Mechanical Integrity and Inspection Programs Training Course

The Power Quality Analysis and Improvement Training Course by Oxford Training Centre, under the Power Systems and Maintenance category, provides comprehensive knowledge of power quality analysis, electrical disturbances, measurement techniques, and corrective strategies. Participants will learn to identify and resolve power quality issues such as harmonics, voltage fluctuations, transients, voltage sags, and poor power factor. The course emphasizes practical approaches to harmonics mitigation, voltage sag analysis, and power factor correction to improve electrical system reliability, efficiency, and equipment performance.

Objectives

  • Understand the fundamental principles of power quality analysis and electrical power systems.
  • Identify common power quality disturbances and their causes.
  • Apply techniques for measuring and evaluating power quality parameters.
  • Conduct effective voltage sag analysis and investigate voltage-related problems.
  • Understand harmonic sources, impacts, and harmonics mitigation techniques.
  • Apply power factor correction methods to improve system efficiency.
  • Evaluate transients, voltage fluctuations, interruptions, and unbalance.
  • Develop practical strategies for diagnosing and improving power quality.
  • Interpret power quality measurements and monitoring data.
  • Implement preventive maintenance strategies for reliable electrical systems.

Target Audience

  • Electrical engineers and power systems engineers
  • Electrical maintenance engineers and technicians
  • Power quality and reliability professionals
  • Maintenance and facility managers
  • Electrical system designers and consultants
  • Industrial electricians and supervisors
  • Energy management professionals
  • Utility and power distribution personnel
  • Engineering professionals responsible for electrical equipment performance

Course Content

Module 1: Fundamentals of Power Quality

  • Definition and importance of power quality
  • Key power quality parameters
  • Characteristics of ideal electrical power
  • Common power quality problems
  • Effects on electrical equipment and industrial operations

Module 2: Power Quality Disturbances

  • Voltage sags and swells
  • Interruptions and transients
  • Voltage fluctuations and flicker
  • Harmonic distortion
  • Voltage and current unbalance
  • Frequency variations

Module 3: Power Quality Measurement and Monitoring

  • Power quality measurement principles
  • Selection and use of monitoring equipment
  • Electrical waveform analysis
  • Data collection and interpretation
  • Power quality monitoring strategies
  • Identifying abnormal operating conditions

Module 4: Harmonics and Harmonics Mitigation

  • Fundamentals of harmonics
  • Harmonic sources in electrical systems
  • Effects of harmonic distortion
  • Total harmonic distortion (THD)
  • Passive and active harmonic filters
  • Practical harmonics mitigation strategies

Module 5: Voltage Sag Analysis

  • Causes and characteristics of voltage sags
  • Voltage sag impact on industrial equipment
  • Fault-related voltage disturbances
  • Voltage sag monitoring and assessment
  • Conducting voltage sag analysis
  • Corrective and preventive measures

Module 6: Power Factor and Power Factor Correction

  • Fundamentals of power factor
  • Causes of poor power factor
  • Effects of low power factor
  • Capacitor banks and correction methods
  • Automatic power factor correction
  • Practical power factor correction strategies

Module 7: Power Quality Improvement Techniques

  • Voltage regulation methods
  • Surge protection and transient suppression
  • Voltage conditioning equipment
  • Uninterruptible power supplies (UPS)
  • Dynamic voltage restoration
  • Equipment grounding and system improvements

Module 8: Troubleshooting and Preventive Maintenance

  • Systematic power quality troubleshooting
  • Root-cause identification
  • Electrical equipment protection
  • Preventive maintenance practices
  • Power quality improvement planning
  • Developing long-term monitoring programs

Module 9: Practical Power Quality Case Studies

  • Industrial power quality problems
  • Analysis of real-world disturbances
  • Harmonic reduction case studies
  • Voltage sag mitigation examples
  • Power factor improvement applications
  • Developing corrective action plans

FAQs

1. What is the Power Quality Analysis and Improvement Training Course?

It is a professional training course covering power quality analysis, electrical disturbances, monitoring, troubleshooting, and improvement techniques.

2. Who should attend this power quality training course?

Electrical engineers, maintenance professionals, power systems specialists, technicians, facility managers, and energy professionals can benefit from this course.

3. What topics are covered in power quality analysis?

The course covers harmonics, voltage sags and swells, transients, flicker, interruptions, unbalance, power factor, and power quality monitoring.

4. Does the course cover harmonics mitigation?

Yes. Participants learn about harmonic sources, harmonic distortion, filtering methods, and practical harmonics mitigation strategies.

5. What will participants learn about voltage sag analysis?

Participants learn how to identify voltage sag causes, assess their impact, interpret monitoring data, and develop appropriate corrective measures.

6. Is power factor correction included?

Yes. The course covers power factor fundamentals, capacitor banks, automatic correction systems, and practical power factor correction techniques.

7. What is the main focus of this training course?

The main focus is developing practical skills for analyzing, troubleshooting, and improving electrical power quality and system reliability.

8. Which category does this course belong to?

The course belongs to the Power Systems and Maintenance training category at Oxford Training Centre.

Course Dates

September 1, 2026
January 5, 2027
May 9, 2027
September 14, 2027

Register

Register Now