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E-BoP (Electrical Balance of Plant)
E-BoP for Industrial Facilities and Fossil Fuel Power Plants
E-BoP for Industrial Facilities and Fossil Fuel Power Plants

Industrial facilities and fossil fuel power plants are complex structures that require high continuity, operational reliability, and grid compatibility. Kontrolmatik offers integrated EPC solutions covering all electrical, automation, and control infrastructure within the scope of Electrical Balance of Plant (E-BoP) for these facilities.

 

Kontrolmatik's E-BoP approach goes beyond just electrical distribution, addressing all systems that support the facility's production continuity, operational safety, and efficiency under a holistic structure.

Turnkey E-BoP EPC solutions for industrial facilities and fossil fuel–fired power plants
Medium and high voltage electrical distribution systems, main and auxiliary substations
Power transmission lines, cabling infrastructure, and power distribution panels
Control, protection, and automation systems (PLC, DCS, RTU)
SCADA-based monitoring, alarm management, performance tracking, and fault management
Grid connection systems, synchronization, and energy management solutions
Testing, commissioning, and commercial operation processes
Value Creation for Industrial Facilities and Fossil Fuel Power Plants
Value Creation for Industrial Facilities and Fossil Fuel Power Plants

Industrial facilities and fossil fuel–fired power plants are critical infrastructures that require uninterrupted operation, high operational safety, and full grid compliance. Through its integrated E-BoP (Electrical Balance of Plant) solutions, Kontrolmatik secures not only the current operational requirements of facilities but also their long-term performance, efficiency, and sustainability objectives.

 

With strong engineering expertise, advanced automation capabilities, and proven site execution experience, Kontrolmatik enables facilities to achieve high-performance and reliable power infrastructure, while optimizing operating costs and delivering maximum value throughout the entire system lifecycle.

Achieve high operational continuity and a safe operating environment,
Maintain stable and grid-compliant power generation
Reduce operating costs through low loss levels and optimized energy efficiency
Secure long-term and sustainable operational infrastructure, ensuring reliable return on investment