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A Wirelessly Controlled Robot-based Smart Irrigation System by Exploiting Arduino
Author(s) -
Ahmed Hassan,
Hafiz Muhammad Abdullah,
Umar Farooq,
Adil Shahzad,
Rao Muhammad,
Rao Muhammad Asif,
Ateeq Ur Rehman
Publication year - 2020
Publication title -
journal of robotics and control (jrc)
Language(s) - English
Resource type - Journals
eISSN - 2715-5072
pISSN - 2715-5056
DOI - 10.18196/jrc.2148
Subject(s) - photovoltaic system , matlab , solar tracker , maximum power principle , solar energy , genetic algorithm , computer science , power (physics) , software , energy (signal processing) , simulation , automotive engineering , engineering , electrical engineering , physics , quantum mechanics , machine learning , programming language , operating system
In recent years, because of the limitations of fossil fuels and emissions resulting from the use of photovoltaic cells increase. Due to the changing state of the sun, solar cells must follow the sun's radiation to receive more energy. But, in this research, the modeling and analysis of the solar tracking system were carried out to obtain the optimal angle in photovoltaic systems for generating maximum power using genetic algorithm (GA). In this paper, the control system is proposed by the GA genetic algorithm that optimizes the output energy of the PV system by adjusting the spatial angles of the solar panel in both vertical and horizontal axes. In this method, without the need for additional hardware, the optimal panel position angles are calculated by using the Matlab software to capture the most sun and maximize output energy. The main advantage is that the system operates discretely during operation and losses are reduced, as well as in the clouds, solar radiation is received and the output energy rises. The important results of this study can be the system is optimized, the output power of the photovoltaic system in a fixed array mode increases by 15.85%.

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