Title
Design of 1MW of Ground Mounted Solar Power Plant Part 1
Learn A to Z Design of 1MW of Ground Mounted Solar Power Plant with Prof. Kiran Beldar

What you will learn
Site Analysis and Site Survey of Solar Power Plant
Basic Information about Site
Geographical Location of Site
Importing GHI Data from PVGIS Software
GHI and Temperature Data
Assessment of land area in Google earth software
Manual Assessment of Land
Generation of Online Sun Path Diagram
Substation Details
Design and Sizing of Electrical Component in 1MW Solar Project
Solar Panel Data Sheets
Reading of Solar Panel Datasheet
Reading of Solar Inverter Datasheet
Solar Panel and Solar Inverter Consideration
Calculation of Maximum Solar Panel per String
Calculation of Minimum Solar Panel per Strings
Voltage and Current of Each String
Calculation of Optimum Number of Solar Panel per String
Calculation of Number of Solar Panels for DC Input Connection to Inverter
Voltage and Current of Each Combiner Box and DC Inputs
Connections of Solar Strings
String Combiner/Monitoring Box
Specifications of String Monitoring Box
Connection of Solar Combiner to Inverter
DC Cable Sizing in One String
DC Cable Sizing (SMB to Inverter)
DC Side Protection Breakers
AC Cable Sizing Up to Transformer
Selection of Transformer
AC Cable Sizing from Transformer to CRP Panel
Control and Relay Panel (CRP Panel)
Multifunctional Meter with Current Transformer and Potential Transformer
Isolator Switch
Vacuum Circuit Breaker
Auxiliary Transformer
Cable Sizing for Auxiliary Load
Lightening Arrester
Main Export Meter with CT and PT
Design of Site Plan and Solar Array Placement in AutoCAD Software
How to Download AutoCAD
Set limits and Units in AutoCAD
Introduction to Basic Commands
Drawing initial Site Plan
Construction of Solar Panel and Solar String
Construction of One Solar Array
Construction and Placement of Solar Array
Construction of Control Rooms
Construction of String Monitoring Box
Construction of Cable Routing
Construction of Switch yard
Showing Dimensions on Plan View
Making the Sheet in Rectangular Format
Insertion of Table in Sheet
Addition of Specification Table
Plotting the Sheet in Pdf Format
Why take this course?
🌞 Design of 1MW of Ground Mounted Solar Power Plant Part 1 🚀
In this comprehensive course, "Learn A to Z Design of 1MW of Ground Mounted Solar Power Plant with Prof. Kiran Belda", you will embark on a detailed journey through the intricacies of solar power plant design and construction. As an aspiring or practicing engineer, this course will equip you with the practical skills and theoretical knowledge needed to successfully design and implement a 1MW ground-mounted solar power plant.
📍 Site Analysis and Site Survey of Solar Power Plant
- Understand the basic information about selecting the right site for your solar project.
- Learn about the geographical location and its importance in harnessing solar energy effectively.
- Gain proficiency in importing Global Horizontal Irradiance (GHI) data from PVGIS software, with a step-by-step guide on Part 1 and Part 2.
- Assess land area using both Google Earth and manual methods.
- Generate Sun Path Diagrams to optimize panel placement.
- Determine the necessary details for the substation layout.
🔧 Design and Sizing of Electrical Components in 1MW Solar Project
- Analyze solar panel and inverter datasheets to understand their specifications and requirements.
- Learn how to calculate the optimal number of solar panels per string and determine the number of panels for DC input connection to the inverter.
- Understand the sizing of DC cables, protection breakers, and the selection and sizing of transformers.
- Get hands-on with the AC side cable sizing, including the installation of a Control and Relay Panel (CRP), multifunctional meters, isolator switches, vacuum circuit breakers, auxiliary transformers, and lightning arresters.
- Conclude with the proper placement of the Main Export Meter with CT and PT for accurate energy output measurements.
🎨 Design of Site Plan and Solar Array Placement in AutoCAD Software
- Discover how to download and set up AutoCAD for your solar power plant design.
- Learn the fundamental commands and set limits and units within the software.
- Draw the initial site plan and construct the layout for the solar panels, arrays, control rooms, string monitoring boxes, and cable routing.
- Understand how to show dimensions on the plan view and make your sheets available in a rectangular format.
- Add specifications tables and plot your final design in PDF format, ready for stakeholder review.
By completing this course, you will have a solid foundation in the design process of a ground-mounted solar power plant. You'll be able to confidently perform site analysis, understand electrical component sizing, and expertly create detailed site plans using AutoCAD. Whether you're an engineer, project manager, or enthusiast, this course will provide you with the skills needed to take on solar energy projects of any scale.
Join us in this transformative learning experience and contribute to a sustainable future with Prof. Kiran Belda's expertise guiding your every step! 🌱🏭✨
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Our review
🌟 Course Review Synthesis 🌟
Overview: The course has received an overall rating of 3.90, with recent reviews providing valuable feedback for improvement. The majority of the feedback focuses on the language accessibility and technical aspects of the course delivery.
Pros:
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Content Quality: The explanations and information provided are generally well-received, indicating that the course content is clear and understandable.
- "Good explanation and information," one reviewer notes, appreciating the clarity of the instruction.
- Another user compliments the use of graphics for enhanced understanding, which aids in the learning process.
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Instructor Performance: The trainer's performance is commended for delivering good explanations and valuable information.
- "it's well explained and easy to understand," one participant points out, highlighting the instructor's communication skills.
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Engagement: The course is perceived as engaging, with users finding it a positive experience overall.
- "The experience is good," confirms a reviewer, indicating satisfaction with the course engagement levels.
Cons:
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Language Accessibility: There is a notable demand for Spanish subtitles to accommodate non-English speaking learners.
- "Debería incluir subtítulos en idioma español," one learner suggests, emphasizing the need for inclusive language options.
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Technical Issues: Users have experienced technical disruptions such as lessons unexpectedly closing midway through.
- "Sometimes a current lesson closes before tutor is done talking," a reviewer reports, indicating a potential issue with course platform stability.
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Material Availability: Some learners were disappointed that the course materials mentioned by the trainer could not be downloaded for reference.
- "During the session, the trainer mentioned that the course materials are shared for further reference but nothing is available to download," a user notes, suggesting an improvement in material accessibility.
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Content Depth and Scope: Learners expect more comprehensive content, particularly in specific areas like AutoCAD drawings for site plans with electrical symbols, and the inclusion of topics such as battery systems.
- "Good explanation and information, but I expected more in the drawing part of AutoCAD," one learner expresses a desire for a deeper dive into certain subjects.
- Another user suggests adding content on battery systems which was not covered in the course.
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Suggestions for Improvement: General suggestions include thinking about adding more technical aspects and ensuring that the entire lesson doesn't close abruptly during the session.
- "it's well explained and easy to understand, they have Also used some graphics for easy understanding," a reviewer appreciates the current use of visuals but suggests further technical enhancements.
In conclusion, while the course has been generally well-received for its content clarity, engagement, and instruction quality, there are significant areas for improvement in terms of language accessibility, technical stability, and depth of content coverage. Addressing these concerns will likely enhance the overall learning experience for future participants.
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