Designing a solar photovoltaic plant using PVsol software
Designing a solar photovoltaic plant using PVsol software, available at $19.99, has an average rating of 4.42, with 12 lectures, 3 quizzes, based on 6 reviews, and has 37 subscribers.
You will learn about How to design a solar power plant for your own house within some minutes How to prepare a sales proposal for potential customers how to set solar modules position to minimize possible shadings how to use PVsol meteo database to forecast system energy yield how to edit or generate new meteo data to the database How to gain the best possible generation from the solar panels how to determine and simulate buildings, trees, roofs and any other obstacle how to electrically configure solar modules in inverters how to electrically configure solar modules in inverters Detailed design of the system for project documentation This course is ideal for individuals who are interested people in climate change & renewable energy or People interested in finding jobs in solar field or sales people and business people in electrical related companies or Anyone willing to design a solar power system for his/her own house or Fresh graduate engineers (Electrical, Mechanical, Energy, Chemical, Civil, Architecture, …) or energy efficiency enthusiasts and activists or people working in energy transition industry It is particularly useful for interested people in climate change & renewable energy or People interested in finding jobs in solar field or sales people and business people in electrical related companies or Anyone willing to design a solar power system for his/her own house or Fresh graduate engineers (Electrical, Mechanical, Energy, Chemical, Civil, Architecture, …) or energy efficiency enthusiasts and activists or people working in energy transition industry.
Enroll now: Designing a solar photovoltaic plant using PVsol software
Summary
Title: Designing a solar photovoltaic plant using PVsol software
Price: $19.99
Average Rating: 4.42
Number of Lectures: 12
Number of Quizzes: 3
Number of Published Lectures: 12
Number of Published Quizzes: 3
Number of Curriculum Items: 16
Number of Published Curriculum Objects: 16
Original Price: CA$24.99
Quality Status: approved
Status: Live
What You Will Learn
- How to design a solar power plant for your own house within some minutes
- How to prepare a sales proposal for potential customers
- how to set solar modules position to minimize possible shadings
- how to use PVsol meteo database to forecast system energy yield
- how to edit or generate new meteo data to the database
- How to gain the best possible generation from the solar panels
- how to determine and simulate buildings, trees, roofs and any other obstacle
- how to electrically configure solar modules in inverters
- how to electrically configure solar modules in inverters
- Detailed design of the system for project documentation
Who Should Attend
- interested people in climate change & renewable energy
- People interested in finding jobs in solar field
- sales people and business people in electrical related companies
- Anyone willing to design a solar power system for his/her own house
- Fresh graduate engineers (Electrical, Mechanical, Energy, Chemical, Civil, Architecture, …)
- energy efficiency enthusiasts and activists
- people working in energy transition industry
Target Audiences
- interested people in climate change & renewable energy
- People interested in finding jobs in solar field
- sales people and business people in electrical related companies
- Anyone willing to design a solar power system for his/her own house
- Fresh graduate engineers (Electrical, Mechanical, Energy, Chemical, Civil, Architecture, …)
- energy efficiency enthusiasts and activists
- people working in energy transition industry
Have you ever wondered how you can estimate a solar system yield just within several minutes?
Simulation software enable us to evaluate the prospective solar plant energy production and also inspect the effects of probable near or far shadings on modules. Moreover one can easily check different configurations to find out the best possible design. That’s why software simulations are of high importance nowadays both in residential and commercial scope of projects in preliminary and also detailed designing steps. There are several software as common simulation tools, PVsol is one of the most user-friendly and adequate ones with useful analysis and reports containing shading effect, hourly power generation data, 3-D allocation of solar modules and etc.
In near future, global energy demand will be dependent on renewable energy especially PV systems, so there will be more and more job opportunities every year, in which university or college graduates with related personal skills will gradually adopt. This course can be a great source for apprentices and recently graduated students to develop their practical experiences and enter this booming market.
I am Shayan Razaghy , power electrical engineer, masters degree, instructor of the current course , with more than 6 years of experience in holding face-to-face, online , hands-on workshop, seminar and webinar classes in different topics of solar energy.
Learning Objectives :
• Learn how to use PVsol meteo database to forecast system energy yield
• Learn how to edit or generate new meteo data to the database
• Learn how to determine and simulate buildings, trees, roofs and any other obstacle
• Learn how to set solar modules position to minimize possible shadings
• Learn how to electrically configure solar modules in inverters
• Learn how to assess system output
Course Curriculum
Chapter 1: Project initiation
Lecture 1: Introduction & Project development
Chapter 2: Different System Types
Lecture 1: System Type Definition
Chapter 3: Climate Data & Power Grid Definition & Parameter Setting
Lecture 1: Defining Climate Data and Determination of Power Grid Technical Specifications
Chapter 4: Local loads (consumption)
Lecture 1: Defining Local Loads
Lecture 2: Simulating the building in 3D design part
Lecture 3: Defining external obstacles
Lecture 4: Defining barred areas
Chapter 5: Electrical design and panels configuration
Lecture 1: Choosing the solar panel and covering the site
Lecture 2: Module mounting
Lecture 3: Module configuration and connection to inverter
Lecture 4: Cabling path and SLD design
Chapter 6: Output report, analysis and presentation
Lecture 1: Final report and presentation
Instructors
-
Shayan Razaghy
Electrical Engineer
Rating Distribution
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- 2 stars: 0 votes
- 3 stars: 0 votes
- 4 stars: 4 votes
- 5 stars: 2 votes
Frequently Asked Questions
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