Interactive Learning Material for Optoelectronic Devices Using MATLAB-Based GUI

Ibrahim Nasir (1) , Ahmed Abdurrhman (1)
(1) Department of Electronic and Electrical Engineering, Faculty of Engineering and Technical Science, Sebah University, Sebah, Libya

Abstract

Optoelectronic devices have been a difficult subject to grasp for many university students who undertake electronic engineering. Many students find it difficult to understand the operation principle of the optoelectronic devices, for instance, how a solar cell device converts solar energy into electric energy or electricity, or the difference between types of semiconductor devices in terms of interaction between photons and electrons. Thus, the purpose of this paper is to design and implement an interactive and animated software package to aid students in understanding the concepts of the following optoelectronic devices: solar cell, p-n junction photodiode, p-i-n photodiode, light emitting diode and semiconductor laser. The software package was designed to be user friendly and easy to use requiring minimum learning time. The implementation of the software package was achieved using the MATLAB program, which is an interactive software package for scientific and engineering numeric computation. The outcome is a series of MATLAB programs that can be used to help students learn the concepts of optoelectronic devices.

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References

[1]-D. Gillet, Toward flexible learning in engineering education. Redding, CT: Begell House, pp. 95–102, 2003.

[2]-D. Magin and S. Kanapathipillai, “Engineering students’understanding of the role of experimentation,” Eur. J. Eng. Educ., vol. 25, no. 4, pp. 351–358, 2000.

[3]-A. V. Nguyen, D. Gillet, and S. Sire, “Sustaining collaboration within a learning community in flexible engineering education,” in Proc. World Conf. EducationalMultimedia, Hypermedia and Telecommunications, pp. 21–26, 2004.

[4]-Kok-Meng Lee, Wayne Daley and Tom McKlin, an interactive learning tool for dynamic systems and control,Proceedings of the ASME Dynamic Systems and Control Division, IMECE pp. 71-76,1998.

[5]-Andreas Spanias, and Venkatraman Atti, Interactive Online UndergraduateLaboratories Using J-DSP,IEEE Tras. oneducation , Vol. 48, no. 4, pp. 735-749, 2005.

[6]-P.Bauer,E-learning for power electronics in futurepower systems, International Conference onFuturePower Systems, pp. 1-6,2005

[7]-S.M. Gómez Puente, M. vanEijck and W. Jochems,Towards characterising design-based learning in engineering education: a review of the literature,European Journal of Engineering Education, Vol. 36, no.2, pp.137–149, 2011.

[8]-S. Dimitrijev ,Understanding Semiconductor Devices, Oxford UniversityPress, 2000.

[9]-S. M. Lord, “Optoelectronics experiments for first-year engineering students,” IEEE Trans. Educ., vol. 44, no. 1, pp. 16–23, 2001.

[10]-S. Rebiai, N. E. H. Touidjen, S. Mouissat, Implementationof Online Optoelectronic Devices Course and Remote Experiments in UC1 iLab, Int. Conf. on Interactive Mobile Communication Tech, vol. 9 (2), pp. 17-21, 2014.

[11]-N. Nevaranta, P. Jaatinen, K. Gräsbeck and O. Pyrhönen, "Interactive Learning Material for Control EngineeringEducation Using Matlab Live Scripts,"2019 IEEE 17th International Conference on Industrial Informatics (INDIN)pp. 1150-1154, 2019.

[12]-S. Y. Wong and S. Yong Lim, "Towards a Livelier Electromagnetic Education with an Interactive MATLAB-based GUI,"2019 IEEE Asia-Pacific Conference on Applied Electromagnetics (APACE), pp. 1-4, 2019.

[13]-S. Satavlekar, V. Keskar and V. Dahake, "Development of MATLAB Based LearnFFT Tool for Constructive andGraphical Understanding of FFT,"2019 IEEE Tenth International Conference on Technology for Education (T4E), pp. 284-285, 2019.

[14]-Preece, J.,Yvonne,Helen, David, Holland andCareyHuman Computer Interaction, Addison-Wesley, 1994.

[15]-Software engineering tutorial, Tutorials Point (I) Pvt. Ltd2014. Available:www.tutorialspoint.com

[16]-TheMathWorks,2017,Available:https://www.mathworks.com.

Authors

Ibrahim Nasir
Ahmed Abdurrhman
Nasir, I., & Abdurrhman, A. (2020). Interactive Learning Material for Optoelectronic Devices Using MATLAB-Based GUI. Journal of Pure & Applied Sciences , 19(2), 141-147. https://doi.org/10.51984/jopas.v19i2.878

Article Details

How to Cite

Nasir, I., & Abdurrhman, A. (2020). Interactive Learning Material for Optoelectronic Devices Using MATLAB-Based GUI. Journal of Pure & Applied Sciences , 19(2), 141-147. https://doi.org/10.51984/jopas.v19i2.878

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