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Solar tracking controllers

Solar tracking controllers

First Solar Tracker Controller (TCU) developed and manufactured on a national scale in partnership with TECSCI LTDA.

Challenge: Large solar farms face the constant challenge of maximizing energy capture throughout the day and maintaining availability through constant equipment communications.

Solution: To address this challenge, the TCS-150 was developed, a solar tracker controller with AI technology for optimal positioning (TrackBoost) and communication via the LoRaWAN protocol.

Result: With the implementation of the equipment and its technologies, your plant can generate up to 13% more energy during the day, maintaining availability and communication at rates above 99%.

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Microgrid Sizing and Management

Microgrid Sizing and Management

First Intelligent and Integrated Platform for Microgrid Management

Challenge: The microgrid market faces ever-increasing challenges: correctly sizing complex hybrid systems, reducing energy costs, integrating multiple sources (solar, batteries, generators, and grid), and ensuring continuous operation and reliable real-time monitoring.

Solution: To address these challenges, the OptGrid platform was developed, covering the entire life cycle of a microgrid in three complementary modules: OptGrid-Size, OptGrid-Flow, and OptGrid-View.

Result: With the integration of the three modules, OptGrid enables a comprehensive approach to microgrid sizing, management, and operation.

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Remote Monitoring System and PV SCADA

Remote Monitoring System and PV SCADA

Remote Monitoring and SCADA System applied to the GD and GC solar power plant market.

Challenge: Intelligent monitoring, operation, and maintenance of all photovoltaic solar power plant equipment.

Solution: Creation of a system to perform readings, activations, and management of all equipment present in a photovoltaic plant. These include: SKID, CMP, Inverters, Strings, Controllers, and others.

Result: Creation of a complete and integrated system for asset management and performance monitoring in solar plants.

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Engineering Project

Engineering Project

Fluid Dynamics and Structural Analysis Project in partnership with PRATYC.

Challenge: Validate the structural behavior of solar plants under extreme wind speed conditions through computer simulations.

Solution: Calculate the fluid dynamics behavior of the client's solar structure through numerical simulations, and then understand and solve the critical points and improvements for the structural system through these loads.

Result: Structure validated and certified through numerical calculations. Assistance with certification by external agencies and greater market expansion due to delivery reliability.

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