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| Training Mode | Platform | Fee | Enroll |
|---|---|---|---|
| Online Training | Zoom/ Google Meet | 1,740USD | Register |
| Course Date | Location | Fee | Enroll |
|---|---|---|---|
| 05/10/2026 to 16/10/2026 | Nairobi | 2,900 USD | Register |
| 02/11/2026 to 13/11/2026 | Mombasa | 3,400 USD | Register |
| 02/11/2026 to 13/11/2026 | Nairobi | 2,900 USD | Register |
| 07/12/2026 to 18/12/2026 | Nairobi | 2,900 USD | Register |
| 07/12/2026 to 18/12/2026 | Mombasa | 3,400 USD | Register |
Course Introduction
The Industrial Electrical Infrastructure Engineering Training Course is designed to provide engineers, technical professionals, facility managers, and industrial specialists with advanced knowledge and practical skills required to design, operate, maintain, and optimize electrical infrastructure within industrial environments. The program focuses on industrial power systems, electrical distribution networks, equipment performance, reliability improvement, safety management, automation integration, and modern infrastructure development.
Industrial facilities depend on reliable electrical infrastructure to support continuous production, operational efficiency, and business performance. This course introduces advanced engineering concepts that enable professionals to manage complex electrical systems including substations, transformers, switchgear, motor systems, protection networks, power quality systems, and industrial control interfaces while ensuring safe and efficient operations.
The Industrial Electrical Infrastructure Engineering Training Course covers essential topics including electrical system planning, industrial power distribution, load analysis, protection coordination, equipment selection, reliability engineering, energy efficiency, predictive maintenance, power quality management, and digital monitoring technologies. Participants gain practical understanding of how engineering principles support dependable industrial electrical operations.
Industrial organizations face increasing challenges due to rising energy demand, aging infrastructure, automation requirements, renewable energy integration, cybersecurity concerns, and stricter efficiency expectations. This course addresses emerging issues such as smart industrial electrical systems, digital substations, artificial intelligence-based monitoring, industrial IoT applications, energy management platforms, and resilient infrastructure strategies.
Through technical discussions, practical exercises, and industry case studies, participants develop the ability to evaluate electrical infrastructure requirements, improve system reliability, manage operational risks, and implement modernization initiatives. The program supports electrical engineers, maintenance professionals, facility managers, project teams, automation specialists, and industrial energy leaders.
By completing the Industrial Electrical Infrastructure Engineering Training Course, participants will strengthen their expertise in managing industrial electrical systems. They will be prepared to improve reliability, enhance safety, optimize energy performance, and support the development of efficient, resilient, and future-ready industrial facilities.
Duration
10 days
Who should attend
Industrial electrical engineers managing power infrastructure.
Facility engineers responsible for electrical system operations.
Maintenance engineers supporting industrial equipment reliability.
Power system engineers designing industrial networks.
Plant managers overseeing electrical performance.
Automation engineers integrating electrical control systems.
Energy managers improving industrial efficiency.
Protection engineers working with industrial power systems.
Project engineers delivering electrical infrastructure projects.
Reliability specialists improving system availability.
Safety professionals managing electrical risk.
Consultants supporting industrial electrical modernization.
Course Objectives
Develop advanced understanding of industrial electrical infrastructure engineering principles.
Explain the design and operation requirements of industrial power systems.
Analyze industrial electrical distribution network configurations and performance.
Apply load assessment techniques for industrial facility planning.
Evaluate electrical equipment selection and specification requirements.
Understand protection coordination methods for industrial power networks.
Develop strategies for improving electrical system reliability and availability.
Apply maintenance engineering approaches for industrial electrical assets.
Analyze power quality issues affecting industrial operations.
Understand energy efficiency methods for industrial electrical systems.
Evaluate digital technologies supporting industrial electrical infrastructure.
Strengthen professional capabilities in managing industrial electrical engineering projects.
Comprehensive Course Outline
Module 1: Fundamentals of Industrial Electrical Infrastructure
Introduction to industrial electrical system engineering principles.
Understanding electrical infrastructure requirements in industrial facilities.
Overview of industrial power network components and configurations.
Key challenges affecting industrial electrical reliability.
Module 2: Industrial Power System Planning and Design
Developing electrical infrastructure plans for industrial facilities.
Assessing power requirements for industrial operations.
Designing efficient electrical distribution arrangements.
Supporting future expansion through scalable system planning.
Module 3: Industrial Electrical Load Analysis
Understanding industrial load characteristics and demand patterns.
Performing load calculations for electrical infrastructure design.
Managing motor, process, and auxiliary power requirements.
Improving system performance through accurate load assessment.
Module 4: Industrial Distribution Systems
Designing medium and low voltage industrial networks.
Managing transformers, switchgear, and distribution equipment.
Improving reliability through effective network configurations.
Supporting continuous industrial operations through robust design.
Module 5: Electrical Protection and Coordination
Understanding protection principles in industrial systems.
Applying protection coordination techniques.
Managing fault detection and isolation requirements.
Improving safety through effective protection strategies.
Module 6: Industrial Substation Engineering
Designing industrial substation configurations.
Managing substation equipment selection and operation.
Applying automation technologies in industrial substations.
Improving substation reliability and performance.
Module 7: Industrial Electrical Equipment Engineering
Evaluating transformers, motors, and switchgear performance.
Managing equipment selection and operational requirements.
Assessing equipment reliability and lifecycle considerations.
Improving equipment performance through engineering practices.
Module 8: Electrical Reliability and Maintenance Engineering
Applying reliability engineering methods in industrial facilities.
Developing preventive and predictive maintenance strategies.
Monitoring electrical equipment health and performance.
Reducing failures through proactive maintenance planning.
Module 9: Power Quality Management
Understanding industrial power quality challenges.
Managing harmonics, voltage variations, and disturbances.
Applying mitigation technologies for power quality improvement.
Improving operational efficiency through better power quality.
Module 10: Industrial Energy Management Systems
Understanding energy efficiency principles in industrial facilities.
Applying energy monitoring and management technologies.
Optimizing electrical energy consumption.
Supporting sustainable industrial operations.
Module 11: Industrial Automation and Digital Integration
Integrating electrical systems with industrial automation platforms.
Understanding SCADA and control system applications.
Applying digital monitoring technologies.
Improving operational visibility through automation.
Module 12: Smart Industrial Electrical Infrastructure
Applying smart technologies in industrial electrical systems.
Using IoT solutions for infrastructure monitoring.
Supporting intelligent energy management.
Improving decision-making through digital information.
Module 13: Cybersecurity for Industrial Electrical Systems
Understanding cybersecurity risks in industrial environments.
Protecting electrical control and automation systems.
Implementing secure industrial communication practices.
Improving resilience against cyber threats.
Module 14: Renewable Energy Integration in Industrial Facilities
Integrating renewable energy into industrial electrical systems.
Managing distributed generation challenges.
Supporting energy flexibility through advanced solutions.
Improving sustainability through renewable technologies.
Module 15: Emerging Technologies in Industrial Electrical Engineering
Exploring artificial intelligence applications in industrial systems.
Applying digital twins for infrastructure optimization.
Evaluating advanced monitoring technologies.
Preparing industrial facilities for future electrical innovations.
Module 16: Practical Applications and Industry Case Studies
Reviewing global industrial electrical engineering practices.
Analyzing real-world infrastructure challenges and solutions.
Applying engineering methodologies to industrial scenarios.
Developing strategies for future industrial electrical improvements.
Training Approach
This course will be delivered by our skilled trainers who have vast knowledge and experience as expert professionals in the fields. The course is taught in English and through a mix of theory, practical activities, group discussion and case studies. Course manuals and additional training materials will be provided to the participants upon completion of the training.
Tailor-Made Course
This course can also be tailor-made to meet organization requirement. For further inquiries, please contact us on: Email: training@upskilldevelopment.com Tel: +254 721 331 808
Training Venue
The training will be held at our Upskill Training Centre. We also offer training for a group (at a discount of 10% to 50%) at requested location all over the world. The Onsite course fee covers the course tuition, training materials, two break refreshments, buffet lunch, airport transfers, Upskill gift package, and guided tour.
Visa application, travel expenses, dinners, accommodation, insurance, and other personal expenses are catered by the participant
Certification
Participants will be issued with Upskill certificate upon completion of this course.
Airport Pickup and Accommodation
Airport pickup and accommodation is arranged upon request. For booking contact our Training Coordinator through Email: training@upskilldevelopment.com, +254 721 331 808
Terms of Payment:
Unless otherwise agreed between the two parties’ payment of the course fee should be done 3 working days before commencement of the training so as to enable us to prepare better.
| Training Mode | Platform | Fee | Enroll |
|---|---|---|---|
| Online Training | Zoom/ Google Meet | 1,740USD | Register |
| Course Date | Location | Fee | Enroll |
|---|---|---|---|
| 05/10/2026 to 16/10/2026 | Nairobi | 2,900 USD | Register |
| 02/11/2026 to 13/11/2026 | Mombasa | 3,400 USD | Register |
| 02/11/2026 to 13/11/2026 | Nairobi | 2,900 USD | Register |
| 07/12/2026 to 18/12/2026 | Nairobi | 2,900 USD | Register |
| 07/12/2026 to 18/12/2026 | Mombasa | 3,400 USD | Register |
We support the development of a skilled and confident workforce to meet the changing demands of growing sectors by offering the best possible training to enable them to fulfil learning goals.
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