Power Quality Enhancement using Artificial Intelligence Techniques

Power Quality Enhancement using Artificial Intelligence Techniques

EnglishHardbackPrint on demand
Abbas, Ahmed S.
Taylor & Francis Ltd
EAN: 9781032439228
Print on demand
Delivery on Friday, 29. of November 2024
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Detailed information

This text discusses sensitivity parametric analysis for the single tuned filter parameters and presents an optimization-based method for solving the allocation problem of the distributed generation units and capacitor banks in distribution systems. It also highlights the importance of artificial intelligence techniques such as water cycle algorithms in solving power quality problems such as over-voltage and harmonic distortion.

Features:

  • Presents a sensitivity parametric analysis for the single tuned filter parameters.
  • Discusses optimization-based methods for solving the allocation problem of the distributed generation units and capacitor banks in distribution systems.
  • Highlights the importance of artificial intelligence techniques (water cycle algorithm) for solving power quality problems such as over-voltage and harmonic distortion.
  • Showcases a procedure for harmonic mitigation in active distribution systems using the single tuned harmonic filters.
  • Helps in learning how to determine the optimal planning of the single tuned filters to mitigate the harmonic distortion in distorted systems.

It will serve as an ideal reference text for graduate students and academic researchers in the fields of electrical engineering, electronics and communication engineering, Power systems planning and analysis.

EAN 9781032439228
ISBN 103243922X
Binding Hardback
Publisher Taylor & Francis Ltd
Publication date March 14, 2023
Pages 108
Language English
Dimensions 234 x 156
Country United Kingdom
Readership Tertiary Education
Authors Abbas, Ahmed S.; Abou El-Ela, Adel Ali Mohamed; El-Sehiemy, Ragab A.; Elbaset, Adel A.
Illustrations 32 Tables, black and white; 55 Line drawings, black and white; 55 Illustrations, black and white