
Renewable Energy Project Development: From Site to COD
Published 8/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 56m | Size: 229.57 MB
Develop solar and wind projects through land, permits, grid connection, RTB, bankability and COD.
What you'll learn
Understand the full renewable project lifecycle from origination and site control through RTB, construction, commissioning and COD.
Assess site, land, permitting, environmental and grid risks that determine whether a renewable project is genuinely developable.
Evaluate project maturity, development economics, commercial readiness and bankability using practical developer decision frameworks.
Integrate technical, legal, grid, commercial and financing workstreams to move solar and wind projects toward execution.
Requirements
No prior renewable energy development experience is required. A basic understanding of energy, business or infrastructure projects is helpful but not essential.
Description
How does a renewable energy opportunity become a project that can actually be financed, built and operated?
Renewable energy project development requires much more than identifying a good site or selecting solar panels and wind turbines. Land rights, environmental constraints, permitting, grid connection, technical design, commercial strategy, project economics and financing readiness must all come together before significant capital can safely move into construction.
This course provides a practical, structured introduction to the complete renewable energy project development lifecycle — from initial opportunity and origination through Ready-to-Build, Notice to Proceed, construction, commissioning and Commercial Operation Date.
The course is designed around the decisions that renewable energy developers actually need to make.
You will learn how to
- understand the complete renewable project development lifecycle;
- assess whether a market is genuinely attractive for project development;
- originate and qualify renewable energy opportunities;
- structure development workstreams, schedules, stage gates and risk registers;
- screen potential sites and identify fatal flaws before significant capital is committed;
- understand solar and wind resource assessment, energy yield, P50 and P90;
- secure appropriate land rights, access, easements and infrastructure corridors;
- understand planning, permitting and environmental development;
- assess biodiversity and environmental constraints early enough to influence project design;
- develop a practical grid connection strategy;
- understand connection applications, grid studies, connection offers and grid rights;
- integrate land, grid, environmental and technical constraints into preliminary plant design;
- understand surveys, constructability and project logistics;
- assess commercial pathways including merchant exposure, PPAs, auctions and support schemes;
- understand development economics, sensitivities and the cost of delay;
- evaluate financing readiness and the concept of project bankability;
- determine what Ready-to-Build really means and how development due diligence should test it; and
- understand the transition from RTB and Notice to Proceed through construction, commissioning and COD.
Throughout the course, we follow Project Aurora, a fictional 150 MW utility-scale solar project, to show how development decisions interact in practice.
You will see why renewable project development is not a linear checklist. A change in grid connection can require a new cable route. That route may require additional land rights. New land may create environmental constraints. Those constraints may require redesign, which can then affect energy yield, CAPEX, permitting and the project schedule.
This interaction between different workstreams is at the heart of professional renewable project development.
The course focuses primarily on utility-scale solar PV and onshore wind, with selected references to hybrid projects and battery storage where relevant. It uses internationally applicable development principles with a strong European context, while recognising that detailed permitting, land and grid connection procedures vary between jurisdictions.
This course is particularly relevant for renewable energy developers, project managers, investors, lawyers, engineers, consultants, lenders, utilities, IPPs, EPC professionals and anyone seeking to understand how renewable projects move from opportunity to executable energy assets.
No previous renewable energy development experience is required. The course is concise enough to provide a clear introduction while maintaining the professional concepts and terminology used in real renewable energy projects.
By the end of the course, you should be able to look at a renewable energy opportunity and ask the questions that matter
- Is the site developable?
- Are the required land rights secure?
- Can the project obtain the necessary permits?
- Can it connect to the grid on acceptable terms?
- Is the technical solution coherent?
- Does the project have a credible revenue pathway?
- Is it commercially and financially ready?
- And is it genuinely Ready-to-Build?
The objective is not simply to understand renewable energy technology.
It is to understand how a renewable energy project becomes a coherent, authorised, connected, bankable, constructible and ultimately operating asset.
AI disclosure: AI-assisted tools and text-to-speech technology were used in the audiovisual production of this course. The curriculum, professional analysis, examples and conclusions were developed, reviewed and validated by the instructor.
Who this course is for
Renewable energy developers, project managers, investors, lawyers, engineers, consultants, IPP and utility professionals, lenders and anyone seeking a practical understanding of how utility-scale solar and wind projects move from opportunity to RTB, construction and COD.
You do not have permission to view the full content of this post. Log in or register now.