Engineering, Oil and Gas

Training Course: Power Quality: Problems & Solutions


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EN236619

22 - 26 Nov 2026

Dubai (UAE)

Cost : 5830 € Euro

Introduction

Power quality has become a critical concern in modern electrical power systems due to the increasing use of sensitive electronic equipment, variable frequency drives, renewable energy systems, power electronics, automation technologies, and nonlinear loads. Poor power quality can result in equipment malfunction, production interruptions, overheating, premature equipment failure, increased energy losses, and significant operational costs.

This training program, designed by Global Horizon Training Center, provides participants with a comprehensive understanding of power quality problems, their causes, impacts, measurement techniques, and appropriate mitigation solutions. The program covers voltage disturbances, harmonics, transients, interruptions, voltage unbalance, flicker, power factor, grounding issues, and other common power quality phenomena encountered in industrial and commercial electrical systems.

Throughout the program, participants will learn systematic approaches for identifying and analyzing power quality problems and selecting suitable corrective measures. The course also addresses power quality monitoring, harmonic mitigation, power factor correction, surge protection, grounding, filtering, and equipment protection.

The program emphasizes practical problem-solving and enables participants to develop effective strategies for improving electrical system reliability, efficiency, and equipment performance.


Objectives

By the end of this training program, participants will be able to:

  • Understand the fundamental principles of electrical power quality.

  • Identify common power quality disturbances and their characteristics.

  • Recognize the causes and consequences of voltage sags, swells, interruptions, and fluctuations.

  • Understand harmonic distortion and its impact on electrical equipment.

  • Evaluate power factor and its influence on electrical system performance.

  • Understand voltage and current unbalance.

  • Identify electrical transients and appropriate protection methods.

  • Understand grounding and wiring problems affecting power quality.

  • Apply appropriate power quality monitoring and measurement techniques.

  • Interpret basic power quality measurements and indicators.

  • Identify sources of power quality problems within electrical systems.

  • Understand harmonic filtering and mitigation techniques.

  • Select appropriate power factor correction methods.

  • Evaluate solutions for voltage disturbances and sensitive loads.

  • Develop systematic approaches for troubleshooting power quality problems.

  • Improve electrical system reliability and equipment performance.


Course Methodology

The course uses a structured and application-oriented methodology combining theoretical principles with practical power quality analysis.

The methodology includes:

  • Instructor-led technical presentations.

  • Power quality concepts and waveform analysis.

  • Electrical system diagrams and illustrations.

  • Power quality measurement examples.

  • Analysis of common electrical disturbances.

  • Technical calculations and simplified examples.

  • Case-based troubleshooting scenarios.

  • Comparison of mitigation technologies and solutions.

  • Discussion of industrial power quality problems.

  • Daily reviews and knowledge consolidation.


Organizational Impact

The program can contribute to improved electrical reliability, equipment performance, and operational continuity by strengthening the organization's capability to identify and manage power quality problems.

Key organizational benefits include:

  • Improved reliability of electrical power systems.

  • Reduction in equipment failures caused by poor power quality.

  • Reduced production interruptions and unplanned downtime.

  • Improved protection of sensitive electrical and electronic equipment.

  • Better identification and diagnosis of electrical disturbances.

  • Improved management of harmonic distortion.

  • Enhanced power factor and electrical system efficiency.

  • Reduced electrical losses and unnecessary operating costs.

  • Improved coordination between electrical engineering, operations, and maintenance teams.

  • More effective selection of power quality mitigation equipment.

  • Improved preventive maintenance and troubleshooting capabilities.

  • Increased awareness of power quality risks associated with modern electrical loads.


Target Audience

This training program is suitable for:

  • Electrical Engineers

  • Power System Engineers

  • Maintenance Engineers

  • Electrical Maintenance Supervisors

  • Plant Engineers

  • Facility Engineers

  • Utility Engineers

  • Operations Engineers

  • Reliability Engineers

  • Energy Engineers

  • Electrical Technicians and Supervisors

  • Power Generation Professionals

  • Transmission and Distribution Professionals

  • Industrial Automation Professionals

  • Project Engineers

  • Engineering Consultants

  • Technical Managers

  • Professionals responsible for electrical system reliability and performance


Course Outline

Day 1 – Power Quality Fundamentals

  • Introduction to electrical power quality

  • Power quality terminology and key parameters

  • Characteristics of ideal electrical power

  • Sources and categories of power quality disturbances

  • Voltage, current, frequency, and waveform characteristics

  • RMS values and electrical waveform fundamentals

  • Power quality impacts on industrial equipment

  • Introduction to applicable power quality standards


Day 2 – Voltage Disturbances & Transients

  • Voltage sags and their causes

  • Voltage swells and overvoltage conditions

  • Short and long-duration interruptions

  • Voltage fluctuations and flicker

  • Voltage unbalance and its effects

  • Electrical transients and surge phenomena

  • Effects on motors, drives, control systems, and sensitive equipment

  • Voltage disturbance mitigation techniques


Day 3 – Harmonics & Power Factor

  • Fundamentals of harmonic distortion

  • Linear versus nonlinear electrical loads

  • Major sources of harmonics

  • Total Harmonic Distortion (THD)

  • Effects of harmonics on transformers, motors, cables, and capacitors

  • Harmonic resonance

  • Fundamentals of power factor

  • Causes and consequences of poor power factor

  • Power factor correction methods

  • Harmonic filtering and mitigation solutions


Day 4 – Power Quality Monitoring & Troubleshooting

  • Principles of power quality monitoring

  • Power quality measurement parameters

  • Selection and positioning of monitoring points

  • Understanding power quality analyzers

  • Interpreting voltage and current measurements

  • Identifying disturbance patterns

  • Grounding and wiring-related power quality problems

  • Root-cause analysis of power quality events

  • Systematic power quality troubleshooting methodology


Day 5 – Power Quality Solutions & System Improvement

  • Power quality mitigation strategy

  • Passive and active harmonic filters

  • Surge protection devices

  • Voltage regulation solutions

  • Uninterruptible Power Supply (UPS) systems

  • Dynamic voltage restoration concepts

  • Power factor correction equipment

  • Grounding and bonding improvements

  • Protecting sensitive electrical loads

  • Selecting appropriate mitigation solutions

  • Developing a power quality improvement plan

  • Course review and key learning outcomes

 

 

Engineering, Oil and Gas

Training Course: Power Quality: Problems & Solutions


Register Now
Quick Inquiry
Discount Group Download Brochure  

EN236619

22 - 26 Nov 2026

Dubai (UAE) -

Cost: 5830 € Euro


  About Dubai

Dubai, located on the Persian Gulf, is one of the seven United Arab Emirates and one of the most popular tourist destinations in the world. The discovery of oil in the region has made Dubai extremely wealthy, allowing it to build the glittering skyscrapers that it is now famous for. That wealth is strongly in evidence in Dubai and visitors will see luxurious buildings and supercars aplenty. Perfect beaches and endless shopping opportunities are to key to Dubai's attractions. Flights to Dubai open up the city's cultural attractions to tourists, with beautiful mosques, museums and art galleries scattered throughout this ultra-modern metropolis.


  Things to do and places to visit in Dubai

Dubai's wealth has made it famous for building ever taller buildings and creating artificial islands off its shores. The city's hotels are luxurious and shoppers will love its extensive shopping malls which showcase all the world's top brands. Dubai's attractions don't end there. Dubai also caters to adventure lovers, who can jump in a 4x4 or on a board to speed over dunes outside the city. Local culture mustn't be forgotten either, and visitors have wonderful mosques to visit and old districts to explore. All that combined means that a flight to Dubai is sure to lead to an unforgettable holiday.

When visiting Dubai, be sure to:

  • Go to the observation deck of the Burj Khalifa, the tallest building in the world.
  • Admire the intricately beautiful Grand Mosque, which has the tallest minaret in the city.
  • Understand the local history and culture with a visit to the Dubai Museum.
  • Discover objects from the 6th century at Jumeirah Archaeological Site.
  • Go skiing – That's not a joke, the Mall of the Emirates houses a snowdome.
  • Go shopping at the Mall of the Emirates or the Dubai Mall.
  • Explore the desert surrounding the city – either by 4x4 or atop a camel.
  • Eat fantastic seafood at Dubai Marina.
  • Cool off at the Wild Wadi Waterpark.
  • Marvel at gorgeous Arabic calligraphy at Jumeirah Mosque, the biggest in the city.
  • Take a yacht tour around the artificial islands of Palm Jumeirah.
  • Haggle for souvenirs in one of the city's souks.
  • Wander around the traditional building in Bastakiya District.
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