13 - 17 Dec 2026
Istanbul (Turkey)
Hotel : DoubleTree by Hilton Istanbul Esentepe
Cost : 6825 € Euro
The Electrical Operation and Protection (Theoretical Approach) training program is designed by Global Horizon Training Center to provide participants with a comprehensive understanding of the fundamental principles, concepts, and practices related to electrical system operation and protection.
The program focuses on the theoretical aspects of electrical power systems, including electrical system components, operating principles, protection systems, fault conditions, protective devices, circuit breakers, relays, transformers, motors, and electrical safety. Participants will develop a solid understanding of how electrical systems operate and how protection schemes are designed to detect and isolate electrical faults.
Through structured theoretical discussions, technical examples, and practical case studies, the program enables participants to better understand electrical protection concepts and their application in industrial and commercial electrical systems.
By the end of the training program, participants will be able to:
Understand the fundamental principles of electrical power system operation.
Identify the main components of electrical power systems.
Understand normal and abnormal electrical operating conditions.
Explain the purpose and principles of electrical protection systems.
Understand different types of electrical faults and their effects.
Identify the functions of protective relays and circuit breakers.
Understand protection principles for transformers, motors, generators, and feeders.
Explain overcurrent, earth-fault, differential, and distance protection concepts.
Understand basic protection coordination principles.
Recognize common causes of electrical system failures.
Understand electrical protection requirements and safe operating practices.
Apply theoretical knowledge to common electrical operation and protection scenarios.
The training program uses a structured and interactive theoretical approach, including:
Instructor-led technical presentations.
Detailed explanations of electrical operation and protection concepts.
Electrical diagrams and simplified protection schemes.
Technical examples and practical scenarios.
Case studies based on common electrical system conditions.
Group discussions and knowledge-sharing sessions.
Fault analysis and protection-related exercises.
Question-and-answer sessions.
Review and discussion of key concepts at the end of each training day.
The program can contribute to organizational performance by:
Improving personnel understanding of electrical system operation.
Strengthening awareness of electrical protection principles.
Supporting safer electrical system operation.
Reducing the risk of equipment damage caused by electrical faults.
Improving understanding of protective devices and protection schemes.
Supporting more effective electrical troubleshooting and fault analysis.
Improving communication between electrical engineering, operations, and maintenance teams.
Supporting better decision-making related to electrical system operation.
Enhancing awareness of electrical system reliability and continuity.
This program is suitable for:
Electrical Engineers.
Electrical Technicians.
Electrical Maintenance Engineers and Technicians.
Power System Engineers.
Electrical Operations Personnel.
Maintenance Supervisors and Managers.
Plant and Facility Engineers.
Control and Instrumentation Engineers.
Utility Engineers and Technicians.
Project Engineers involved in electrical systems.
Engineering and Technical Managers.
Professionals seeking to strengthen their knowledge of electrical operation and protection.
Day 1 – Fundamentals of Electrical Power System Operation
Introduction to Electrical Power Systems
Generation, Transmission and Distribution Systems
Main Electrical System Components
Transformers, Switchgear, Busbars and Feeders
Electrical System Configurations and Single-Line Diagrams
Electrical Quantities: Voltage, Current, Power and Frequency
Active, Reactive and Apparent Power
Power Factor and Electrical System Reliability
Day 2 – Electrical Faults and Protection Principles
Fundamentals and Objectives of Electrical Protection
Normal and Abnormal Operating Conditions
Types of Electrical Faults and Short-Circuit Conditions
Three-Phase, Phase-to-Phase and Earth Faults
Causes and Effects of Electrical Faults
Fault Current Characteristics
Protection Zones and Protection Schemes
Primary and Backup Protection
Day 3 – Protective Devices, Relays and Circuit Breakers
Protective Devices and Their Functions
Current Transformers and Voltage Transformers
Protective Relays: Types, Functions and Operating Principles
Overcurrent and Earth-Fault Protection
Overvoltage and Undervoltage Protection
Circuit Breakers, Fuses and Tripping Mechanisms
Relay Operating Characteristics and Trip Signals
Basic Principles of Relay Testing
Day 4 – Protection of Major Electrical Equipment
Transformer Protection Principles and Protection Schemes
Transformer Differential, Overcurrent and Earth-Fault Protection
Generator Protection Fundamentals
Generator Faults and Abnormal Operating Conditions
Motor Protection and Motor Fault Conditions
Feeder and Cable Protection
Busbar Protection and Differential Protection
Protection Response During Equipment Faults
Day 5 – Protection Coordination, Reliability and Safe Operation
Fundamentals of Protection Coordination and Selectivity
Discrimination, Sensitivity and Protection Speed
Coordination Between Relays and Circuit Breakers
Backup Protection and Protection System Failures
Basic Protection Settings and Fault Analysis
Electrical System Reliability and Continuity
Electrical Protection and Safe Operating Practices
Case Studies, Final Review and Knowledge Assessment