Research Article

LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques

October 5, 2020
TR EN

LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques

Abstract

Photovoltaic is the process that converts the sunlight directly into electric power depending on irradiance and temperature. The monitoring system in photovoltaic power plants is very important to interface the whole system and critical in some cases for analyzing since it has to be in real-time for troubleshooting responses. This paper presents an analysis study of the photovoltaic modules based on LabVIEW which is one of the well known graphical programming environment known as a parallel programming as well. The main role of using LabVIEW environment to analyze the performance of the system is to be able to track the amount of energy which is produced by the photovoltaic system in real-time and to ensure the forecasted conversion efficiency for continuous power tracking most of the time. In this paper, the proposed modelling system is designed and implemented to analyze the performance of the applied perturbation and observation algorithm which provides the maximum power point tracking. Photovoltaic panel characteristics have been demonstrated based on LabVIEW environment using data acquisiton circuit. LabVIEW environment is a system design environment which has supportive tools which are used to create a multitude of the application in much less time using parallel programming language platform. The process of designing and analysing the system has been carried out in real time simulation using the designed electronic circuit. The obtained results from the system have been compared with a real sun-simulator device results and it was shown that they are very close to the existing datasheet results.

Keywords

References

  1. Acharya, P., Shaikh, M., Jha, S. ve Papadakis, A., 2016, Electrical Modelling Of a Photovoltaic Module, Engineering and Industry Series Volume Power Systems, Energy Markets and Renewable Energy Sources in South-Eastern Europe.
  2. Akdeniz, H. Y., 2019, Arduino tabanlı MPPT solar şarj kontrolörü tasarımı ve uygulaması.
  3. Akkaya, R. ve Kulaksiz, A., 2004, A microcontroller-based stand-alone photovoltaic power system for residential appliances, Applied Energy, 78 (4), 419-431.
  4. Bakım, S., 2016, Yeni Bir P&O Tabanlı MPPT Algoritması Tasarımı ve Performansının Testi.
  5. Bishop, R. H., 2007, National Instruments' LabVIEW 8, Student Edition, Pearson.
  6. Bitter, R., Mohiuddin, T. ve Nawrocki, M., 2017, LabVIEW: Advanced programming techniques, Crc Press, p.
  7. Büyükgüzel, B. ve Aksoy, M., 2016, A current-based simple analog MPPT circuit for PV systems, Turkish Journal of Electrical Engineering & Computer Sciences, 24 (5), 3621-3637.
  8. Chalh, A., Motahhir, S., El Hammoumi, A., El Ghzizal, A. ve Derouich, A., 2018, Study of a Low-Cost PV Emulator for Testing MPPT Algorithm Under Fast Irradiation and Temperature Change, Technology and Economics of Smart Grids and Sustainable Energy, 3 (1), 11.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

October 5, 2020

Submission Date

October 12, 2020

Acceptance Date

November 4, 2020

Published in Issue

Year 2020

APA
Mühendis, A., & Kulaksız, A. A. (2020). LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques. Avrupa Bilim Ve Teknoloji Dergisi, 445-454. https://doi.org/10.31590/ejosat.809517
AMA
1.Mühendis A, Kulaksız AA. LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques. EJOSAT. Published online October 1, 2020:445-454. doi:10.31590/ejosat.809517
Chicago
Mühendis, Abdulkadir, and Ahmet Afşin Kulaksız. 2020. “LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques”. Avrupa Bilim Ve Teknoloji Dergisi, October 1, 445-54. https://doi.org/10.31590/ejosat.809517.
EndNote
Mühendis A, Kulaksız AA (October 1, 2020) LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques. Avrupa Bilim ve Teknoloji Dergisi 445–454.
IEEE
[1]A. Mühendis and A. A. Kulaksız, “LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques”, EJOSAT, pp. 445–454, Oct. 2020, doi: 10.31590/ejosat.809517.
ISNAD
Mühendis, Abdulkadir - Kulaksız, Ahmet Afşin. “LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques”. Avrupa Bilim ve Teknoloji Dergisi. October 1, 2020. 445-454. https://doi.org/10.31590/ejosat.809517.
JAMA
1.Mühendis A, Kulaksız AA. LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques. EJOSAT. 2020;:445–454.
MLA
Mühendis, Abdulkadir, and Ahmet Afşin Kulaksız. “LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques”. Avrupa Bilim Ve Teknoloji Dergisi, Oct. 2020, pp. 445-54, doi:10.31590/ejosat.809517.
Vancouver
1.Abdulkadir Mühendis, Ahmet Afşin Kulaksız. LabVIEW Based Modelling System Applied in Maximum Power Point Tracking Techniques. EJOSAT. 2020 Oct. 1;445-54. doi:10.31590/ejosat.809517

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