Solar Cell Based Automatic Garden Watering Control System

Authors

  • Achmad Effendi Universitas of Muhammadiyah Makassar

Keywords:

Electric Power, Garden Watering, Solar Cell

Abstract

Watering Gardens Using Solar Cells. Supervised by Zahir Zainuddin
and Adriani. Solar cell is a device composed of semiconductor material
that can convert sunlight into electric power directly. Often also used
the term photovoltaic or photovoltaic. In this design, automatic garden
watering using a solar cell requires timer equipment, BCU, rain sensor,
relay, battery/battery and inverter. The purpose of this design is to
determine the performance of the plant watering design using a solar
cell as a voltage source and to determine the rain sensor and control
system in watering plants optimally, so that later it can be applied to
further designs and the community. The results of the garden watering
test using a solar cell without a load on December 31, 2017 produced
a voltage of up to 18 volts with a current of 1.5 amperes and on
December 14, 2017 it produced a voltage of up to 17.5 volts with a
current of 1.4 amperes. Meanwhile, when given a load, the voltage
released by the battery is 11.5 V and produces a current of 5.73 A and
the voltage issued by the inverter is 214 V and produces a current of
1.05 A. issued by the battery is 11.80 V with a current of 7.80 A and
the voltage issued by the inverter is 221 V and the current issued is
0.81A. 5 volts with a current of 1.4 amperes. Meanwhile, when given a
load, the voltage released by the battery is 11.5 V and produces a
current of 5.73 A and the voltage issued by the inverter is 214 V and
produces a current of 1.05 A. issued by the battery is 11.80 V with a
current of 7.80 A and the voltage issued by the inverter is 221 V and
the current issued is 0.81A. 5 volts with a current of 1.4 amperes.
Meanwhile, when given a load, the voltage released by the battery is
11.5 V and produces a current of 5.73 A and the voltage issued by the
inverter is 214 V and produces a current of 1.05 A. issued by the
battery is 11.80 V with a current of 7.80 A and the voltage issued by
the inverter is 221 V and the current issued is 0.81A.

References

Amuddin, A., & Suwardji, S. (2018). Design and build an automatic plant watering device with a drip irrigation

system based on a solar energy pump from deep ground well water sources on dry land. upt. library.

int. J. MECOMARE ISSN2301-4148 

Achmad Effendi, Solar Cell Based Automatic Garden Watering Control System

Basyiran, TB (2014). Electrical Energy Consumption, Economic and Population Growth on Greenhouse Gas

Emissions in Power Generation in Indonesia. Undergraduate Thesis Faculty of Economics, Syiah Kuala

University.

EFFENDI, A., & YUSRAN, MUH (nd). AUTOMATIC CONTROL SYSTEM OF GARDEN WATERING BASED

ON SOLAR CELL.

Gainau, MB (2021). Introduction to Research Methods. PT. Kanisius.

Junaidi, J. (2015). Solar Powered Automatic Garden Sprinkler Design Refers To Soil Moisture.

Muhammadiyah Surakarta university.

Komuna, AA, Kalangi, JB, & Masloman, I. (2021). THE EFFECT OF PUBLIC INFRASTRUCTURE AND

TOURISM DEVELOPMENT ON THE ECONOMIC GROWTH OF MANADO CITY. Scientific Journal of

Efficiency, 21(4).

Lubis, S., Siregar, MA, & Damanik, WS (2022). Experimental Test of the Ability of the Freezer Against Cooling

Load Using Solar Energy. Mechanical Media: Mechanical Engineering Magazine, 23(1), 52–58.

Mediastika, CE (2021). Save energy and conserve the environment through buildings. Andi Publisher.

Nurdiansyah, M., Sinurat, EC, Bakri, M., Ahmad, I., & Prasetyo, AB (2020). Solar Rotation Control System on

Arduino UNO-Based Solar Panels. Journal of Engineering and Computer Systems, 1(2), 40–45.

Prianto, E. (2007). Energy Efficient Tropical House A Form of Global Warming Concern. Journal of Science

and Technology, 1(1), 1–10.

Rompas, RM, Kawung, NJ, & Tilaar, SO (2018). Biofuels. Depublish.

Santoso, DB, & Sumarjo, J. (2020). Solar Water Pump System Design for Irrigation in Karawang. Journal of

Technology, 10(1).

Saputra, F., & Agus Supardi, ST (2015). DC water pump performance based on solar power intensity.

Muhammadiyah Surakarta university.

Saputro, A. (2015). Solar Lawn Mower Design Using Motorcycle Starter Motor. Muhammadiyah Surakarta

university.

Sudono, A. (2000). Learning resources and game tools for early childhood education. Grasindo.

Yanto, R. (2020). Implementation of Data Mining Prediction of Electricity Needs in Lubuklinggau City. techno.

Com, 19(2), 197–206

Downloads

Published

2021-02-28

How to Cite

Effendi, A. (2021). Solar Cell Based Automatic Garden Watering Control System. International Journal of Mechanical Computational and Manufacturing Research, 9(4), 168–175. Retrieved from https://trigin.pelnus.ac.id/index.php/Computational/article/view/44