DESIGN AND CONSTRUCTION OF SOLAR TRACKING CONTROL SYSTEM

Document Type : Original Article

Authors

Assist. Prof. Agric. and Biosystems Eng. Dept., Fac. of Agric. (El-Shatby), Alexandria University, Egypt.

Abstract

The increasing demand for energy, the continuous reduction in existing sources of fossil fuels and the growing concern regarding environment pollution, have pushed mankind to explore new technologies for the production of electrical energy using clean, renewable sources, such as solar energy, wind energy, etc.  Renewable energy is considered safe and sustainable way to get clean energy and reduce dependence on traditional energy sources.  Solar energy is gaining increasing importance; especially in Egypt because of the vast areas and large periods of brightness, making it contributes a large share of the energies used. Convert solar energy into electrical energy using solar cells is still expensive and ineffective. It is applied to different mechanisms for increasing the efficiency of solar cells to reduce costs.  Solar tracking system is the most appropriate technology to enhance the efficiency of solar cells by tracking the sun.  Thus,  this paper deals with controlling the solar panel at two axes by using four light dependent resistor (LDRs) as sensors, stepper and direct current (DC) motors as actuators (M1, M2) and microcontroller PIC16F877A as a controller unit. The prototype of solar tracking system has a mechanism for precise control to keep tracking of sun automatically and get the largest possible energy on the solar cell.  Results have proven that, the model has high accuracy in tracking the movement of the sun throughout the day

Basil M. Hamed and Mohammed S. El-Moghany, 2012.  Fuzzy Controller Design using FPGA for Sun Tracking in Solar Array System, I.J. Intelligent Systems and Applic, 2012, 1, 46-52.
Clean Energy Decision Support Centre. (2001-2004) Photovoltaic Project Analysis.Minister of Natural, Resources Canada.
El-Ashry, M., 2010. Renewables 2010 Global Status, Report, (Paris: REN21 Secretariat). Copyright Deutsche, (GTZ) GmbH.
Integral circuit PIC16F87XA datasheet, 2003 Microchip Technology Inc.
Integral circuit STK6713AMK4 datasheet.
Joydev Ghosh, Abhishek Dey and Supratim Sen, 2013. The Design of Electronics Based Solar Tracking System, the international Journal of Enhanced Research in Science Technology & Engineering, ISSN: 2319-7463 Vol. 2, Issue 8, August-2013, pp: 68-71.
M.A. Panait and T Tudorache, 2008. A Simple Neural Network Solar Tracker for Optimizing Conversion Efficiency in Off-Grid Solar Generator. Intl. Conf. on Renewable Energy and Power quality, no. 278, March, 2008.
Md. Tanvir Arafat Khan, S.M. Shahrear Tanzil, Rifat Rahman, SM Shafiul Alam, 2010.  Design and Construction of an Automatic Solar Tracking System, 6th International Conference on Electrical and Computer Engineering, ICECE 2010, 18-20 December 2010, Dhaka, Bangladesh, pp. 326-329.
Parallax, 2004.  Experiments with Renewable Energy, Student Guide. version1.
Piao, Z.G. Park, J. M. Kim, J. H. Cho, G. B. Baek, H. L, 2005. A study on the tracking photovoltaic system by program type, Intl. Conf. on Electrical Machines and Systems, Vol. 2, Sept. 27-29, 2005, pp. 971-973.
Regulator Transistor 7805 datasheet.
Tiberiu Tudorache1and Liviu Kreindler, 2010.  Design of a Solar Tracker System for PV Power Plants, Acta Polytechnica Hungarica Vol. 7, No. 1, 2010 pp. 23-39.
Tse, K. K., M. T. Ho, H. Chung, and S. Y. Hui, 2002.  A Novel Maximum Power Point Tracker for PV Panels Using Switching Frequency Modulation. IEEE TRANSACTIONS ON POWER Electronics, Vol. 17, No. 6, November 2002.
Zhang Xinhong, Wu Zongxian, Yu Zhengda, 2007.  Intelligent Solar Tracking Control System Implemented on an FPGA, Third Prize, Institute of Electrical Engineering, Yuan Ze University.