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⏱ 2h 48m📚 28 lessons
Power Factor Improvement in Electrical Power Systems
Learn to analyze, calculate, and improve power factor in electrical networks with practical engineering methods and solved exam-style problems.
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About this course
Industrial and commercial power networks suffer from efficiency losses due to poor power factor, driving up costs and straining electrical infrastructure. Understanding how to analyze and correct these inefficiencies is a core requirement for electrical engineers and students preparing for competitive technical exams. This course provides a clear, structured path to mastering power factor correction from the ground up.
You will transition from basic electrical concepts to confidently solving complex power system problems. By studying the mathematical foundations of active, reactive, and apparent power, you will learn how to diagnose low power factor and implement standard industry correction methods.
What you will learn:
- Understand the fundamental concepts of active, reactive, and apparent power in AC circuits
- Analyze the technical and financial consequences of a low power factor on electrical networks
- Calculate the required rating of corrective equipment using phasor diagrams and power triangles
- Compare different improvement methods including static capacitors, synchronous condensers, and phase advancers
- Practice solving exam-style analytical problems, including representative questions from competitive engineering exams
- Apply modern power quality concepts, including the impact of harmonics on power factor correction
The course begins with foundational definitions of power system metrics before moving into the mathematical calculations for correction. You will then explore real-world improvement technologies and practice solving structured numerical problems to solidify your engineering design skills.
This course is designed for undergraduate electrical engineering students, candidates preparing for technical competitive exams, and practicing engineers looking to refresh their power system fundamentals. No advanced prior power systems knowledge is required to start.
Begin reading today to master power factor engineering and optimize electrical system performance.
What you'll get
📜Certificate of completion Add it to your LinkedIn profile
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⚡Short & focused 2h 48m of practical content
Certificate of completion
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Power Factor Improvement in Electrical Power Systems
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Power Factor Improvement in Electrical Power Systems