
Sustainable and Renewable Energy Course
Master the full spectrum of sustainable and renewable energy — from solar and wind to storage, smart grids, and project finance. This course equips you with the technical knowledge, analytical tools, and strategic frameworks to drive real-world energy transition projects. Whether you're launching a career or leveling up professionally, this is your definitive guide to the clean energy economy.
What you will learn:
Assess solar, wind, hydro, biomass, and geothermal resources for project development.
Size and design PV and wind systems using industry-standard performance analysis methods.
Evaluate energy storage technologies and match them to specific renewable energy applications.
Navigate the full project development lifecycle, from site selection to financial close.
Apply economic tools such as LCOE, NPV, and IRR to appraise renewable energy investments.
Analyze grid integration challenges and identify smart grid and demand-side solutions.
How you study in practice Sustainable and Renewable Energy Course
How you practice Sustainable and Renewable Energy Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Energy and Sustainability
Foundations of Energy and Sustainability
Lesson 1 • Sustainability Frameworks and Principles
Introduces sustainability definitions, the triple-bottom-line model, and life-cycle thinking. Equips students to evaluate energy systems holistically.
Lesson 2 • The Global Energy Transition
Surveys drivers, barriers, and milestones of the shift from fossil fuels to renewables. Sets the strategic context for all subsequent chapters.
Lesson 3 • Energy Fundamentals and Units
Covers energy forms, conversion principles, and standard measurement units. Provides the quantitative vocabulary needed throughout the course.
Lesson 4 • Environmental Impacts of Fossil Fuels
Examines greenhouse gas emissions, air quality degradation, and ecological damage from fossil fuel use. Links environmental harm to the urgency of renewable adoption.
Lesson 5 • Global Energy Demand and Supply
Analyzes current global energy consumption patterns and supply sources. Contextualizes the scale of the transition required.
Chapter 2HideHide detailsSee detailsSolar Energy Technologies and Applications
Solar Energy Technologies and Applications
Lesson 1 • PV System Sizing and Performance Analysis
Applies load analysis, yield estimation, and performance ratio calculations to real projects. Students produce a complete residential or commercial system sizing exercise.
Lesson 2 • PV System Design and Components
Details inverters, charge controllers, wiring, and mounting structures for PV systems. Connects component knowledge to functional system design.
Lesson 3 • Photovoltaic Cell and Module Technology
Covers PV cell physics, module types, and performance parameters. Students distinguish technology trade-offs relevant to project selection.
Lesson 4 • Solar Resource Assessment
Explains solar irradiance, sun path geometry, and data tools for site evaluation. Accurate resource assessment underpins all solar system sizing decisions.
Lesson 5 • Solar Thermal Systems
Examines flat-plate and evacuated-tube collectors, concentrating solar power, and thermal storage. Broadens solar understanding beyond electricity generation.
Chapter 3HideHide detailsSee detailsWind Energy Technologies and Applications
Wind Energy Technologies and Applications
Lesson 1 • Wind Resource Characterization
Covers wind speed distributions, Weibull statistics, and measurement methods. Accurate resource data is the foundation of any wind project.
Lesson 2 • Offshore Wind Technology
Examines fixed-bottom and floating foundation types, installation logistics, and offshore electrical systems. Highlights the unique engineering challenges of marine environments.
Lesson 3 • Wind Turbine Aerodynamics and Components
Explains lift-based rotor aerodynamics, Betz limit, and major turbine components. Connects physics to turbine design choices.
Lesson 4 • Wind Energy Yield and Feasibility Assessment
Integrates resource data, turbine power curves, and losses into annual energy production estimates. Students complete a simplified wind project feasibility study.
Lesson 5 • Onshore Wind Farm Design
Addresses turbine siting, wake effects, spacing optimization, and grid connection. Students apply layout principles to minimize energy losses.
Chapter 4HideHide detailsSee detailsHydropower, Biomass, and Geothermal Energy
Hydropower, Biomass, and Geothermal Energy
Lesson 1 • Comparing Dispatchable Renewables
Applies a structured framework to compare cost, reliability, environmental impact, and scalability across hydro, biomass, and geothermal. Prepares students for multi-technology portfolio decisions.
Lesson 2 • Biomass and Bioenergy Pathways
Surveys biomass feedstocks, thermochemical and biochemical conversion routes, and biofuel types. Students evaluate sustainability criteria for bioenergy projects.
Lesson 3 • Geothermal Energy Systems
Explains geothermal gradients, reservoir types, drilling, and power plant configurations. Positions geothermal as a baseload renewable with geographic constraints.
Lesson 4 • Hydropower Resource and Technology
Covers hydraulic head, flow measurement, turbine types, and run-of-river vs. reservoir systems. Establishes hydropower as a mature, flexible renewable resource.
Lesson 5 • Hydropower Environmental and Social Impacts
Analyzes ecosystem disruption, sediment transport, fish passage, and community displacement. Balances hydropower benefits against its significant environmental trade-offs.
Chapter 5HideHide detailsSee detailsEnergy Storage Systems and Technologies
Energy Storage Systems and Technologies
Lesson 1 • Electrochemical Battery Technologies
Covers lithium-ion, flow batteries, sodium-ion, and emerging chemistries with performance trade-offs. Students match battery types to application requirements.
Lesson 2 • Mechanical and Thermal Storage
Examines pumped hydro, compressed air, flywheel, and thermal energy storage systems. Broadens the storage toolkit beyond electrochemical solutions.
Lesson 3 • Hydrogen as an Energy Carrier
Covers electrolysis, hydrogen storage, fuel cells, and the green hydrogen value chain. Positions hydrogen as a long-duration storage and decarbonization vector.
Lesson 4 • Role of Storage in Renewable Systems
Explains variability challenges, grid services, and the value stack of energy storage. Motivates why storage is central to high-penetration renewable grids.
Lesson 5 • Storage System Sizing and Integration
Applies energy and power requirements, round-trip efficiency, and dispatch strategies to size storage for solar and wind projects. Students complete a storage sizing exercise.
Chapter 6HideHide detailsSee detailsSmart Grids and Renewable Energy Integration
Smart Grids and Renewable Energy Integration
Lesson 1 • Power Grid Fundamentals
Reviews AC power, voltage levels, transmission and distribution architecture, and grid stability concepts. Provides the electrical foundation for understanding integration challenges.
Lesson 2 • Demand Response and Flexibility
Examines demand response programs, flexible loads, virtual power plants, and aggregation platforms. Shows how demand-side resources complement supply-side renewables.
Lesson 3 • Smart Grid Technologies and Infrastructure
Covers advanced metering, sensors, communication protocols, and grid automation. Connects digital infrastructure to renewable integration capability.
Lesson 4 • Grid Planning for High Renewable Penetration
Applies capacity expansion modeling, ancillary service markets, and interconnection planning to 100% renewable scenarios. Students evaluate grid investment strategies.
Lesson 5 • Variable Renewable Integration Challenges
Analyzes ramp rates, frequency deviations, curtailment, and congestion caused by high renewable penetration. Frames the technical problems that subsequent solutions address.
Chapter 7HideHide detailsSee detailsRenewable Energy Project Development
Renewable Energy Project Development
Lesson 1 • Renewable Energy Project Finance
Covers project finance structures, debt and equity instruments, power purchase agreements, and revenue certainty mechanisms. Students model basic project cash flows.
Lesson 2 • Site Selection and Due Diligence
Covers land assessment, resource confirmation, environmental screening, and community mapping. Rigorous site selection reduces project risk before significant capital is committed.
Lesson 3 • Construction, Commissioning, and Handover
Details construction management, quality assurance, commissioning testing, and operational handover procedures. Students understand how development transitions to operations.
Lesson 4 • Permitting and Regulatory Compliance
Explains environmental impact assessment, grid interconnection applications, and construction permitting processes. Students navigate regulatory pathways without referencing jurisdiction-specific codes.
Lesson 5 • Procurement and Contracting
Examines engineering, procurement, and construction contracts, equipment supply agreements, and risk allocation. Proper contracting protects project economics and timelines.
Chapter 8HideHide detailsSee detailsEnergy Policy, Economics, and Strategic Planning
Energy Policy, Economics, and Strategic Planning
Lesson 1 • National and Regional Energy Planning
Applies integrated resource planning, scenario analysis, and just transition principles to national-scale renewable strategies. Students produce a regional energy transition roadmap.
Lesson 2 • Renewable Energy Policy Instruments
Surveys feed-in tariffs, auctions, renewable portfolio standards, carbon pricing, and subsidies. Students evaluate policy effectiveness across different market contexts.
Lesson 3 • Energy Market Structures and Pricing
Explains wholesale electricity markets, marginal pricing, capacity markets, and the merit order effect of renewables. Connects market design to renewable investment signals.
Lesson 4 • Economic Analysis of Renewable Projects
Applies levelized cost of energy, net present value, internal rate of return, and payback period to renewable investments. Students perform a full economic appraisal.
Lesson 5 • Corporate Renewable Energy Strategies
Covers corporate power purchase agreements, on-site generation, renewable energy certificates, and net-zero commitments. Students design a corporate renewable procurement strategy.
Your valid completion certificate
This course is for you:
Engineering graduate: eager to specialize in a fast-growing technical sector.
Environmental consultant: wanting to add quantitative energy skills to their practice.
Finance professional: looking to evaluate and fund clean energy investment opportunities.
Policy analyst: seeking technical grounding to strengthen their energy transition work.
Career changer: motivated to leave fossil fuel industries for a renewable future.
Sustainability manager: ready to move beyond reporting into hands-on project leadership.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can switch chapters and skip content I don't need.

I like the content and the presentation style and video transcription, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.

Top trainings
FAQ
Who is Dedika?
Is the certificate valid in United States?
Are the courses free?
What is the course workload?
What are the courses like?
How do the courses work?
What is the duration of the courses?
What is the cost or price of the courses?
What is an EAD or online course and how does it work?
PDF Course




















