Electrical systems are a fundamental component of modern facilities, supporting lighting, HVAC systems, elevators, pumps, communication systems, security equipment, data infrastructure, and other critical building services. Facility engineers therefore require a practical understanding of electrical engineering principles to operate facilities safely, maintain system reliability, coordinate maintenance activities, and respond effectively to electrical problems.
This training program, designed by Global Horizon Training Center, provides facility engineers and technical professionals with practical knowledge of electrical power distribution, transformers, switchgear, motors, protection systems, grounding, power quality, electrical maintenance, energy efficiency, and electrical safety within commercial, industrial, and institutional facilities.
The program emphasizes the practical responsibilities of facility engineers rather than advanced electrical design. Participants will learn how major electrical systems interact, how to interpret essential electrical information, recognize abnormal operating conditions, coordinate preventive maintenance, identify potential failures, and apply appropriate safety practices.
By the end of this training program, participants will be able to:
Understand fundamental electrical engineering concepts relevant to facility operations.
Identify major components of facility electrical distribution systems.
Understand transformers, switchgear, distribution boards, and protective devices.
Interpret basic electrical single-line diagrams.
Understand electrical loads, demand, and equipment ratings.
Recognize the operating principles of motors and motor control systems.
Understand emergency and standby power systems.
Identify common electrical faults and abnormal operating conditions.
Understand grounding and earthing principles.
Recognize common power quality problems.
Apply effective electrical preventive maintenance practices.
Identify early warning signs of electrical equipment deterioration.
Understand electrical safety, isolation, and LOTO requirements.
Improve facility electrical reliability and operational continuity.
Identify opportunities for electrical energy efficiency.
The program uses a practical, facility-oriented learning approach focused on understanding, operation, maintenance, and troubleshooting of electrical systems.
The methodology includes:
Instructor-led technical presentations.
Electrical diagrams and system illustrations.
Facility-based examples and scenarios.
Interpretation of simplified single-line diagrams.
Equipment operating and maintenance examples.
Electrical fault and troubleshooting discussions.
Preventive maintenance scenarios.
Electrical safety and risk discussions.
Energy-efficiency examples.
Case studies and knowledge-review sessions.
This program will help organizations improve the management, reliability, and safety of their facility electrical systems through:
Improved electrical knowledge among facility engineering personnel.
Increased reliability and availability of electrical systems.
Reduced risk of unexpected electrical failures.
Improved preventive maintenance planning.
Better identification of electrical equipment deterioration.
Reduced electrical-related downtime.
Improved coordination between facility, electrical, maintenance, and contractor teams.
Enhanced electrical safety and risk awareness.
Improved management of emergency and standby power systems.
Better understanding of power quality issues.
Improved energy-efficiency awareness.
More effective technical decision-making regarding electrical facility assets.
This training program is suitable for:
Facility Engineers
Facility Managers
Maintenance Engineers
Building Services Engineers
Electrical Maintenance Personnel
Mechanical Engineers involved in facility operations
MEP Engineers
Operations Engineers
Maintenance Supervisors
Plant Engineers
Reliability Engineers
Technical Supervisors
Asset Management Personnel
Property and Building Management Professionals
Technical Managers responsible for facility operations
Day 1 – Electrical Fundamentals & Facility Power Distribution
Essential electrical concepts for facility engineers
Voltage, current, resistance, power, and energy
AC and three-phase electrical systems
Power factor and electrical demand
Facility electrical distribution architecture
Main and sub-distribution boards
Electrical loads and equipment ratings
Reading basic single-line diagrams
Day 2 – Transformers, Switchgear & Protection
Transformer principles and facility applications
Transformer ratings and operating considerations
Switchgear and distribution equipment
Circuit breakers, isolators, and fuses
Protective relays and basic protection concepts
Overload, short-circuit, and earth-fault protection
Electrical panel inspection considerations
Common equipment failure indicators
Day 3 – Motors, Building Loads & Standby Power
Fundamentals of electrical motors
Motor starting and protection
Variable Frequency Drives (VFDs)
Electrical considerations for HVAC equipment
Pumps, elevators, and other facility loads
Emergency and standby generators
Automatic Transfer Switches (ATS)
Uninterruptible Power Supply (UPS) fundamentals
Essential and critical electrical loads
Day 4 – Electrical Maintenance, Power Quality & Energy Efficiency
Preventive electrical maintenance principles
Inspection and maintenance planning
Common electrical faults and troubleshooting approach
Overheating, loose connections, and insulation deterioration
Fundamentals of power quality
Voltage disturbances and harmonics
Power factor correction
Electrical energy consumption in facilities
Energy-efficiency improvement opportunities
Day 5 – Electrical Safety & Facility System Reliability
Electrical hazards in facility environments
Electric shock and arc-flash awareness
Safe electrical isolation
Lockout/Tagout (LOTO) principles
Grounding, earthing, and bonding
Electrical fire prevention
Electrical emergency response
Reliability and continuity of electrical supply
Managing electrical contractors and maintenance activities
Developing effective electrical maintenance priorities
Course review and key learning outcomes