
Design and optimize systems using premium software with climate data, create 3d visualizations, optimize inverter selection, perform financial analysis, and generate detailed design reports.
Select climate data by locating a site on the map or by country, zip code, and learn hourly versus minute irradiance data and global radiation under stc informing module power.
Compare AC coupled and DC coupled solar systems, including inverter workflows, battery charging, and grid interaction. Understand net metering, feed-in, and where each design excels in efficiency and simplicity.
Model and compare load consumption profiles for appliances such as fridges and coffee machines. Use user-dependent and independent patterns, hourly use, standby power, and climate data to calculate yearly energy.
Learn how to design a solar pv system using the dgi model, match module count to consumption and peak sun hours, and optimize tilt and orientation for max energy.
Assess shading losses from obstructions such as trees using Solar Pathfinder, quantify annual and long-term performance decay, and calculate installation area based on module dimensions.
Explore configuring roof coverage in the graphic coverage window, set roof orientation and incline, account for sun angle, and define roof and restricted BV areas with configurable shapes.
Place and resize plan elements by dragging, adjust shadow and edge percentages, use the toolbar to set sun position and image quality, then save and review updates.
select a suitable inverter and configuration for a pv system, balancing minimum inverter count and mppt channels with 105 percent dc sizing, using three strings of 18 modules in series.
Explore 3d systems to visualize and analyze your pv project, edit roof and building features, and configure module coverage, inverters, strings, and cabling for an efficient installation.
Design a mounting system in an open area by selecting modules and setting tilt, orientation, and row spacing to optimize shading and solar intensity.
Explore battery systems in PVSOL premium bootcamp, including solar battery inverters, charge controllers, charging stages, efficiency, and how to calculate usable energy, autonomy, and string configurations.
PVSOL is one of the world's most famous, reputable, and widely used PV solar systems design software. It's used in the process of design, visualization, and optimization of solar PV systems.
Using PVSOL Premium will allow you to work faster, smarter, and leads to quicker projects' completion. It will also help you get a wider look at the parameters of the design of PV systems that will help improve your general understanding of the solar PV systems.
In this course, we will not only explain the different design parameters that are part of PVSOL premium software design models. We will also have real-life examples of solar PV systems design using the software.
In each section, there will be :
Videos: Explaining in step-by-step approach how to use, calculate or predict each design parameter of the different solar PV system models used in PVSOL Premium 7.5 (Grid-Connected Full Feed-in, Grid-Connected with Electrical Appliances, and Grid-Connected with Electrical Appliances and Battery System )
Notes: Helping students remember the most important tips, and points explained in every lecture. Also, containing graphs, plots, and solved examples that will help students study the course's material
Knowledge Check Quizzes: Questions to check students understanding of the most critical points and ideas that the students should grasp in order to be efficient users of the software
The course also includes :
Practical Labs and Case Studies: Real-life examples and case studies of PV solar systems design according to customer requirements and targets to help the students understand how to read, interpret, and achieve customer's targets using the software
Design Resources & Tools: Suggested online design tools, and resources. Also, Excel sheet that helps the designer predict the PV system's financial performance to save time and work efficiently
Always ready for your questions and any inquiry.
Hope you enjoy the course, and wishing you the best of luck in your career.