Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy

Lighting is a factor to get a safe and comfortable environment. Good lighting allows one to see objects that are done clearly, and can give a refreshing view. Conversely, if the room has poor lighting can cause eye fatigue, therefore it is necessary to control the intensity of light-based microcontr...

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Main Authors: Sriwati, Aedi Al Abshari Tzal, Suyuti Ansar, Ahmad Andani, Umraeni Salam A. Ejah
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/27/matecconf_icudr2019_06006.pdf
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spelling doaj-4cfb08119118413799ca1f133ec426182021-08-05T13:53:13ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013310600610.1051/matecconf/202033106006matecconf_icudr2019_06006Control of light Intensity via Microcontroller for the Efficiency of Electrical EnergySriwati0Aedi Al Abshari Tzal1Suyuti Ansar2Ahmad Andani3Umraeni Salam A. Ejah4Electrical engineering of Makassar Islamic UniversityElectrical engineering of Makassar Islamic UniversityDepartment of Electrical Engineering Hasanuddin UniversityDepartment of Electrical Engineering Hasanuddin UniversityDepartment of Electrical Engineering Hasanuddin UniversityLighting is a factor to get a safe and comfortable environment. Good lighting allows one to see objects that are done clearly, and can give a refreshing view. Conversely, if the room has poor lighting can cause eye fatigue, therefore it is necessary to control the intensity of light-based microcontroller to regulate the lighting of a room automatically. his research was made by designing a lighting model using a dimmer circuit based on ATMega328 microcontroller, LDR sensor (Light Dependent Resistor) and Bluetooth HC-06. The working principle of the LDR sensor is receiving light from the outside which causes changes in the input voltage level to the microcontroller while the Bluetooth HC-06 works by connecting a Bluetooth device with a smartphone that has installed the PWM Light Control application. which is then processed by microcontroller output in the form of pulse voltage (PWM) in the dimmer circuit to adjust the dim and bright lights. Results for electricity voltage (Volt), Electricity (Ampere), Light level (Lux) and electrical power used. At each increase from 0-255 PWM which is channeled to the dimmer circuit, the power is 0-13,0357 watts, comparable to before using a circuit of around 13,5036 watts with a percentage of 1. 7% with a 15-Watt lamp, the light conditions are stable in brightness. The distance of control of this tool reaches 26. 15 m with 1 barrier wall and still works with 3 barrier walls with a distance of 21. 45 m. So that the use of electric power and light can be adjusted to the needs.https://www.matec-conferences.org/articles/matecconf/pdf/2020/27/matecconf_icudr2019_06006.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Sriwati
Aedi Al Abshari Tzal
Suyuti Ansar
Ahmad Andani
Umraeni Salam A. Ejah
spellingShingle Sriwati
Aedi Al Abshari Tzal
Suyuti Ansar
Ahmad Andani
Umraeni Salam A. Ejah
Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
MATEC Web of Conferences
author_facet Sriwati
Aedi Al Abshari Tzal
Suyuti Ansar
Ahmad Andani
Umraeni Salam A. Ejah
author_sort Sriwati
title Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
title_short Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
title_full Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
title_fullStr Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
title_full_unstemmed Control of light Intensity via Microcontroller for the Efficiency of Electrical Energy
title_sort control of light intensity via microcontroller for the efficiency of electrical energy
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2020-01-01
description Lighting is a factor to get a safe and comfortable environment. Good lighting allows one to see objects that are done clearly, and can give a refreshing view. Conversely, if the room has poor lighting can cause eye fatigue, therefore it is necessary to control the intensity of light-based microcontroller to regulate the lighting of a room automatically. his research was made by designing a lighting model using a dimmer circuit based on ATMega328 microcontroller, LDR sensor (Light Dependent Resistor) and Bluetooth HC-06. The working principle of the LDR sensor is receiving light from the outside which causes changes in the input voltage level to the microcontroller while the Bluetooth HC-06 works by connecting a Bluetooth device with a smartphone that has installed the PWM Light Control application. which is then processed by microcontroller output in the form of pulse voltage (PWM) in the dimmer circuit to adjust the dim and bright lights. Results for electricity voltage (Volt), Electricity (Ampere), Light level (Lux) and electrical power used. At each increase from 0-255 PWM which is channeled to the dimmer circuit, the power is 0-13,0357 watts, comparable to before using a circuit of around 13,5036 watts with a percentage of 1. 7% with a 15-Watt lamp, the light conditions are stable in brightness. The distance of control of this tool reaches 26. 15 m with 1 barrier wall and still works with 3 barrier walls with a distance of 21. 45 m. So that the use of electric power and light can be adjusted to the needs.
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/27/matecconf_icudr2019_06006.pdf
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