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Autor Tópico: Solar Plant Design Engineering: Complete Guide  (Lida 153 vezes)

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Solar Plant Design Engineering: Complete Guide
« em: 20 de Maio de 2025, 11:54 »


Published 5/2025
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 1h 6m | Size: 676 MB

Learn Solar PV Design, Sizing, Layout, and Simulation for Real-World Projects


What you'll learn
Photovoltaic (PV) Technology (Overview): Solar Energy, PV Technologies, PV Materials, PV Types, PV Module Rating, PV System Components.
Photovoltaic (PV) Performance: Factors affecting PV Performance, Environmental Factor, Electrical Characteristics, PV Module Output, PV Module Efficiency
Applicable codes and standards, PV Array Sizing
PV System Configurations: System Configurations, Grid Connected PV Systems, Standalone PV Systems, Grid Tied with Battery Backup Systems, Technical Comparison
Inverters: Types of Inverters, Standalone Inverters, Central Inverter, String Inverters, Installation Requirements, Sizing Calculation
Charge Controllers: Charge Controller Requirements, Charge Regulations, Types of Charge Controllers, Selection and Sizing of Charge Controllers.
Batteries: Types of Batteries & Classification, Lead Acid Batteries, Alkaline Batteries, Battery Parameters for PV Systems, Battery Sizing Calculation
Balance of Systems: Auxiliary Systems, AC & DC Distribution Boards, Sizing of {AC breakers ,DC breakers and AC Disconnect Panel
Metering and Instrumentation, Combiner Box, Earthing Requirements, Lightning Protection Requirements, Cabling and Wiring Requirements
Design and Sizing of PV System: Design and Sizing principles for PV System System, Sizing for Grid Interconnected systems, Sizing for Grid tie Solar System
Building Integrated PhotoVoltaic System (BIPV): Benefit of BIPV, Architectural Criteria for BIPV, Applications for BIPV, Challenge to BIPV Technology
Software Overview
Requirements
Diploma or Degree in engineering (preferably in Electrical, Electronics, Mechanical, or Energy Engineering).
Computer Skills - Familiarity with MS Excel.
A keen interest in solar energy, sustainability, and clean technologies.
Description
Why Solar PV Plant?Solar Photovoltaic (PV) technology is one of the fastest-growing renewable energy sources globally. With increasing energy demands, rising fuel prices, and the urgent need to reduce carbon emissions, solar power offers a clean, reliable, and sustainable solution.Importance of Solar EnergySolar energy reduces dependency on fossil fuels, lowers electricity bills, and promotes energy independence. It plays a key role in achieving global climate goals and rural electrification, making it essential for both developed and developing nations.Merits and DemeritsMerits:Renewable and clean source of energyLow operational and maintenance costIdeal for both small and large-scale installationsDemerits:High initial investmentWeather-dependent energy outputRequires large space for ground-mounted systemsWhat You'll Learn (Course Contents)Fundamentals of Solar PV TechnologySolar Radiation, Site Selection & FeasibilitySystem Components (Modules, Inverters, Batteries, etc.)Designing Grid-Tied and Off-Grid SystemsShadow Analysis and Layout PlanningCable Sizing, Inverter Sizing, and Energy Yield EstimationSoftware tools like PVsyst, Helioscope, and AutoCADPractical Project Design with Case StudiesCareer Opportunities and Future ScopeWith government support and global investments in renewable energy, the solar industry is booming. Skilled professionals in solar plant design are in high demand across EPC companies, power sectors, startups, and consultancy firms.Join this course to gain practical, job-oriented knowledge and become a skilled Solar Design Engineer!
Who this course is for
Engineering Students and Graduates
Working Professionals
Project Managers and Site Engineers
Entrepreneurs and Consultants
Government & NGO Professionals
Homepage:
Código: [Seleccione]
https://www.udemy.com/course/solar-plant-design-engineering-complete-guide/
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