Modeling of photovoltaic transducers on the basis of pulse-width modulation

Authors

  • Z.Yu. Gotra Lvivska Politechnika National University
  • R.L. Golyaka Lvivska Politechnika National University
  • G.I. Barilo Lvivska Politechnika National University
  • V.V. Virt Lvivska Politechnika National University

DOI:

https://doi.org/10.31649/1681-7893-2018-35-1-24-29

Keywords:

parametric analysis, signal converter, pulse-width modulation (PWM), SPICE model

Abstract

The paper presents new approaches for the mathematical modeling of micro-power converters based on the generated mathematical models of converters using pulse-width modulation (PWM). The research was carried out and the modeling of the  operating modes of such converters was presented, when presenting the input signals. The obtained simulation results were used to construct a signal converter based on the PSoC 5LP (Cypress) microcontroller.

Author Biographies

R.L. Golyaka, Lvivska Politechnika National University

д.т.н., професор кафедри кафедра електронних засобів інформаційно-комп'ютерних технологій

G.I. Barilo, Lvivska Politechnika National University

д.т.н., доцент кафедри кафедра електронних приладів

V.V. Virt, Lvivska Politechnika National University

асистент кафедри електронних приладів

References

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Vasyl S. Petryshak, Maria V. Vistak, Orest Y. Sushynkyi, Zinoviy M. Mikityuk, Hryhoriy I. Barylo, Maksat Kalimoldayev, Piotr Kisała, Azamat Annabaev. (2017). Gas sensitive material on the basis of cholesteric-nematic mixture doped carbon nanotubes for optoelectronic NH3 gas sensor. Proc. SPIE 10445, Photonics Applications in Astronomy, Communications, Industry, and High Energy Physics Experiments 2017. DOI:10.1117/12.2281015.

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Published

2019-06-14

How to Cite

[1]
Z. Gotra, R. Golyaka, G. Barilo, and V. Virt, “Modeling of photovoltaic transducers on the basis of pulse-width modulation”, Опт-ел. інф-енерг. техн., vol. 35, no. 1, pp. 24–29, Jun. 2019.

Issue

Section

OptoElectronic/Digital Methods and Systems for Image/Signal Processing

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