05-31-2026, 08:17 PM
[center]![[Image: 824eb60550031f84ffb80812b55b05a5.jpg]](https://i127.fastpic.org/big/2026/0531/a5/824eb60550031f84ffb80812b55b05a5.jpg)
Design Of Solar On-Grid, Off-Grid And Pumping Installations
Published 5/2026
Created by Fatima zahra
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 20 Lectures ( 1h 9m ) | Size: 836.2 MB[/center]
How to design solar photovoltaic on-grid, off-grid and pumping installations | Theory & practice step by step design
What you'll learn
⚡ Differentiating between types of solar irradiation
⚡ Understanding how a solar panel works and its components
⚡ Understanding the basics of how a solar photovoltaic installation works and its components
⚡ Being able to size a solar photovoltaic on-grid installation
⚡ Being able to size a solar photovoltaic off-grid installation
⚡ Being able to size a solar photovoltaic pumping system
Requirements
❗ Basics in physics
Description
This course covers the design of on-grid, off-grid, and solar pumping installations and consists of four parts, the summary of which is as follows
✨ Solar energy & solar panels
✅ Global & direct solar irradiations
✅ Definition, types & components of solar panels
✅ Atomic structure of solar panels: Silicon doping & photovoltaic effect
✅ Technical characteristics of solar panels
✅ Solar cables & connection types
✨ Design of on-grid solar photovoltaic installations
✅ Types of solar photovoltaic installations
✅ Diagram of a on-grid solar photovoltaic installation
✅ Sizing of solar photovoltaic panels
- Energy required
- Efficiency of the installation
- Peak sun hours
- Power to instal
- Number of
- Tilt angle & azimuth
- Distance between the strings of panels
✅ Inverter selection
- Definition, types & components of inverters
- Compatibility & number of panels in series and in parallel
✅ Case study
✅ Summarizing mind map
✨ Design of off-grid solar photovoltaic installations
✅ Diagram of an off-grid photovoltaic solar installation
✅ Definition & role of the MPPT charge controller
✅ Definition, types & characteristics of batteries
✅ Sizing of photovoltaic solar panels
✅ Sizing of batteries
✅ Sizing of the MPPT charge controller
✅ Connecting photovoltaic solar panels
✅ Sizing of the inverter
✅ Case study
✅ Summarizing mind map
✨ Design of solar pumping systems
✅ Diagram of a solar pumping system
✅ Definition & types of pumps
✅ Pump sizing
- Pump flow rate
- Total manometric head
- Pressure losses
- Pump power
✅ Inverter sizing
✅ Photovoltaic solar panel sizing
✅ Case study
✅ Summary mind map
This course covers all levels, using a didactic approach that simplifies the understanding of all the concepts necessary for a thorough grasp of the subject.
It is unique in its approach to simplifying fundamental concepts and presenting all the relevant formulas. It covers the entire design process for different types of photovoltaic solar installations and is distinguished by its clear explanations, designed to accelerate learning of the content.
Who this course is for
⭐ This course is suitable for engineering students, technicians, and anyone with solid basics in physics
Homepage
![[Image: 824eb60550031f84ffb80812b55b05a5.jpg]](https://i127.fastpic.org/big/2026/0531/a5/824eb60550031f84ffb80812b55b05a5.jpg)
Design Of Solar On-Grid, Off-Grid And Pumping Installations
Published 5/2026
Created by Fatima zahra
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All Levels | Genre: eLearning | Language: English | Duration: 20 Lectures ( 1h 9m ) | Size: 836.2 MB[/center]
How to design solar photovoltaic on-grid, off-grid and pumping installations | Theory & practice step by step design
What you'll learn
⚡ Differentiating between types of solar irradiation
⚡ Understanding how a solar panel works and its components
⚡ Understanding the basics of how a solar photovoltaic installation works and its components
⚡ Being able to size a solar photovoltaic on-grid installation
⚡ Being able to size a solar photovoltaic off-grid installation
⚡ Being able to size a solar photovoltaic pumping system
Requirements
❗ Basics in physics
Description
This course covers the design of on-grid, off-grid, and solar pumping installations and consists of four parts, the summary of which is as follows
✨ Solar energy & solar panels
✅ Global & direct solar irradiations
✅ Definition, types & components of solar panels
✅ Atomic structure of solar panels: Silicon doping & photovoltaic effect
✅ Technical characteristics of solar panels
✅ Solar cables & connection types
✨ Design of on-grid solar photovoltaic installations
✅ Types of solar photovoltaic installations
✅ Diagram of a on-grid solar photovoltaic installation
✅ Sizing of solar photovoltaic panels
- Energy required
- Efficiency of the installation
- Peak sun hours
- Power to instal
- Number of
- Tilt angle & azimuth
- Distance between the strings of panels
✅ Inverter selection
- Definition, types & components of inverters
- Compatibility & number of panels in series and in parallel
✅ Case study
✅ Summarizing mind map
✨ Design of off-grid solar photovoltaic installations
✅ Diagram of an off-grid photovoltaic solar installation
✅ Definition & role of the MPPT charge controller
✅ Definition, types & characteristics of batteries
✅ Sizing of photovoltaic solar panels
✅ Sizing of batteries
✅ Sizing of the MPPT charge controller
✅ Connecting photovoltaic solar panels
✅ Sizing of the inverter
✅ Case study
✅ Summarizing mind map
✨ Design of solar pumping systems
✅ Diagram of a solar pumping system
✅ Definition & types of pumps
✅ Pump sizing
- Pump flow rate
- Total manometric head
- Pressure losses
- Pump power
✅ Inverter sizing
✅ Photovoltaic solar panel sizing
✅ Case study
✅ Summary mind map
This course covers all levels, using a didactic approach that simplifies the understanding of all the concepts necessary for a thorough grasp of the subject.
It is unique in its approach to simplifying fundamental concepts and presenting all the relevant formulas. It covers the entire design process for different types of photovoltaic solar installations and is distinguished by its clear explanations, designed to accelerate learning of the content.
Who this course is for
⭐ This course is suitable for engineering students, technicians, and anyone with solid basics in physics
Homepage
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