Office building in Opole
- Country PL, Opole
- Build year 2025
- Area 3000 m²
- LOXONE partner Grzegorz Marchewka Great Automation

Challenge
The project's goal was to comprehensively increase the building's energy efficiency and improve its monitoring and management, with particular emphasis on the office and warehouse areas. The goal was to create a coherent system that would optimize energy consumption while ensuring occupant comfort and the reliable operation of all technical installations.
The project required the integration of numerous, diverse building automation technologies and systems. This primarily included lighting control, which was adapted to current operating conditions and daylight availability, as well as shading systems to limit room overheating and reduce cooling demand.
Another key element was the integration of several independent ventilation and air conditioning units, responsible for maintaining appropriate air parameters in various areas of the building. The system was expanded to include heater control, allowing for effective temperature management during winter and in areas requiring additional heating.
A key aspect of the project was also the implementation of an energy consumption monitoring system, encompassing both comprehensive utility balancing and detailed analysis of individual areas and devices. This enabled ongoing monitoring of energy efficiency and the rapid identification of potential losses and inefficiencies.
This required the integration of multiple technologies into a single, coherent building management system (BMS), which required ensuring compatibility across various communication protocols, synchronizing device operation, and creating a central platform enabling intuitive control and data analysis.
The project required the integration of numerous, diverse building automation technologies and systems. This primarily included lighting control, which was adapted to current operating conditions and daylight availability, as well as shading systems to limit room overheating and reduce cooling demand.
Another key element was the integration of several independent ventilation and air conditioning units, responsible for maintaining appropriate air parameters in various areas of the building. The system was expanded to include heater control, allowing for effective temperature management during winter and in areas requiring additional heating.
A key aspect of the project was also the implementation of an energy consumption monitoring system, encompassing both comprehensive utility balancing and detailed analysis of individual areas and devices. This enabled ongoing monitoring of energy efficiency and the rapid identification of potential losses and inefficiencies.
This required the integration of multiple technologies into a single, coherent building management system (BMS), which required ensuring compatibility across various communication protocols, synchronizing device operation, and creating a central platform enabling intuitive control and data analysis.
Solution
I was responsible for launching the investment and overseeing its implementation, including building automation systems and the integration of all technical installations. My responsibilities included coordinating work related to the implementation of the building management system (BMS), configuring and commissioning individual subsystems, and ensuring their proper interoperability within a single, coherent infrastructure.
As part of the project, I was responsible for integrating solutions including lighting control, shading systems, ventilation, air conditioning, and heaters, as well as an energy consumption monitoring system. A key challenge was combining multiple independent technologies and devices from different manufacturers, which required appropriate communication configuration and unified control logic.
The solutions implemented included a central BMS system enabling the management of all installations from a single location, the implementation of building operation scenarios adapted to office and warehouse modes, and automatic control based on schedules, occupancy sensors, and environmental conditions. An ongoing energy monitoring system was also implemented, allowing for real-time consumption analysis and equipment optimization.
Thanks to the solutions implemented, we were able to effectively integrate all systems, ensuring their stable and reliable operation. The project was a success – all installations were launched as planned, and the system operates consistently and efficiently, meeting requirements for energy efficiency, user comfort, and the ability to manage the entire facility from a single platform.
As part of the project, I was responsible for integrating solutions including lighting control, shading systems, ventilation, air conditioning, and heaters, as well as an energy consumption monitoring system. A key challenge was combining multiple independent technologies and devices from different manufacturers, which required appropriate communication configuration and unified control logic.
The solutions implemented included a central BMS system enabling the management of all installations from a single location, the implementation of building operation scenarios adapted to office and warehouse modes, and automatic control based on schedules, occupancy sensors, and environmental conditions. An ongoing energy monitoring system was also implemented, allowing for real-time consumption analysis and equipment optimization.
Thanks to the solutions implemented, we were able to effectively integrate all systems, ensuring their stable and reliable operation. The project was a success – all installations were launched as planned, and the system operates consistently and efficiently, meeting requirements for energy efficiency, user comfort, and the ability to manage the entire facility from a single platform.
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