This paper considered the design of a stand-alone PV system that would be adequate to power a single residence and estimate the appropriate size of the solar panel. This system converts solar energy directly into electricity using photovoltaic principle in PV panel arrays. The electricity produced can be used to power most ac and dc electrical appliances. Inverter is used to convert the dc generated by the PV panels to ac for most domestic and industrial use. For continuous availability of power during days of autonomy (low insolation or cloudy days), battery storage system and charge controller (for battery charge and discharge control) are required. inverter, charge controller, battery, components interconnection wires. The sizing processes considered the quality of solar irradiation of the geographical location, effect of temperature de-rating, efficiency of components, system voltage selection, days of autonomy and load demand (in watt-hour). A residence in Gaza town was chosen as a case study. The minimum electrical load of 7.875kWh per day, household, Finally excel program simulation was designed to satisfy calculation equations process and generalize the program.
CITATION STYLE
Awad, H., Harb, N., Abu Al Goboz, G., & Shurrab, S. (2021). CASE STUDY DESIGN OF A STAND-ALONE PHOTOVOLTAIC POWER SYSTEM IN GAZA-STRIP AND GENARALIZING APROGRAM SIMULATION. In E3S Web of Conferences (Vol. 297). EDP Sciences. https://doi.org/10.1051/e3sconf/202129701004
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