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The Modelling of the Power Factor in Steady State Non Sinusoidal Regime with Mathcad Techniques

H. Andrei, C. Cepisca

2003enpower factormathcadelectroenergeticalnonsinusoidalmodelingharmonicsnonsinusoidal regimeelectrical systemsmathematical modelMathcad

Abstract

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The paper presents a novel mathematical method for calculating the power factor in electroenergetical circuits, utilizing the relative values that characterize voltage and current harmonics. By implementing MathCAD techniques, the study illustrates the efficiency and application of this method in a steady state non sinusoidal regime. The methodology involves a 3-D mathematical model that accounts for the harmonic content of the voltages and currents within an electroenergetical system. This research highlights the importance of identifying the relationship between the power factor and the harmonic characteristics in distribution networks. Through comparative analysis using MathCAD, the effectiveness of the presented methods is demonstrated, providing insights into improving power quality in electrical systems. The results indicate that precise calculation of the power factor can significantly enhance the performance of electroenergetical systems, especially in the presence of non sinusoidal waveforms. This study contributes to the existing literature by offering a practical approach for power factor analysis in complex electrical systems. It establishes a foundation for further exploration of computational techniques in power quality assessment.

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Cite This Work

@article{992fc1b2-6d07-4057-9098-5ae9989acb75,
  title={The Modelling of the Power Factor in Steady State Non Sinusoidal Regime with Mathcad Techniques},
  author={H. Andrei and C. Cepisca},
  year={2003},
  language={en}
}
TY  - JOUR
TI  - The Modelling of the Power Factor in Steady State Non Sinusoidal Regime with Mathcad Techniques
AU  - H. Andrei
AU  - C. Cepisca
PY  - 2003
LA  - en
ER  -

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