid tie solar power systemGrid tie solar power system
Grid tie solar power system
 
solar photovolatic power system
solar photovolatic power systemsolar photovolatic power system
solar photovolatic power system
 
factor affecting on PV performance
factor affecting on PV performancefactor affecting on PV performance
factor affecting on PV performance
 
Solar photovoltaic systems
Solar photovoltaic systemsSolar photovoltaic systems
Solar photovoltaic systems
 
Solar Power Plant Design and PV Syst
Solar Power Plant Design and PV SystSolar Power Plant Design and PV Syst
Solar Power Plant Design and PV Syst
 
Photovoltaic Project
Photovoltaic ProjectPhotovoltaic Project
Photovoltaic Project
 
Solar rooftop presentation
Solar rooftop presentationSolar rooftop presentation
Solar rooftop presentation
 
Solar charge-controller-presentation
Solar charge-controller-presentationSolar charge-controller-presentation
Solar charge-controller-presentation
 
Installation and troubleshooting of solar pv power plants
Installation and troubleshooting of solar pv power plantsInstallation and troubleshooting of solar pv power plants
Installation and troubleshooting of solar pv power plants
 
Solar Power Charge Controller
Solar Power Charge ControllerSolar Power Charge Controller
Solar Power Charge Controller
 
Solar pv connected to grid
Solar pv connected to gridSolar pv connected to grid
Solar pv connected to grid
 
Rooftop solar power plant components
Rooftop solar power plant   componentsRooftop solar power plant   components
Rooftop solar power plant components
 

Similar to Standalone Solar PV system design Example

Standalone PV plant sizing guide
Standalone PV plant sizing guideStandalone PV plant sizing guide
Standalone PV plant sizing guideHashim Hasnain Hadi
 
Iaetsd design, engineerning and analysis
Iaetsd design, engineerning and analysisIaetsd design, engineerning and analysis
Iaetsd design, engineerning and analysisIaetsd Iaetsd
 
Solar PV Design & Applications
Solar PV  Design & ApplicationsSolar PV  Design & Applications
Solar PV Design & Applicationsprabakaran G
 
25 KWp SOLAR POWER PLANT IN BIET
25 KWp SOLAR POWER PLANT IN BIET25 KWp SOLAR POWER PLANT IN BIET
25 KWp SOLAR POWER PLANT IN BIETsuraj chowdhury
 
UPS operation, Rev 2.pptx
UPS operation, Rev 2.pptxUPS operation, Rev 2.pptx
UPS operation, Rev 2.pptxJaimohan15
 
APM-JouleBox -60 Product Data
APM-JouleBox -60 Product DataAPM-JouleBox -60 Product Data
APM-JouleBox -60 Product DataAbigail Rogowski
 
Group 8 hvdc
Group  8 hvdcGroup  8 hvdc
Group 8 hvdcMahesh B
 
Group 8 hvdc
Group  8 hvdcGroup  8 hvdc
Group 8 hvdcMahesh B
 
Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)kaushikbandopadhyay
 
Photovoltaic modules & sizing of pv system
Photovoltaic modules & sizing of pv systemPhotovoltaic modules & sizing of pv system
Photovoltaic modules & sizing of pv systemEr Madhuri More
 
study of 12 kw solar office system at atomic energy centre chittagong
study of 12 kw solar office system at atomic energy centre chittagongstudy of 12 kw solar office system at atomic energy centre chittagong
study of 12 kw solar office system at atomic energy centre chittagongINFOGAIN PUBLICATION
 
Catalog ELCB Mitsubishi-Beeteco.com
Catalog ELCB Mitsubishi-Beeteco.comCatalog ELCB Mitsubishi-Beeteco.com
Catalog ELCB Mitsubishi-Beeteco.comBeeteco
 
IRJET- Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...
IRJET-  	  Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...IRJET-  	  Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...
IRJET- Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...IRJET Journal
 
IRJET - Single Phase Inverter using MOSFET
IRJET -  	  Single Phase Inverter using MOSFETIRJET -  	  Single Phase Inverter using MOSFET
IRJET - Single Phase Inverter using MOSFETIRJET Journal
 
Vacon nxl-brochure-bc00089 d-en
Vacon nxl-brochure-bc00089 d-enVacon nxl-brochure-bc00089 d-en
Vacon nxl-brochure-bc00089 d-enhongkiworld
 
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...IEABODI2SnVVnGimcEAI
 
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unit
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unitSolarEdge 82.8kW inverter with WiFi & SetApp - Primary unit
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unitOptimus Energy Philippines
 
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.ppt
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.pptPV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.ppt
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.pptArpoMukherjee1
 

Similar to Standalone Solar PV system design Example (20)

Standalone PV plant sizing guide
Standalone PV plant sizing guideStandalone PV plant sizing guide
Standalone PV plant sizing guide
 
Iaetsd design, engineerning and analysis
Iaetsd design, engineerning and analysisIaetsd design, engineerning and analysis
Iaetsd design, engineerning and analysis
 
Solar PV Design & Applications
Solar PV  Design & ApplicationsSolar PV  Design & Applications
Solar PV Design & Applications
 
25 KWp SOLAR POWER PLANT IN BIET
25 KWp SOLAR POWER PLANT IN BIET25 KWp SOLAR POWER PLANT IN BIET
25 KWp SOLAR POWER PLANT IN BIET
 
UPS operation, Rev 2.pptx
UPS operation, Rev 2.pptxUPS operation, Rev 2.pptx
UPS operation, Rev 2.pptx
 
Mcb c60 h dc
Mcb c60 h dcMcb c60 h dc
Mcb c60 h dc
 
APM-JouleBox -60 Product Data
APM-JouleBox -60 Product DataAPM-JouleBox -60 Product Data
APM-JouleBox -60 Product Data
 
Group 8 hvdc
Group  8 hvdcGroup  8 hvdc
Group 8 hvdc
 
Group 8 hvdc
Group  8 hvdcGroup  8 hvdc
Group 8 hvdc
 
Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)Project body(powersupply+timer+filter7thsem)
Project body(powersupply+timer+filter7thsem)
 
Photovoltaic modules & sizing of pv system
Photovoltaic modules & sizing of pv systemPhotovoltaic modules & sizing of pv system
Photovoltaic modules & sizing of pv system
 
study of 12 kw solar office system at atomic energy centre chittagong
study of 12 kw solar office system at atomic energy centre chittagongstudy of 12 kw solar office system at atomic energy centre chittagong
study of 12 kw solar office system at atomic energy centre chittagong
 
Catalog ELCB Mitsubishi-Beeteco.com
Catalog ELCB Mitsubishi-Beeteco.comCatalog ELCB Mitsubishi-Beeteco.com
Catalog ELCB Mitsubishi-Beeteco.com
 
IRJET- Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...
IRJET-  	  Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...IRJET-  	  Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...
IRJET- Photovoltaic 10MW Power Plant Simulation & Design using Mathwork &...
 
About Solar Inverter
About Solar Inverter About Solar Inverter
About Solar Inverter
 
IRJET - Single Phase Inverter using MOSFET
IRJET -  	  Single Phase Inverter using MOSFETIRJET -  	  Single Phase Inverter using MOSFET
IRJET - Single Phase Inverter using MOSFET
 
Vacon nxl-brochure-bc00089 d-en
Vacon nxl-brochure-bc00089 d-enVacon nxl-brochure-bc00089 d-en
Vacon nxl-brochure-bc00089 d-en
 
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...
Infineon-Infineon_DC_EV_Charging_Trends_and_system_solutions-ApplicationPrese...
 
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unit
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unitSolarEdge 82.8kW inverter with WiFi & SetApp - Primary unit
SolarEdge 82.8kW inverter with WiFi & SetApp - Primary unit
 
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.ppt
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.pptPV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.ppt
PV SYSTEMS, COMPONENTS DEVICES AND APPLICATIONS.ppt
 

More from Dr Naim R Kidwai

Asynchronous sequential circuit analysis
Asynchronous sequential circuit analysisAsynchronous sequential circuit analysis
Asynchronous sequential circuit analysisDr Naim R Kidwai
 
synchronous Sequential circuit counters and registers
synchronous Sequential circuit counters and registerssynchronous Sequential circuit counters and registers
synchronous Sequential circuit counters and registersDr Naim R Kidwai
 
Clocked Sequential circuit analysis and design
Clocked Sequential circuit analysis and designClocked Sequential circuit analysis and design
Clocked Sequential circuit analysis and designDr Naim R Kidwai
 
Sequential circuit-flip flops
Sequential circuit-flip flopsSequential circuit-flip flops
Sequential circuit-flip flopsDr Naim R Kidwai
 
Project financial feasibility
Project financial feasibilityProject financial feasibility
Project financial feasibilityDr Naim R Kidwai
 
financing infrastructure projects
financing infrastructure projectsfinancing infrastructure projects
financing infrastructure projectsDr Naim R Kidwai
 
multiple projects and constraints
multiple projects and constraintsmultiple projects and constraints
multiple projects and constraintsDr Naim R Kidwai
 
Nec 602 unit ii Random Variables and Random process
Nec 602 unit ii Random Variables and Random processNec 602 unit ii Random Variables and Random process
Nec 602 unit ii Random Variables and Random processDr Naim R Kidwai
 
spread spectrum communication
spread spectrum communicationspread spectrum communication
spread spectrum communicationDr Naim R Kidwai
 
Rec101 unit ii (part 2) bjt biasing and re model
Rec101 unit ii (part 2) bjt biasing and re modelRec101 unit ii (part 2) bjt biasing and re model
Rec101 unit ii (part 2) bjt biasing and re modelDr Naim R Kidwai
 
Rec101 unit ii (part 3) field effect transistor
Rec101 unit ii (part 3) field effect transistorRec101 unit ii (part 3) field effect transistor
Rec101 unit ii (part 3) field effect transistorDr Naim R Kidwai
 
Rec101 unit ii (part 1) bjt characteristics
Rec101 unit ii (part 1) bjt characteristicsRec101 unit ii (part 1) bjt characteristics
Rec101 unit ii (part 1) bjt characteristicsDr Naim R Kidwai
 
Rec101 unit v communication engg
Rec101 unit v communication enggRec101 unit v communication engg
Rec101 unit v communication enggDr Naim R Kidwai
 

More from Dr Naim R Kidwai (20)

Asynchronous sequential circuit analysis
Asynchronous sequential circuit analysisAsynchronous sequential circuit analysis
Asynchronous sequential circuit analysis
 
synchronous Sequential circuit counters and registers
synchronous Sequential circuit counters and registerssynchronous Sequential circuit counters and registers
synchronous Sequential circuit counters and registers
 
Clocked Sequential circuit analysis and design
Clocked Sequential circuit analysis and designClocked Sequential circuit analysis and design
Clocked Sequential circuit analysis and design
 
Sequential circuit-flip flops
Sequential circuit-flip flopsSequential circuit-flip flops
Sequential circuit-flip flops
 
Sampling Theorem
Sampling TheoremSampling Theorem
Sampling Theorem
 
Moodle introduction
Moodle introductionMoodle introduction
Moodle introduction
 
Project financial feasibility
Project financial feasibilityProject financial feasibility
Project financial feasibility
 
financing infrastructure projects
financing infrastructure projectsfinancing infrastructure projects
financing infrastructure projects
 
financing projects
financing projectsfinancing projects
financing projects
 
multiple projects and constraints
multiple projects and constraintsmultiple projects and constraints
multiple projects and constraints
 
project risk analysis
project risk analysisproject risk analysis
project risk analysis
 
Nec 602 unit ii Random Variables and Random process
Nec 602 unit ii Random Variables and Random processNec 602 unit ii Random Variables and Random process
Nec 602 unit ii Random Variables and Random process
 
spread spectrum communication
spread spectrum communicationspread spectrum communication
spread spectrum communication
 
Error Control coding
Error Control codingError Control coding
Error Control coding
 
information theory
information theoryinformation theory
information theory
 
Rec101 unit ii (part 2) bjt biasing and re model
Rec101 unit ii (part 2) bjt biasing and re modelRec101 unit ii (part 2) bjt biasing and re model
Rec101 unit ii (part 2) bjt biasing and re model
 
Rec101 unit ii (part 3) field effect transistor
Rec101 unit ii (part 3) field effect transistorRec101 unit ii (part 3) field effect transistor
Rec101 unit ii (part 3) field effect transistor
 
Rec101 unit ii (part 1) bjt characteristics
Rec101 unit ii (part 1) bjt characteristicsRec101 unit ii (part 1) bjt characteristics
Rec101 unit ii (part 1) bjt characteristics
 
Rec101 unit v communication engg
Rec101 unit v communication enggRec101 unit v communication engg
Rec101 unit v communication engg
 
Rec101 unit iv emi
Rec101 unit iv emiRec101 unit iv emi
Rec101 unit iv emi
 

Recently uploaded

National Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfNational Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfRajuKanojiya4
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvLewisJB
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
The SRE Report 2024 - Great Findings for the teams
The SRE Report 2024 - Great Findings for the teamsThe SRE Report 2024 - Great Findings for the teams
The SRE Report 2024 - Great Findings for the teamsDILIPKUMARMONDAL6
 
Internet of things -Arshdeep Bahga .pptx
Internet of things -Arshdeep Bahga .pptxInternet of things -Arshdeep Bahga .pptx
Internet of things -Arshdeep Bahga .pptxVelmuruganTECE
 
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
 
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
 
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
 
Energy Awareness training ppt for manufacturing process.pptx
Energy Awareness training ppt for manufacturing process.pptxEnergy Awareness training ppt for manufacturing process.pptx
Energy Awareness training ppt for manufacturing process.pptxsiddharthjain2303
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating SystemRashmi Bhat
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - GuideGOPINATHS437943
 
Research Methodology for Engineering pdf
Research Methodology for Engineering pdfResearch Methodology for Engineering pdf
Research Methodology for Engineering pdfCaalaaAbdulkerim
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)Dr SOUNDIRARAJ N
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the weldingMuhammadUzairLiaqat
 
Call Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call GirlsCall Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call Girlsssuser7cb4ff
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...121011101441
 
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
 

Recently uploaded (20)

young call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Serviceyoung call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Service
 
National Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdfNational Level Hackathon Participation Certificate.pdf
National Level Hackathon Participation Certificate.pdf
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvv
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
The SRE Report 2024 - Great Findings for the teams
The SRE Report 2024 - Great Findings for the teamsThe SRE Report 2024 - Great Findings for the teams
The SRE Report 2024 - Great Findings for the teams
 
POWER SYSTEMS-1 Complete notes examples
POWER SYSTEMS-1 Complete notes  examplesPOWER SYSTEMS-1 Complete notes  examples
POWER SYSTEMS-1 Complete notes examples
 
Internet of things -Arshdeep Bahga .pptx
Internet of things -Arshdeep Bahga .pptxInternet of things -Arshdeep Bahga .pptx
Internet of things -Arshdeep Bahga .pptx
 
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
 
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
 
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
 
Energy Awareness training ppt for manufacturing process.pptx
Energy Awareness training ppt for manufacturing process.pptxEnergy Awareness training ppt for manufacturing process.pptx
Energy Awareness training ppt for manufacturing process.pptx
 
Input Output Management in Operating System
Input Output Management in Operating SystemInput Output Management in Operating System
Input Output Management in Operating System
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - Guide
 
Research Methodology for Engineering pdf
Research Methodology for Engineering pdfResearch Methodology for Engineering pdf
Research Methodology for Engineering pdf
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the welding
 
Call Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call GirlsCall Girls Narol 7397865700 Independent Call Girls
Call Girls Narol 7397865700 Independent Call Girls
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...
 
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
 

Standalone Solar PV system design Example

  • 1. Stand alone Solar PV System design Solar PV design Modules: Design of 1KW stand alone SPV system: Calculation of Load, Size of battery bank, Array Size, Distance between Modules in Array formation, Costing, Grid Interactive PV System: Export of PV power to grid, Grid Interactive Inverter, Islanding, reverse power flow, Surge protection, Wire sizes and voltage ratings, AC modules 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 1
  • 2. Stand Alone PV System Design A. Load Estimation 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 2 A1 Inverter Efficiency 90% A2 Battery Bias Voltage 12 V Inverter AC Voltage 220 V Appliances Rating (Watt) Qty Net Rated Wattage Adjustment factor For dc 1, For ac A1 Adjusted Wattage Uses in Hours /day Energy /day (Wh) A4 A5 A6 = A4/A5 A7 A8=A6*A7 LED Bulb 7 5 35 0.9 38.9 4 155.6 Fans 70 3 210 0.9 233.3 8 1866.4 LED TV 60 1 60 0.9 66.7 8 533.6 refrigerator 45 1 45 0.9 50 8 400 Washing machine 500 1 500 0.9 555.6 0.5 277.8 Laptop 50 1 50 0.9 55.6 2 111.2 A11 Total AC power req. 890 W A12 Total DC power req.989 W A9 Total Energy demand per day 3244.6 Wh A10 Total amp-hour demand per day (A9/A2) 270.4 Ah
  • 3. Stand Alone PV System Design B. Battery Sizing 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 3 Location Lucknow Lattitude 26.80 N Design temperature 25 degrees C / 77 degrees F B1 Days of storage desired / required (autonomy) 3 B2 Allowable Depth of Discharge (DoD) limit 0.8 B3 Required battery Capacity (A10 x B1/B2) 1014 Ah B4 capacity of selected 12 V battery ( Exide FIP0-IP150..(150Ah) Price 10100) 150 Ah B5 Number of batteries in parallel (B3 / B4) 7 B6 Total battery amp-hour capacity (B5xB4) 1050 Ah B7 Total battery kilowatt-hour capacity (B6xA2/1000) 12.6 KWh B10 Average daily depth of discharge (.75xA10/B6) .19
  • 4. Stand Alone PV System Design C. PV Array Sizing 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 4 Design Tilt Lucknow (Latitude+100) 36.80 Design month: February C1 Total energy demand per day (A9) 3244.6 Wh C2 Battery round trip efficiency (0.70-0.85) 0.85 C3 Required array output per day (C1 / C2) 3817.2 Wh C4 Selected PV module max power voltage at STC (18x0.85) 15.3 V C5 Selected PV module guaranteed power output at STC 100 W C6 Peek sum hours at design tilt for design month 4.63 hours (Av PSH Lucknow =5.3 h) C7 Energy output per module per day (C5xC6) 463 Wh 530 Wh C8 Module output at operating temperature (DFxC7) 324.1 Wh 424 Wh DF=0.80 for hot climates. DF=0.90 for moderate climates C9 Number of modules req. to meet energy req. (C3 / C8) 12 modules 10 modules C13 Nominal rated PV module output 1200 W 1000 W MODEL: GS-STAR-100W
  • 5. Stand Alone PV System Design D. Balance of Systems 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 5 A voltage regulator (Charge Controller) is recommended unless array output current (at 1000 W/m2 conditions), less any continuous load current, is less than 5 % of the selected battery bank capacity (at the 8 hour discharge rate0). Wiring should be adequate to ensure that losses are less than 1% of the energy produced. In low voltage (i.e., less than 50 volts) systems, germanium or Schottky blocking diodes are preferred over silicon diodes. Fuses, fuse holders, switches, and other components should be selected to satisfy both voltage and current requirements. All battery series branches should contain fuses. Fused disconnects are strongly recommended to isolate the battery bank from the rest of the system. Refer to electrical and mechanical design sections for other considerations.
  • 6. Grid Connected Rooftop PV System Design 31-08-2016 IEC-803 ENERGY BASICS BY DR N R KIDWAI, INTEGRAL UNIVERSITY 6 A voltage regulator (Charge Controller) is recommended unless array output current (at 1000 W/m2 conditions), less any continuous load current, is less than 5 % of the selected battery bank capacity (at the 8 hour discharge rate0). Wiring should be adequate to ensure that losses are less than 1% of the energy produced. In low voltage (i.e., less than 50 volts) systems, germanium or Schottky blocking diodes are preferred over silicon diodes. Fuses, fuse holders, switches, and other components should be selected to satisfy both voltage and current requirements. All battery series branches should contain fuses. Fused disconnects are strongly recommended to isolate the battery bank from the rest of the system. Inverter