Power Projects Secures Grid Compliance Study for a 144.6 MW Renewable Energy Project with 25 MW / 50 MWh BESS
We are pleased to share that Power Projects has been awarded a Grid Compliance Study for a large-scale hybrid renewable energy project comprising 72.60 MW Solar, 72 MW Wind, and 25 MW / 50 MWh Battery Energy Storage System (BESS).
This study plays a critical role in supporting reliable grid integration and validating the performance of renewable generation and energy storage systems under various operating and grid conditions.
About the Study
The assignment involves comprehensive grid compliance assessment for a hybrid renewable energy system integrating Solar PV, Wind Power, and Battery Energy Storage.
The study includes advanced simulation-based analysis using PSS®E and PSCAD, covering steady-state performance, reactive power capability, power quality, dynamic response, plant modelling, and benchmarking.
The analysis will evaluate system performance under different operating conditions and grid disturbances to support reliable and compliant grid integration.
Scope of Work
- Network Modelling
- Steady-State and Reactive Power Capability Study
- Harmonic Analysis
- DC Current Injection Study
- Flicker Study
- Low Voltage Ride Through (LVRT) Study
- High Voltage Ride Through (HVRT) Study
- Frequency Response Study
- Ramping Capability Assessment
- RMS Plant Modelling using PSS®E
- EMT Modelling using PSCAD
- Plant Model Validation
- P–Q Capability Analysis
- Benchmarking Study
Key Outcomes
The study will support reliable grid integration by assessing system performance, power quality, reactive power capability, dynamic response, and compliance with applicable grid connectivity requirements.
This award further strengthens Power Projects' expertise in Grid Compliance Studies, Renewable Energy Integration, BESS, RMS & EMT Simulations, and Advanced Power System Engineering.
Need a Grid Compliance Study for Your Renewable Project?
Power Projects delivers PSS®E and PSCAD-based grid compliance, RMS & EMT simulation, and BESS integration studies for solar, wind, and hybrid renewable projects worldwide.