PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW
In this final project has made prototype system water level measurement and control at flow stream area based on Arduino Uno and LabVIEW interaction with 2 ultrasonic sensors SRF05 as measure of water surface distance and servo motor as water gate operator based water level comparison. The first ult...
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Format: | Thesis |
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[Yogyakarta] : Universitas Gadjah Mada
2014
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author | , ANGGIT KURNIAWAN , Danang Lelono S.Si., M.T |
author_facet | , ANGGIT KURNIAWAN , Danang Lelono S.Si., M.T |
author_sort | , ANGGIT KURNIAWAN |
collection | UGM |
description | In this final project has made prototype system water level measurement and
control at flow stream area based on Arduino Uno and LabVIEW interaction with 2
ultrasonic sensors SRF05 as measure of water surface distance and servo motor as
water gate operator based water level comparison.
The first ultrasonic sensor is measuring water surface distance at primary /
first stream area and the second ultrasonic sensor is measuring water surface distance
at diversion / secondary stream area. Ultrasonic sensor is measuring distance every 1
cm multiple. Distance measured from every ultrasonic sensors state as distance
variable. Arduino Uno has sending distance variable 1 and distance variable 2 to
LabVIEW. Distance variable 1 and distance variable 2 were converted become water
level 1 and water level 2 from calculation process on LabVIEW. Water level 1 and
water level 2 were compared and assumed as difference level with calculation water
level 1 subtracted water level 2. If water level 1 equal with water level 2 then radian
angle of servo motor at 0° position and water gate still close. If water level 1 higher
than water level 2 then radian angle of servo motor moving at radian angle n°
position and water gate open, then water from primary stream area was distributed to
diversion stream area.
Water gate is open at bottom level, intermediate level and high level
accordingly water level comparison condition. Servo motor is controlled in automatic
or manual from LabVIEW. Radian Angle of servo motor at every condition is
decided by LabVIEW and will be sent to Arduino Uno for moving servo motor. |
first_indexed | 2024-03-13T23:22:52Z |
format | Thesis |
id | oai:generic.eprints.org:128878 |
institution | Universiti Gadjah Mada |
last_indexed | 2024-03-13T23:22:52Z |
publishDate | 2014 |
publisher | [Yogyakarta] : Universitas Gadjah Mada |
record_format | dspace |
spelling | oai:generic.eprints.org:1288782016-03-04T07:52:15Z https://repository.ugm.ac.id/128878/ PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW , ANGGIT KURNIAWAN , Danang Lelono S.Si., M.T ETD In this final project has made prototype system water level measurement and control at flow stream area based on Arduino Uno and LabVIEW interaction with 2 ultrasonic sensors SRF05 as measure of water surface distance and servo motor as water gate operator based water level comparison. The first ultrasonic sensor is measuring water surface distance at primary / first stream area and the second ultrasonic sensor is measuring water surface distance at diversion / secondary stream area. Ultrasonic sensor is measuring distance every 1 cm multiple. Distance measured from every ultrasonic sensors state as distance variable. Arduino Uno has sending distance variable 1 and distance variable 2 to LabVIEW. Distance variable 1 and distance variable 2 were converted become water level 1 and water level 2 from calculation process on LabVIEW. Water level 1 and water level 2 were compared and assumed as difference level with calculation water level 1 subtracted water level 2. If water level 1 equal with water level 2 then radian angle of servo motor at 0° position and water gate still close. If water level 1 higher than water level 2 then radian angle of servo motor moving at radian angle n° position and water gate open, then water from primary stream area was distributed to diversion stream area. Water gate is open at bottom level, intermediate level and high level accordingly water level comparison condition. Servo motor is controlled in automatic or manual from LabVIEW. Radian Angle of servo motor at every condition is decided by LabVIEW and will be sent to Arduino Uno for moving servo motor. [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , ANGGIT KURNIAWAN and , Danang Lelono S.Si., M.T (2014) PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=69252 |
spellingShingle | ETD , ANGGIT KURNIAWAN , Danang Lelono S.Si., M.T PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title | PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title_full | PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title_fullStr | PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title_full_unstemmed | PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title_short | PURWARUPA SISTEM PENGUKURAN DAN PENGENDALIAN KETINGGIAN AIR PADA DAERAH ALIRAN SUNGAI BERBASIS INTERAKSI ARDUINO UNO DAN LABVIEW |
title_sort | purwarupa sistem pengukuran dan pengendalian ketinggian air pada daerah aliran sungai berbasis interaksi arduino uno dan labview |
topic | ETD |
work_keys_str_mv | AT anggitkurniawan purwarupasistempengukurandanpengendalianketinggianairpadadaerahaliransungaiberbasisinteraksiarduinounodanlabview AT dananglelonossimt purwarupasistempengukurandanpengendalianketinggianairpadadaerahaliransungaiberbasisinteraksiarduinounodanlabview |