The Facility’s Energy Maestro
End-to-end energy management solutions designed to integrate advanced hardware, AI-powered software, and innovative algorithms. A comprehensive platform that enables seamless energy monitoring, analysis, and optimization to achieve sustainability and maximize efficiency.
Real-time Optimization
Seamless Integration
Predictive Insights
Sustainability
Scalability
Reliability
Insights
The entire energy management system can be instantly monitored and controlled via this panel.
🔹 Monitoring: The status of all components, such as BESS (Battery Energy Storage System), transformers, inverters, the grid, generators, and solar panels, can be tracked.
🔹 BESS: The charge/discharge status, temperatures, and power outputs of battery systems can be instantly viewed.
🔹 Transformers & Inverters: Energy conversions and system performance can be analyzed.
🔹 Transformer Health: Transformer losses, temperatures, power given, currents, and past operations can be easily accessed.
🔹The status of all inverters can be examined in detail, and interventions can be made.
🔹Inverters Actual Power,
🔹Inverters Efficiency,
🔹Inverter Voltage AC,
🔹Inverter Current AC,
🔹Inverter Voltage DC,
🔹Inverter Current DC,
🔹Invertors Power Factor,
🔹Invertors Tempature,
Automation
A comprehensive overview of the energy management system’s overall performance can be obtained by users from these charts; consumption details can be monitored, maintenance needs can be tracked, and critical conditions requiring attention can be observed.
🔹 Total Energy Usage Today
🔹 Active Power
🔹 Reactive Power
🔹 BESS State of Charge
🔹 PCS State
🔹 Current Energy Source
🔹 Daily Energy Cost
🔹 Solar Energy Capacity
🔹 Panel Temperature
🔹 Daily Avoided CO2 Emission (%)
🔹 Daily Usage (in 100 kWh units)
🔹 Monthly Cost Savings (TL)
🔹 Daily Usage Per Source (kW)
🔹SCADA
The energy flow diagram of the facility can be examined by users from these charts to obtain an overview of the system’s general operation; the performance of BESS units (charge status, temperature), the PCS connection status, consumption/production data of the facilities (Facility 1 and 2), energy consumption of the EV charger and heat pump, performance indicators like power factor, and critical parameters (e.g., AC Line 150 temperature warning) can be observed. This diagram visualizes the energy flow and component interactions, providing control over facility management.