Solar Panel System with Internet of Thing Based Control on Dome Dryer for Coffee as A Support for Sustainable Agrotourism

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Autori principali: Amuddin, ., Sitti, Hilyana, Bambang, Dipokusuma, Joko, Sumarsono
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Amuddin, .
Sitti, Hilyana
Bambang, Dipokusuma
Joko, Sumarsono
author_facet Amuddin, .
Sitti, Hilyana
Bambang, Dipokusuma
Joko, Sumarsono
contents <h4>Abstract :</h4> <p>The need for electrical energy in people’s lives is very important. The government is currently implementing policies, especially in the electricity sector, to develop potential alternative energy sources as an effort to diversify energy in the form of implementing regulations, namely by developing solar power plants (PLTS) as a type of renewable energy. Renewable energy from solar power plants (PLTS) will be used as energy that can replace electrical energy from PLN to power a control system that can be monitored via the internet of things (IOT) on dome dryers for drying coffee. Problem Formulation: The use of electricity from PLN is felt to be very expensive; Difficulty in controlling temperature and humidity in the Dome drying room and a lot of heat energy is wasted; The quality of traditional drying results is uneven and the production quality is not good. Research Objectives: Analyze the electric current of solar energy from renewable energy based on control system requirements; Analyzing environmental (external) factors in the Dome solar dryer; Designing an IoT-based control system; Knowing the temperature and humidity in the Dome solar dryer room; Determining the water content of coffee beans produced by the Dome dryer to support sustainable agrotourism. Uses or Benefits of Research: Application of Renewable Energy Technology, especially Solar Photo Voltaic (PV); Practical knowledge and technology for the community on the Solar Drayer Dome; Knowing the Solar Panel System from Renewable Energy with Remote Control (IoT) Control System to obtain the right temperature for drying coffee; Obtaining the correct water content value in coffee products from dome dryers to support sustainable agrotourism. Research Method: carried out in stages, namely observation and installation of supporting equipment for collecting data directly in the field (Experimental). Research results: Solar panels convert solar energy into electrical energy. Solar panels produce Direct Current (DC) electricity or direct current; Reducing carbon emissions: PLTS produces electricity without emitting greenhouse gases such as CO2, which contributes to global warming.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15437359
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Solar Panel System with Internet of Thing Based Control on Dome Dryer for Coffee as A Support for Sustainable Agrotourism
Amuddin, .
Sitti, Hilyana
Bambang, Dipokusuma
Joko, Sumarsono
Agrotourism, Drayer Dome, Energy, IoT, Solar.
<h4>Abstract :</h4> <p>The need for electrical energy in people’s lives is very important. The government is currently implementing policies, especially in the electricity sector, to develop potential alternative energy sources as an effort to diversify energy in the form of implementing regulations, namely by developing solar power plants (PLTS) as a type of renewable energy. Renewable energy from solar power plants (PLTS) will be used as energy that can replace electrical energy from PLN to power a control system that can be monitored via the internet of things (IOT) on dome dryers for drying coffee. Problem Formulation: The use of electricity from PLN is felt to be very expensive; Difficulty in controlling temperature and humidity in the Dome drying room and a lot of heat energy is wasted; The quality of traditional drying results is uneven and the production quality is not good. Research Objectives: Analyze the electric current of solar energy from renewable energy based on control system requirements; Analyzing environmental (external) factors in the Dome solar dryer; Designing an IoT-based control system; Knowing the temperature and humidity in the Dome solar dryer room; Determining the water content of coffee beans produced by the Dome dryer to support sustainable agrotourism. Uses or Benefits of Research: Application of Renewable Energy Technology, especially Solar Photo Voltaic (PV); Practical knowledge and technology for the community on the Solar Drayer Dome; Knowing the Solar Panel System from Renewable Energy with Remote Control (IoT) Control System to obtain the right temperature for drying coffee; Obtaining the correct water content value in coffee products from dome dryers to support sustainable agrotourism. Research Method: carried out in stages, namely observation and installation of supporting equipment for collecting data directly in the field (Experimental). Research results: Solar panels convert solar energy into electrical energy. Solar panels produce Direct Current (DC) electricity or direct current; Reducing carbon emissions: PLTS produces electricity without emitting greenhouse gases such as CO2, which contributes to global warming.</p>
title Solar Panel System with Internet of Thing Based Control on Dome Dryer for Coffee as A Support for Sustainable Agrotourism
topic Agrotourism, Drayer Dome, Energy, IoT, Solar.
url https://doi.org/10.5281/zenodo.15437359