Solar powered UAV model on MATLAB/Simulink using incremental conductance MPPT technique

Author:

Sener Eralp,Turk Irem,Yazar Isil,Karakoç Tahir Hikmet

Abstract

Purpose The aviation industry has started environment friendly and also conventional energy independent alternative energy dependent designs to reduce negative impacts on the nature and to maintain its future activities in a clear, renewable and sustainable way. One possible solution proposed is solar energy. Solar-powered aerial vehicles are seen as key solutions to reduce global warming effects. This study aims to simulate a mathematical model of a solar powered DC motor of an UAV on MATLAB/Simulink environment. Design/methodology/approach Maximum power point tracking (MPPT) is a critical term in photovoltaic (PV) array systems to provide the maximum power output to the related systems under certain conditions. In this paper, one of the popular MPPT techniques, “Incremental Conductance”, is simulated with solar-powered DC motor for an UAV design on MATLAB/Simulink. Findings The cascade structure (PV cell, MPPT, buck converter and DC motor models) is simulated and tested under various irradiance values, and results are compared to the DC motor technical data. As a result of that, mathematical model simulation results are overlapped with motor technical reference values in spite of irradiance changes. Practical implications It is suggested to be used in real time applications for future developments. Originality/value Different from other solar-powered DC motor literature works, a solar-powered DC motor mathematical model of an UAV is designed and simulated on MATLAB/Simulink environment. To adjust the maximum power output at the solar cell, incremental conductance MPPT technique is preferred and a buck converter structure is connected between MPPT and DC motor mathematical model. It is suggested to be used in solar-powered UAV designs for future developments.

Publisher

Emerald

Subject

Aerospace Engineering

Reference35 articles.

1. A mathematical model of a conceptual design approach of high altitude solar powered unmanned aerial vehicles;International Review of Aerospace Engineering (I.RE.As.E),2017

2. Implementation of perturb and observe MPPT of PV system with direct control method using buck and Buck-Boost converters;Emerging Trends in Electrical, Electronics & Instrumentation Engineering: An International Journal,2014

3. Fuzzy controller design using soft switching boost converter for MPPT in hybrid system;International Journal of Soft Computing and Engineering,2012

4. History of solar flight,1984

5. Bruss, H. (1991), “Solar modellflug grundlagen, enwicklung, praxis, verlag für technik und handwerk”, Baden-Baden, available at: www.maxonmotor.com (accessed 8 February 2019.)

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