Title
A to Z Design of Rooftop Solar Power Plant
Get A to Z Knowledge of Rooftop Solar Power Plant Installation from Basics to Advanced with Prof. Kiran Beldar

What you will learn
Introduction to basic concepts of Solar Energy and solar radiation (GHI, DNI, DHI, Depletion of light, Visible light Spectrum and Solar Irradiation Calculation following on earth with formula based calculation)
Basics of Earth Sun Angle (Azimuth Angle, Zenith Angle, Air mass, Altitude Angle, Hour angle, Equation of Time, LSTM, Time correction Factors and Local Solar Time)
Basics of Electricals (Ohm's law, KVL and KCL, Series and Parallel Circuits, Short Circuit, Open Circuit)
Basics of Semiconductors and PN Junction Diode and its Characteristics
Basics of Solar Cell (Working, types, IV Characteristics and Construction)
Basics of Solar Panel (Working, types, features, Installation and Sizing for solar power plant with practical demonstration)
Types of Solar Power System (On-grid, Off- grid and Hybrid with circuit Diagrams and detail functional working)
Concept of Net metering, Feed in tariff, Grid Parity, gross metering and remote Net metering.
Solar Panel Tilt angle and optimum array position designing
Shadow Analysis over Solar Array
Bypass Diode and Hotspot Heating
Blocking Diode and Mismatch losses in Solar Array
Optical and recombination losses (Concept of Antireflective Coating)
Daily, monthly and Yearly Energy Yield Estimation with formula based calculation
Specific Energyu Yield Estimation and Performance ratio of solar power plant
Solar Inverter (Types, Significance, Working , Installtion and Sizing according to Capacity of Power plant )
Islanding and anti Islanding Concept and its solution
Number of strings and MPPT calculation
Array sizing calculation and design
Solar Battery (Types, Significance, Working , Installtion and Sizing according to Capacity of Power plant)
Solar Charge Controller (Types, Significance, Working , Installtion and Sizing according to Capacity of Power plant)
Solar String Combiner Box (Types, Significance, Working , Installtion and Sizing according to Capacity of Power plant)
Solar Wires and Cables (Types, Ampacity and voltage drop calculation , Installtion and Sizing according to Capacity of Power plant)
Detailed sizing of Sting DC Cables, Main DC cable, LT Armoured AC Cable, HT Armoured AC Cable
Solar Cable Management System (Cable ties, Clips, Cable Tray, Cable Conduit, Cable Rack Selection and Installation)
Solar Panel Mounting Structure (Types, Materials, Channel Structure, Designing and Installation according to Plant Capacity) )
Various types of roofs and Roof zones
Civil Construction and Foundation (Types of Civil Construction used, Driven pile, Screw, Helical piles and Ballasted foundation design and Practical Demonstration) )
Solar Power System Earthing (Earthing types, methods, Practical demonstration of Earthing in solar power plant)
Solar Array Grounding (Panel Grounding and Array Grounding and its practical demonstration)
Solar array connection (Practical Demonstraction of how to connect MC4 Solar Connectors and Wiring System)
Solar System Lightening Protection and Surge Protection Devices (Methods and Process of lightening Protection and Location of SPDs)
Cable Connectors (MC4, Cable Lugs, Cable glands types Significance and Practical demonstration)
Installation tools used in Solar System
Testing of Solar Power Plant (Start up and Emergency Shut down of Solar Power Plant Process)
Types of Testing like (Continuity, Polarity, Insulation Restistance, Voltage and current, Performance testing process in detail)
Operation and Maintenance of Solar Power Plant (Panel Maintenance, Inverter, Charge controller, Battery and Cable Maintenance in detail))
Cleaning Process and methods for solar array with practical demonstration
Commissioning of Solar Power Plant (All commissioning process and Documentation)
Practical Demonstration for Installation of Rooftop Solar Power Plant on Site
Case Study – Detail Design Calculations for 10kW On grid Rooftop Solar System
Case study covers and A to Z Manual Formula based calculation of Energy yield estimation, Solar Array calculation, Placement of Solar Array with diagrams and connections in series and parallel, Solar Inverter Calculation, Solar DC and AC cable Calculation, DC Combiner box and AC Combiner Box Selection, Solar Net Meter Selection and Graphical representation of Monthly Energy generation from 10kW power plant with Monthly performance ratio
Why take this course?
Course Title: A to Z Design of Rooftop Solar Power Plant
Headline: Get A to Z Knowledge of Rooftop Solar Power Plant Installation from Basics to Advanced with Prof. Kiran Beldar! 🌞✨
Introduction
Welcome, aspiring solar engineers and enthusiasts! "A to Z Design of Rooftop Solar Power Plant" is your comprehensive guide to mastering the intricacies of rooftop solar power plant design. This course is tailored for a diverse audience ranging from students, solar technicians, job seekers, and entrepreneurs aiming to delve into the world of renewable energy. Join us as we embark on a transformative learning journey led by the esteemed Prof. Kiran Beldar.
Course Overview
This course is not just about understanding the basics; it's about equipping you with the knowledge and skills necessary to optimize power generation from rooftop solar installations. Here's what you can expect:
- Foundational Knowledge: We'll cover the fundamental concepts that form the backbone of rooftop solar power plant design. 📚
- Technical Mastery: Gain an in-depth understanding of each component required for a rooftop solar power plant and learn how to perform manual design calculations accurately. ⚙️
- Practical Demonstrations: With 30 sessions and 175 lectures, witness practical demonstrations of every installation and connection process involved in setting up your solar rooftop system. 🛠️
- Real-World Application: A detailed case study on the design and installation of a 10kW rooftop solar power plant will bring theory to life with formulas for Yearly Energy Yield estimation, Specific Yield Estimation, Performance Ratio analysis, and more. 🌍
What You Will Learn
- Scientific Concepts: Grasp the scientific principles behind each component in a rooftop solar power plant. 🧬
- Design Calculations: Master all manual calculation design requirements for rooftop solar installations. ✏️
- Component Sizing and Selection: Learn how to properly size and select crucial components such as Solar Panels, Solar Inverters, DC Cables, and more with considerations for Ampacity and voltage drop calculations. 🔧
- Installation Best Practices: Understand the correct placement of solar arrays, optimum tilt angles, and the importance of net meter selection for maximum efficiency. 🎯
- Performance Optimization: Discover how to enhance the performance ratio and optimize your installation for peak productivity. 🌟
Course Highlights
- Hands-On Experience: With interactive sessions and practical examples, you'll gain hands-on experience that is invaluable in the field of solar energy. 🛠️
- Expert Insights: Learn from Prof. Kiran Beldar's extensive experience and insights, gleaned from years of expertise in renewable energy systems. 🧑🏫
- Case Study Deep Dive: The detailed case study will showcase the end-to-end process of designing and installing a rooftop solar power plant, complete with estimation tools for monthly energy yield and graphical representations. 📈
Who Should Take This Course
This course is perfect for:
- Students: Who wish to enhance their knowledge in renewable energy and sustainable design. 🎓
- Solar Technicians: Looking to optimize rooftop solar installations for maximum efficiency and power generation. 🔧
- Job Seekers: Eager to enter the solar industry with a solid understanding of rooftop systems. 💼
- Entrepreneurs: Aiming to invest in or start their own solar energy ventures. 🚀
Enroll Now and Transform Your Future!
Embark on your journey to become an expert in rooftop solar power plant design with "A to Z Design of Rooftop Solar Power Plant." Sign up today and unlock a world of sustainable opportunities! 🌞💡
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Our review
Course Review for "Understanding Solar Systems: A Comprehensive Guide"
Overall Rating: 3.95/5
Introduction
The course "Understanding Solar Systems: A Comprehensive Guide" has garnered a global rating of 3.95, based on recent reviews. Students have found the content enlightening and informative, yet there are concerns regarding audio quality and presentation errors that need to be addressed.
Pros
- Informative Content: Several students reported a significant increase in their knowledge about solar systems, emphasizing the practical education they gained from the course.
- Engaging Material: The subject matter has been well-received, with learners appreciating the depth and breadth of topics covered.
- Value for Money: Despite some issues with presentation and audio quality, most students agree that the course provides good value, especially given its affordable pricing.
Cons
- Audio Quality Concerns: One consistent feedback is the need for sound dampening in the instructor's studio as the audio quality has been described as "very hollow."
- Presentation Errors: There have been instances where calculations were incorrect, and explanations for these were not provided. This lack of clarity led to confusion among students.
- Presentation Slides: The slides used in the course contain several mistakes and, additionally, the instructor's image blocked important parts of the slide during lectures. Students expressed that having error-free slides as a resource would greatly enhance learning.
- Audio-Visual Issues: Some reviews mentioned that the reading of the PowerPoint slides was accompanied by no explanation at all, which students found to be a waste of money if it lacks proper teaching support.
Course Review Summary
In summary, "Understanding Solar Systems: A Comprehensive Guide" is a well-received course in terms of content and value for the price. However, there are notable issues with audio quality and presentation that need to be improved. The instructor's studio should have sound dampening to minimize echo, and the slides should be double-checked for accuracy and clarity before being used in lectures. Additionally, the inclusion of detailed explanations during the reading of slides is crucial to ensure students are not just reading but learning from the course material.
Recommendation: The course has potential with its rich content; however, technical and presentation enhancements will significantly improve learner experience and satisfaction. It is recommended that the instructor takes steps to address these issues for future sessions of the course.
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