Design of Liquid Waste Aerator Control Based on Fuzzy Logic
Abstrak - Liquid waste is the result of liquid production which is no longer used, so it must be processed and managed so as not to cause pollution and decrease in environmental quality. The biological wastewater treatment system can use the services of decomposing bacteria. This performance is grea...
Main Authors: | , |
---|---|
Format: | Article |
Language: | English |
Published: |
Universitas Udayana
2019-08-01
|
Series: | Journal of Electrical, Electronics and Informatics |
Online Access: | https://ojs.unud.ac.id/index.php/JEEI/article/view/56095 |
id |
doaj-387caf7b75824b6fbbf2392b0d9a0b44 |
---|---|
record_format |
Article |
spelling |
doaj-387caf7b75824b6fbbf2392b0d9a0b442020-11-25T03:03:50ZengUniversitas UdayanaJournal of Electrical, Electronics and Informatics2549-83042622-03932019-08-0132485110.24843/JEEI.2019.v03.i02.p0456095Design of Liquid Waste Aerator Control Based on Fuzzy LogicI Made Mataram0I Ketut WijayaUniversitas UdayanaAbstrak - Liquid waste is the result of liquid production which is no longer used, so it must be processed and managed so as not to cause pollution and decrease in environmental quality. The biological wastewater treatment system can use the services of decomposing bacteria. This performance is greatly influenced by several factors, including the amount of waste water, the level of impurities, the availability of oxygen (O2), the type of dirt and so on. Parameters used as standard control of BOD and COD liquid waste standards meet the standards. An aerator in the form of an air pump is used to disperse high-pressure air in liquid waste containing oxygen in the process of aeration effluence, so that when air rises to the surface of the water oxygen binding will occur. The operation of the aerator is generally done manually, so that there is a waste of use of electrical energy. This paper discusses the design of an aerator operating control system on waste quality standards using one input fuzzy logic controller and one output. The main component of the hardware is the Uno type Arduino microcontroller used, with the sensor input in the form of COD and output in the form of long working hours of the aerator. The results obtained indicate that the control device is able to reduce the use of electrical energy by 31.03% and can work well based on the value of small deviations and controls capable of working at a set point of 6-10 hours.https://ojs.unud.ac.id/index.php/JEEI/article/view/56095 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
I Made Mataram I Ketut Wijaya |
spellingShingle |
I Made Mataram I Ketut Wijaya Design of Liquid Waste Aerator Control Based on Fuzzy Logic Journal of Electrical, Electronics and Informatics |
author_facet |
I Made Mataram I Ketut Wijaya |
author_sort |
I Made Mataram |
title |
Design of Liquid Waste Aerator Control Based on Fuzzy Logic |
title_short |
Design of Liquid Waste Aerator Control Based on Fuzzy Logic |
title_full |
Design of Liquid Waste Aerator Control Based on Fuzzy Logic |
title_fullStr |
Design of Liquid Waste Aerator Control Based on Fuzzy Logic |
title_full_unstemmed |
Design of Liquid Waste Aerator Control Based on Fuzzy Logic |
title_sort |
design of liquid waste aerator control based on fuzzy logic |
publisher |
Universitas Udayana |
series |
Journal of Electrical, Electronics and Informatics |
issn |
2549-8304 2622-0393 |
publishDate |
2019-08-01 |
description |
Abstrak - Liquid waste is the result of liquid production which is no longer used, so it must be processed and managed so as not to cause pollution and decrease in environmental quality. The biological wastewater treatment system can use the services of decomposing bacteria. This performance is greatly influenced by several factors, including the amount of waste water, the level of impurities, the availability of oxygen (O2), the type of dirt and so on. Parameters used as standard control of BOD and COD liquid waste standards meet the standards. An aerator in the form of an air pump is used to disperse high-pressure air in liquid waste containing oxygen in the process of aeration effluence, so that when air rises to the surface of the water oxygen binding will occur. The operation of the aerator is generally done manually, so that there is a waste of use of electrical energy. This paper discusses the design of an aerator operating control system on waste quality standards using one input fuzzy logic controller and one output. The main component of the hardware is the Uno type Arduino microcontroller used, with the sensor input in the form of COD and output in the form of long working hours of the aerator. The results obtained indicate that the control device is able to reduce the use of electrical energy by 31.03% and can work well based on the value of small deviations and controls capable of working at a set point of 6-10 hours. |
url |
https://ojs.unud.ac.id/index.php/JEEI/article/view/56095 |
work_keys_str_mv |
AT imademataram designofliquidwasteaeratorcontrolbasedonfuzzylogic AT iketutwijaya designofliquidwasteaeratorcontrolbasedonfuzzylogic |
_version_ |
1724684312168628224 |