Modern industrial, commercial, infrastructure, and utility operations depend heavily on reliable and safe electrical power systems. Professionals from non-electrical engineering disciplines are increasingly required to interact with electrical equipment, participate in multidisciplinary projects, evaluate technical information, coordinate with electrical specialists, and contribute to operational and maintenance decisions. A practical understanding of electrical power systems is therefore essential even when electrical engineering is not their primary discipline.
This training program, designed by Global Horizon Training Center, provides participants with a structured and accessible introduction to the fundamentals of electrical power systems without requiring an electrical engineering background. The program explains electrical concepts using straightforward engineering terminology and emphasizes how electricity is generated, transmitted, distributed, controlled, protected, and ultimately utilized.
Throughout the five-day program, participants will develop an understanding of basic electrical quantities, AC and three-phase systems, generation and grid architecture, transformers, substations, switchgear, motors, protection, grounding, power quality, and electrical safety. Particular emphasis is placed on understanding system relationships and recognizing equipment functions rather than performing advanced electrical design calculations.
By the end of this training program, participants will be able to:
Explain the fundamental principles and terminology of electrical engineering.
Understand voltage, current, resistance, power, energy, frequency, and power factor.
Distinguish between AC and DC electrical systems.
Understand the principles of single-phase and three-phase electrical systems.
Describe the complete electrical power chain from generation through transmission and distribution to the end user.
Identify the major equipment used in electrical power systems and explain its function.
Understand the operating principles and applications of transformers.
Recognize the functions of substations, switchgear, circuit breakers, isolators, and protection devices.
Understand the basic operating principles of AC motors and generators.
Read and interpret basic electrical single-line diagrams and equipment symbols.
Understand the fundamentals of electrical faults and protection systems.
Explain the purpose and importance of grounding and earthing systems.
Recognize common power-quality problems and their operational consequences.
Understand electrical hazards and fundamental electrical safety principles.
Communicate more effectively with electrical engineers, contractors, operators, and maintenance personnel.
Participate more confidently in multidisciplinary projects involving electrical systems.
The program uses a structured, concept-based methodology specifically suited to professionals without a formal electrical engineering background.
Technical concepts are introduced progressively, beginning with basic electrical principles and advancing toward complete power-system architecture and equipment. Complex electrical concepts are translated into clear engineering language and supported by diagrams, simplified calculations, equipment illustrations, and industrial examples.
The methodology includes:
Instructor-led technical presentations.
Simplified explanations of electrical principles.
Electrical system and equipment diagrams.
Interpretation of single-line diagrams.
Short calculation examples for key electrical quantities.
Industrial and utility-based examples.
Equipment identification exercises.
Case-based discussions of electrical faults and operational issues.
Safety scenarios and hazard-recognition discussions.
Question-and-answer and knowledge-review sessions.
Organizations whose non-electrical personnel develop a stronger understanding of electrical power systems can benefit from improved interdisciplinary coordination, operational awareness, and technical decision-making.
The program will contribute to:
Improved communication between electrical and non-electrical engineering disciplines.
Better understanding of electrical equipment and infrastructure across projects and facilities.
Improved coordination between engineering, operations, maintenance, safety, and project teams.
Greater awareness of electrical hazards and safe working practices.
Improved interpretation of electrical terminology, drawings, and technical documentation.
Better-informed technical and commercial decisions involving electrical equipment.
Reduced misunderstandings during multidisciplinary engineering activities.
Improved awareness of electrical reliability, protection, and power-quality issues.
Stronger understanding of the relationship between electrical systems and overall plant or facility performance.
Enhanced technical competence among personnel involved in electrical-related projects without an electrical engineering specialization.
This training program is suitable for professionals who work with or around electrical power systems but do not have a specialized electrical engineering background, including:
Mechanical Engineers
Civil Engineers
Chemical Engineers
Process Engineers
Instrumentation and Control Personnel
Project Engineers
Project Managers
Maintenance Engineers and Supervisors
Operations Engineers and Supervisors
Plant and Facility Engineers
HSE and Safety Professionals
Technical Managers
Procurement and Contract Professionals involved in electrical projects
Technical Sales Engineers
Asset Management Personnel
Reliability and Maintenance Personnel
Engineering Coordinators
Technical Support Personnel
Other professionals requiring a fundamental understanding of electrical power systems
Day 1 – Electrical Fundamentals
Basic electrical concepts: voltage, current, resistance, power, and energy
Ohm’s Law and fundamental electrical relationships
AC and DC systems
Single-phase and three-phase power
Active, reactive, and apparent power
Power factor fundamentals
Basic electrical symbols and single-line diagrams
Day 2 – Power Generation, Transmission and Distribution
Overview of electrical power generation
Conventional and renewable generation sources
Electrical generators and basic operating principles
High-voltage transmission systems
Electrical distribution networks
Industrial power distribution systems
Voltage levels, electrical loads, and system reliability
Day 3 – Transformers, Switchgear and Electrical Machines
Transformer principles, types, and applications
Transformer ratings, losses, and basic operation
Electrical substations and major components
Switchgear, circuit breakers, isolators, and fuses
Current and voltage transformers
AC motors and basic operating principles
Motor starting methods and variable frequency drives (VFDs)
Day 4 – Protection, Grounding and Power Quality
Common electrical faults and abnormal conditions
Fundamentals of power system protection
Protective relays and circuit breakers
Overcurrent and earth-fault protection
Grounding and earthing principles
Power quality fundamentals
Harmonics, voltage variations, and power factor issues
Day 5 – Electrical Safety and System Operation
Electrical hazards and safe working principles
Electric shock, arc-flash, and arc-blast awareness
Electrical isolation and Lockout/Tagout (LOTO)
Electrical equipment loading and operating conditions
Reliability and basic maintenance considerations
Understanding an industrial power system from source to load
Interpretation of simplified single-line diagrams
Course review and key learning outcomes