Two Numerical Algorithms for Solving Nonlinear Equation of Solar Cell

Authors

  • Mohammed RASHEED Applied Science Department, University of Technology, Baghdad, Iraq
  • Suha SHIHAB Applied Science Department, University of Technology, Baghdad, Iraq
  • Taha RASHID Computer and Microelectronics System, Faculty of Engineering, University Technology Malaysia (UTM),Skudai 81310, Johor Bahru, Malaysia
  • Marwa Enneffati Department of physics, Faculty of Science, Taif University, Saudi Arabia

DOI:

https://doi.org/10.29304/jqcm.2021.13.1.752

Keywords:

Dekker's Formula; Kirchhoff's current law, numerical iterations, nonlinear equations, Predictor-Corrector Type.

Abstract

In this paper, we propose a new iterative method that has free from the second derivative of functions for solving nonlinear equations of a PV cell including different data for  R (load resistance). These equations are determined using Kirchhoff's current law (KCL) applied on a closed network. Some numerical experiments are offered to illustrate that the Dekker's formula has more efficient and accurate than other iterative method Predictor-Corrector Type.

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References

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Published

2021-02-14

How to Cite

RASHEED, M., SHIHAB, S., RASHID, T., & Enneffati, M. (2021). Two Numerical Algorithms for Solving Nonlinear Equation of Solar Cell. Journal of Al-Qadisiyah for Computer Science and Mathematics, 13(1), Math Page 87– 94. https://doi.org/10.29304/jqcm.2021.13.1.752

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