Description
Course Name: Diploma in Renewable Energy Project Management
Course Id: DREPM/Q1001
Eligibility: 10+2(higher Secondary) or equivalent.
Objective: The Diploma in Renewable Energy Project Management is designed to equip learners with the knowledge and skills required to plan, execute, and manage renewable energy projects across solar, wind, hydro, and other clean energy sectors. The course focuses on understanding the full project lifecycle, from feasibility studies and resource assessment to implementation, monitoring, and maintenance of renewable energy systems.
Duration: Six Months.
How to Enroll and Get Certified in Your Chosen Course:
Step 1: Choose the course you wish to get certified in.
Step 2: Click on the “Enroll Now” button.
Step 3: Proceed with the enrollment process.
Step 4: Enter your billing details and continue to course fee payment.
Step 5: You will be redirected to the payment gateway. Pay the course and exam fee using one of the following methods:
Debit/Credit Card, Wallet, Paytm, Net Banking, UPI, or Google Pay.
Step 6: After successful payment, you will receive your study material login ID and password via email within 48 hours of fee payment.
Step 7: Once you complete the course, take the online examination.
Step 8: Upon passing the examination, you will receive:
• A soft copy (scanned) of your certificate via email within 7 days of examination.
• A hard copy (original with official seal and signature) sent to your address within 45 day of declaration of result.
Step 9: After certification, you will be offered job opportunities aligned with your area of interest.
Online Examination Detail:
Duration- 120 minutes.
No. of Questions- 60. (Multiple Choice Questions).
10 Questions from each module, each carry 10 marks.
Maximum Marks- 600, Passing Marks- 40%.
There is no negative marking in this module.
| How Students will be Graded: | ||
| S.No. | Marks | Grade |
| 1 | 91-100 | O (Outstanding) |
| 2 | 81-90 | A+ (Excellent) |
| 3 | 71-80 | A (Very Good) |
| 4 | 61-70 | B (Good) |
| 5 | 51-60 | C (Average) |
| 6 | 41-50 | P (Pass) |
| 7 | 0-40 | F (Fail) |
Key Benefits of Certification- Earning a professional certification not only validates your skills but also enhances your employability. Here are the major benefits you gain:
Practical, Job-Ready Skills – Our certifications are designed to equip you with real-world, hands-on skills that match current industry demands — helping you become employment-ready from day one.
Lifetime Validity – Your certification is valid for a lifetime — no renewals or expirations. It serves as a permanent proof of your skills and training.
Lifetime Certificate Verification – Employers and institutions can verify your certification anytime through a secure and reliable verification system — adding credibility to your qualifications.
Industry-Aligned Certification –All certifications are developed in consultation with industry experts to ensure that what you learn is current, relevant, and aligned with market needs.
Preferred by Employers – Candidates from ISO-certified institutes are often prioritized by recruiters due to their exposure to standardized, high-quality training.
Free Job Assistance Based on Your Career Interests – Receive personalized job assistance and career guidance in your preferred domain, helping you land the right role faster.
Syllabus:-
Module 1: Renewable Energy Technologies, Site Feasibility and Asset Engineering: Overview of the Global Renewable Energy Landscape and Decarbonization Drivers, Working Principles of Utility-Scale Solar Photovoltaic (PV) Technologies, Onshore and Offshore Wind Turbine Engineering Mechanics, Foundations of Biomass, Hydroelectric and Green Hydrogen Energy Systems, Executing Site Feasibility Studies and Solar/Wind Resource Assessments, Topographical Mapping, Geotechnical Surveys and Land Sourcing Strategies, Energy Yield Estimation (EYE) Modeling and System Sizing Simulations, Technical Blueprint Reading, Electrical Schematics, and Single-Line Diagrams, Battery Energy Storage Systems (BESS) Integration and Hybrid Infrastructure, Standard Operating Procedures for Initial Engineering Assessments and Site Inspections.
Module 2: Project Life Cycle, Scheduling Mechanics and Procurement Strategy: Phases of the Renewable Energy Project Life Cycle (Initiation to Commissioning), Work Breakdown Structure (WBS) Architecture for Clean Energy Infrastructures, Critical Path Method (CPM) and PERT Chart Scheduling for Substation Setups, Sizing Project Timelines, Milestones and Resource Management Constraints, Engineering, Procurement and Construction (EPC) Contract Framework Design, Power Purchase Agreements (PPAs) and Feed-in Tariff (FiT) Structure Configurations, Global Supply Chain Logistics, Equipment Sourcing and Lead-Time Management, Vendor Risk Assessment Matrices and Strategic Third-Party Onboarding Controls, Material Resource Optimization, Inventory Management and Warehouse Dynamics, Utilizing Project Management Software Tools (Primavera P6, MS Project) for Clean Tech Trackings.
Module 3: Financial Engineering, Capital Sizing and Investment Analytics: Foundations of Renewable Energy Project Finance and Capital Stack Allocation, Key Performance Indicators (KPIs) for Clean Energy Asset Financial Operations, Designing and Managing Detailed Levelized Cost of Energy (LCOE) Dashboards, Sizing Capital, Debt-to-Equity Optimization and Venture Sourcing Strategies, CAPEX/OPEX Financial Modeling, Cash Flow Projections and Net Present Value (NPV), Tax Equity Financing, Production Tax Credits (PTC) and Investment Tax Credits (ITC), Carbon Pricing Mechanics, Internal Carbon Fees and Compliance/Voluntary Carbon Credit Markets, Financial Risk Management, Currency Hedging and Interest Rate Volatility Mitigations, Sourcing Green Bonds, Sustainable Finance and Commercial Clean Energy Loans, Preparing Investment-Grade Dossiers and Project Pitching Frameworks for Institutional Boards.
Module 4: Regulatory Compliances, Grid Interconnection and Environmental Legislation: Navigating Grid Interconnection Policies, Grid Code Compliances and Transmission Access, Interconnection Feasibility Studies, System Impact Testing and Facilities Agreements, Power Grid Infrastructure, Transformers, Substations and High-Voltage Line Layouts, Environmental Impact Assessments (EIAs), Biodiversity Net Gain (BNG) Audits and Approvals, Land-Use Regulations, Zoning Laws and Right-of-Way (ROW) Acquisition Frameworks, National and International Regulatory Frameworks Analysis (including Federal, State and Local Statutory Acts), Carbon Accounting Integration and Greenhouse Gas (GHG) Protocol Alignment across Sites, Data Privacy Legislation, Cybersecurity Protocols for Connected SCADA and Smart Grid Infrastructure, Workplace Safety Standards, Hazard Mitigation and OSHA Health Guidelines, Third-Party Auditing Readiness, Commissioning Documentation Management and Regulatory Transparency Disclosures.
Module 5: Construction Execution, Commissioning and Quality Control Governance: Mobilization Workflows, Civil Engineering Executions and Ground Mounting System Foundations, Mechanical Installation, Tracker Assembly and Wind Turbine Lifting Operations, High-Voltage Electrical Wiring, Inverter Station Setups and Cable Management Metrics, Quality Management Systems (QMS) Implementation Models and Six Sigma Defect Mitigations, Statistical Process Control (SPC), Real-Time Testing and Variance Analysis Tracking, Cold and Hot Commissioning Protocols, Performance Ratio (PR) Testing and Capacity Verifications, SCADA System Deployments for Real-Time Fleet Asset Monitoring and Control, Root Cause Analysis Frameworks, Critical Malfunction Troubleshooting and Technical Interventions, Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) Compliance Signatures, Managing Asset Handovers, As-Built Documentation Packages and Operational Readiness Transition Workflows.
Module 6: Operations & Maintenance (O&M), Contract Management and Capstone Evaluation: Operations & Maintenance (O&M) Strategy Formulations, Preventive vs Corrective Frameworks, Predictive Maintenance Workflows, Thermal Imaging and Drone Asset Inspections, Calculating and Optimizing Overall Equipment Effectiveness (OEE) and Availability Guarantees, Contract Management, Liquidated Damages Tracking and Warranty Claim Processing, Spare Parts Inventory Optimization and Supply Chain Restocking Cycles, Change Management Frameworks, Technical Team Leadership and Upskilling Workforces, Professional Practice Portfolio Assembly and Digital Case Study Technical Showcases, Technical Resume Architecture, Cover Letter Engineering and Executive Interview Simulations, Professional Networking Strategy, LinkedIn Profile Optimization and Energy Association Alliances, Final Capstone Project Demonstration, Simulated Utility-Scale Project Delivery Presentation and Competency Certification.



