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Design Orientation and Installation of the Stand-Alone Solar PV System
Subject area: Science,Engineering and Technology · Area of research: power system
Abstract
Filling the energy for the world is directed to the renewable energy due to the shortage of naturalfuel and oil. Among the renewable energy, energy from sun, solar energy is the natural largest source for the world in this universe. Facilitating the classroom in remote area to promote the education status, a 3kW stand- alone photovoltaic (PV) power system had been constructed. Conversion efficiency 14%, 16?160 W solar modules were used to supply ten computers, one overhead projector and IP star internet equipment. The array was mounted on the roof-top of the class-room. This configuration allowed the array to be oriented at true south while resisting the high wind hazard associated with a roof mount. In this paper, experience gained in choosing orientation and installation of the stand-alone PV system is share.
Keywords
installation, orientation, stand-alone, solar PV system
References
[1] C. S. Aung, ― Sizing the Stand-Alone Photovoltaic System, ‖ in Proc. 1st Interenal Conf. Science and Engineering (ICSE I), Yangon, Myanmar, 2009, pp. 415-419.
[2] C. S. Aung and K. M. Latt, ― Design and Implementation of 3kW Stand-Alone Solar Electrification System, ‖ presented at the CAFEO 27, Singapore, Nov 29-2, 2009.
[3] C. S. Aung ― Design and Implementation of 3kW Stand-Alone Solar Electrification System for Classroom in Remote Area, ‖ Ph.D. dissertation, Dept. Engg. Phys., Yangon Technological Univ., Yangon, Myanmar, 2010.
[4] Davis, G., Govemor. 2001. A Guide to Photovoltaics (PV) System Design and Installation. California Energy Commission, June 2001.
[5] Dongying PV Power Co, Ltd, No Date. Installation Instruction Manual for crystalline solar photovoltaic Module China photovoltaic group, Dongying PV power Co, Ltd. February 2009<http://www.cnpv-power.com>
[6] Pacific Solar Tech, Inc, No Date. Installation Manual for Pacific Solar Tech MicroPV Solar Module. February 2009 <http://www.unirac.com>
[7] Sandia National Laboratories’s Photovoltaic Center. No Date. Lesson1. Energy use in the Home Pennsylvania Solar Course. January 2007
How to cite this paper
@article{1702565,
author = {Chaw Su Aung, Mya Hnin Su, Tin Thandar Zaw},
title = {Design Orientation and Installation of the Stand-Alone Solar PV System},
journal = {Iconic Research And Engineering Journals},
year = {2020},
volume = {4},
number = {6},
pages = {71-76},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1702565.pdf},
abstract = {Filling the energy for the world is directed to the renewable energy due to the shortage of naturalfuel and oil. Among the renewable energy, energy from sun, solar energy is the natural largest source for the world in this universe. Facilitating the classroom in remote area to promote the education status, a 3kW stand- alone photovoltaic (PV) power system had been constructed. Conversion efficiency 14%, 16?160 W solar modules were used to supply ten computers, one overhead projector and IP star internet equipment. The array was mounted on the roof-top of the class-room. This configuration allowed the array to be oriented at true south while resisting the high wind hazard associated with a roof mount. In this paper, experience gained in choosing orientation and installation of the stand-alone PV system is share.},
keywords = {installation, orientation, stand-alone, solar PV system},
month = {December},
}