Design Course For Solar Energy Systems (Off-Grid, On-Grid, Protection and Simulation)

Learn about solar energy from A to Z for electrical engineers, solar designers, and others interested in working in the solar energy field. 11 sections, 58 lectures in 11h 43m total course length.

Course Introduction

This course is designed for anyone who would like to learn about solar energy from A to Z for electrical engineers, solar designers, and all who are interested in working in the solar energy field. The course has 11 sections, 58 lectures in 11h 43m total length.

What you will learn in this course:

  • Construction of the PV (Photovoltaic) cells, the connection of PV cells including series and parallel and when to use each of them, advantages and disadvantages of PV cells
  • Sun tracking to get max output power from PV Cells and techniques of MPPT (Maximum power point Tracking)
  • Effect of insolation, temperature and load resistance on power
  • Grid-Tied system, its components, advantages, and disadvantages
  • Off-Grid system, its components, advantages, and disadvantages
  • Hybrid Solar system, its components, advantages, and disadvantages
  • Different Types of solar cells and their efficiency, junction box and how to wire it
  • Determination of the PV max voltage and power consumption demands
  • Solar PV System design including design of PV modules, inverter, battery, solar charge controller, and MPPT charge controller.
  • Iron core which is responsible for the magnetic flux action
  • Off-grid system design by using the PVsyst program.
  • Grounding of the PV system and solar kit.
  • On-grid system design by PVsyst program.
  • Effect of temperature and insolation on V-I Curve.
  • Charging of lead-acid batteries and hydrometers.
  • The cycle of batteries.
  • Shading and tilt angle.
  • Single line diagram of the PV system and selection of fuses and breakers.
  • Simulation of PV cell in MATLAB and obtaining V-I characteristics.
  • Design of Off-grid PV system using an Excel sheet.
  • Function, types, and datasheet of inverter
  • PWM and MPPT charge controllers
  • Solar wires and cables installation process
  • PV installation, short circuit and open circuit tests using avometer
  • Principle of operation of the solar water pumping system
  • Solar pumping system design
  • Protection of PV system, strings, and protection of arrays.
  • Protection devices for transformer, inverter protection, and surge protection device.
  • On-grid system design by hand calculations.
  • Off-grid system design an extra example.
  • Parallel and series connection in PV System.
  • Construction and types of batteries.
  • Maintenance of batteries and methods of charging.
  • Importance of the charge controller.
  • Inverter selection.
  • Difference between 3 busbars and 5 busbars and how to select AC busbar and DC busbar.
  • Solar cells, modules, and arrays.
  • PV energy according to Area.
  • Selection and datasheet of the panel.

Course Content:

  • Basics Of Solar Energy System
  • Batteries In PV System
  • Components And Design Of Off Grid Solar Energy System
  • Designing Of On Grid Solar Energy System
  • Design of PV System Using PVSyst Program
  • Protection Of PV System
  • Design Using Excel Sheet
  • Single Line Diagram Of PV System
  • MATLAB and ETAP PV Simulation
  • Certificate of Completion

Who Is This Course For:

  • Solar enthusiasts
  • Electrical power engineers
  • Electrical students
  • Anyone who wants to get knowledge about solar system or PV System
  • Complete beginners with zero solar experience or knowledge

Requirements:

  • No prior Knowledge!
  • Passion to Learn!

Downloadable course materials

After purchasing the course, students can download the following materials:

  • Course Slides (PDF)
  • Know-How on Electrical Fuses (PDF)
  • PV System Off Grid (AutoCAD (PDF)
  • Solar PV System Design Tool (MS Excel Spreadsheet, PDF)
  • Software PVsyst 6.43

Course Content

About Instructor

Engr. Ahmed Mahdy

I am Ahmed Mahdy an electrical power engineer, researcher, and the founder of Khadija Academy. I have helped over 100,000 students from 202 countries achieve career success through simple, easy courses over the last 10 years.​ In addition, I have a YouTube educational engineering channel called "Engr. Ahmed / Khadija Academy", where I regularly post videos related to electrical engineering. I have received the award for the best master's thesis in the Faculty of Engineering - Ain Shams University for 2022/2023. Some of my published research works in the top electrical engineering journals worldwide: 1- ​Transient stability improvement of wave energy conversion systems connected to power grid using anti-windup-coot optimization strategy - Energy Journal - Impact Factor of 9.0. 2- Nonlinear Modeling and Real-Time Simulation of a Grid-Connected AWS Wave Energy Conversion System - IEEE Transactions on Sustainable Energy - Impact Factor of 8.8. 3- Modeling and optimal operation of hybrid wave energy and PV system feeding supercharging stations based on golden jackal optimal control strategy - Energy Journal - Impact Factor of 9.​0. 4- State-of-the-Art of the most commonly adopted wave energy conversion systems - Ain Shams Engineering Journal - Impact Factor of 6.0. 5- Optimal Design of Fractional-Order PID Controllers for a Nonlinear AWS Wave Energy Converter Using Hybrid Jellyfish Search and Particle Swarm Optimization - Fractal and Fractional - Impact Factor of 5.4 6- Dynamic performance enhancement of nonlinear AWS wave energy systems based on optimal super-twisting control strategy - Ain Shams Engineering Journal - Impact Factor of 6.0. 7- A novel maximum energy extraction strategy using lithium-ion batteries for Archimedes wave swing wave energy conversion systems - Renewable Energy - Impact Factor of 9.1

17 Courses

+733 enrolled
Not Enrolled

Course Includes

  • 11 Lessons
  • 55 Topics
  • Course Certificate
  • Lifetime Access