Fixed Output Voltage for Solar Cells Based on Buck Converter

محتوى المقالة الرئيسي

Ahmed Bakir
Ahmed Baaiu

الملخص

In order to overcome the shortcomings such as
extended time and high cost of using solar cells to
experiment, this paper successfully used a DC power supply
and a variable resistor to simulate the solar cells output
characteristic curves. Operating principles, equivalent
circuits, and illustrative example in terms of computer
simulation are presented in order to validate the approach.
This paper deals the design of DC/DC converter which can
make voltage maintained at a specified value. MATLAB
simulation for Open--loop and Closed--loop controlled Buck
converter for the solar cells is discussed and the results are
presented.

تفاصيل المقالة

كيفية الاقتباس
Bakir, A., & Baaiu , A. (2024). Fixed Output Voltage for Solar Cells Based on Buck Converter . The International Journal of Engineering & Information Technology (IJEIT), 3(1). https://doi.org/10.36602/ijeit.v3i1.276
القسم
المقالات

المراجع

R. Haroun, A. El Aroudi, A. Cid-Pastor, G. Garcia, C.

Olalla, L. Martinez-Salamero. "Impedance matching in

photovoltaic systems using cascaded boost converters and

sliding-mode control". IEEE Transactions on Power

Electronics, Vol. 30, No. 6, 3185-3199. June 2015. DOI: https://doi.org/10.1109/TPEL.2014.2339134

K. Bataineh, A. Hamzeh, "Efficient Maximum Power Point

Tracking Algorithm for PV Application under Rapid Changing

Weather Condition", ISRN Renewable Energy,

Volume 2014 (2014), Article ID 673840, 13 pages

http://dx.doi.org/10.1155/2014/673840 . Received 10 October DOI: https://doi.org/10.1155/2014/673840

; Accepted 28 October 2013; Published 27 March 2014.

Z. Housheng, L. Suling, and L. Haidong, “Maximum Power Point

Tracker for Solar Cells Based on Boost Converter,” IEEE

Conference, pp.V4- 665 – V4-668, 2010. DOI: https://doi.org/10.1109/ICCDA.2010.5541217

H. Lu, W. Qin, and W. Zhao-kun, “Maximum Power Point

Tracker for Solar Cell Based on Flyback Converter,” Transaction

of China Electrotechnical Society, vol. 22, No. 8, 2007.

A. Kalirasu and S. Dash, “Modeling and Simulation of Closed

Loop Controlled Buck Converter for Solar Installation,

”International Journal of Computer and Electrical Engineering,”

vol. 3, No. 2, April, 2011.

C. Hua and C. Shen, “Comparative study of peak power

tracking techniques for solar storage system,” Applied Power

Electronics Conference and Exposition (APEC '98), vol.2, N, pp.

- 685, IEEE, 1998.

M. Rahman “Buck Converter Design Issues” Master thesis

performed in division of Electronic Devices, 2007.

N. Mohan, ” First Course on Power Electronics,” Copyright 2007.

R. Smith and R. Dorf, Circuits, Devices and Systems, Fifth

Edition, Singapore, John Wiley & Sons, Inc, 1992.

L. Qiuhua, Z. Lin, and L. Qiangl, “Simulative research of MPPT

for photovoltaic power system,” Electric Power Automation

Equipment, . Electron Devices, vol.28, No. 7, pp. 21-25, 2007.

H. Zhang, and Z. Yanlei. "Research on a novel digital

photovoltaic array simulator." Intelligent Computation

Technology and Automation (ICICTA), 2010 International

Conference on. Vol. 2. IEEE, 2010.

G. Franklin, J. Powell, A. Emami-Naeini, Feedback Control

of Dynamic Systems, Third Edition, Addison-Wesley

Publishing Company, 1994. ISBN:0-201-53487-8.

R. Burns, Advanced Control Engineering, First Edition, UK,

Butterworth-Heinemann, a division of Reed Educational

and Professional Publishing Ltd, 2001.

B. Hahn, D. Valentine, Essential Matlab for Engineers and

Scientists, Fourth Edition, Canada, Academic PressElsevier,

ISBN:

-0-12-374883-6.