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Hybrid RES Integration

Energy Transition

Committed to advocating the solutions which allow energy production from carbon-free sources of energy, while optimizing intermittent generation usage. We conduct feasibility studies, as well as grid integration, compliance and connection studies, all in line with applicable grid codes. Additionally we offer battery energy storage optimization on system and plant levels.

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Grid Connection Studies || Feasibility Studies || Grid Compliance Studies and Testing || Grid Integration Studies || PV plant || Wind farm || BESS || Hybrid systems || Microgrids || Hardware in loop (HIL) testing support || Stability in EMT domain || Control interaction study

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Germany, 2024

450MW BESS: Solution Development

To ensure the proposed system meets the power factor requirements at the connection point, we assessed the reactive power provided by the BESS facility. Using Power Factory by DIgSILENT, we conducted steady-state calculations to analyze equipment sizing, fault levels, and system losses.Ultimately, Go2Power designed a connection solution for the planned 450 MW BESS system, which will be linked to the grid through a 380 kV cable line.

Botswana, 2023-2024

Connection of 5 Renewable plants

Our role involved delivering technical support and developing comprehensive documentation for the grid connection of five state-of-the-art renewable energy power plants in Botswana. This includes two Concentrated Solar Power (CSP) facilities, two Photovoltaic (PV) plants, and an innovative wind farm, all supported by a Battery Energy Storage System (BESS) that guarantees four hours of operational autonomy.This groundbreaking initiative not only transforms Botswana's energy framework but also reinforces its dedication to sustainable development, laying the foundation for a more sustainable future.

Bosnia and Herzegovina, 2023

PV plants: Grid Connection

Our initial step involved creating a detailed simulation model using advanced network software. This model enabled us to perform a thorough set of calculations for integrating two photovoltaic (PV) plants into Bosnia and Herzegovina's transmission system. For steady-state and transient stability simulations, we used PSS/E, which provided a rigorous analysis of the network's performance.Additionally, we utilized Power Factory by DIgSILENT to assess power quality, ensuring that the integration of these PV plants adheres to the highest industry standards.

Greece, 2023

300 MW Wind Farm: Grid Compliance

When integrating wind farms into national transmission systems, it is crucial to verify their performance under both normal and critical operational conditions. This was the focus of our work for a contractor on a wind farm project with a licensed capacity exceeding 300 MW.Our task involved software modeling and detailed analysis to ensure the safe integration of the wind farm into the 400 kV national grid through a new overhead line. We achieved this by conducting an extensive range of load flow calculations, fault level assessments, dynamic modeling, electromagnetic transient (EMT) studies, and transformer energization analysis.

Saint Lucia, Caribbean region, 2023

BESS: Techno-Economic and Network study

The era of relying on diesel generators is over! Authorities in Saint Lucia have recognized the substantial potential of solar and wind energy. However, to maintain a stable energy supply during periods of low solar or wind production and to ensure consistent renewable generation, alternative solutions were necessary. This is where battery energy storage systems (BESS) became essential.Our techno-economic analysis, carried out using PLEXOS software, identified the optimal system dimensions while accounting for practical constraints. Additionally, we conducted an in-depth network analysis with PSS®E, including a comprehensive suite of steady-state and transient stability calculations.

Niger, 2023

250MW Wind Park: Grid Integration

Integrating a large wind farm into a power system with no existing wind energy production was a significant challenge. Recognizing that this wind farm could not only close the generation-demand gap in Niger's power system but also potentially position the country as an energy exporter, we undertook the task with precision.We conducted comprehensive energy assessments, economic analyses, and technical verifications to address the complexities involved. Our approach included detailed steady-state evaluations and, more importantly, transient state simulations across various wind-related scenarios.

Burkina Fasso, 2019

BESS Assessment: On country-wide level

After assessing the country’s current energy policies, we devised a strategy for autonomous synchronous reserve and explored the potential for integrating battery energy storage systems (BESS) capable of serving as spinning reserves and participating in energy shifting processes.Our analysis with PLEXOS provided hourly generation dispatch results, while PSS/E was employed to develop new dynamic models and verify the technical feasibility of the solutions proposed by PLEXOS.