Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri

Process of maintaining hydroponic wick system manually requires extra energy, especially during the cherry tomato plant breeding season. Parameters, including pH value, Electrical Conductivity (EC) nutrient solution, room temperature, and humidity are needed to be considered to produce superior seed...

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Main Authors: Ira Puspasari, Yosefine Triwidyastuti, Harianto Harianto
Format: Article
Language:English
Published: Universitas Gadjah Mada 2018-03-01
Series:Jurnal Nasional Teknik Elektro dan Teknologi Informasi
Subjects:
Online Access:http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/406
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spelling doaj-228c4682bc6841a79f7e726f8454f7962020-11-25T00:03:31ZengUniversitas Gadjah MadaJurnal Nasional Teknik Elektro dan Teknologi Informasi2301-41562460-57192018-03-017110.22146/jnteti.v7i1.406339Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat CeriIra PuspasariYosefine TriwidyastutiHarianto HariantoProcess of maintaining hydroponic wick system manually requires extra energy, especially during the cherry tomato plant breeding season. Parameters, including pH value, Electrical Conductivity (EC) nutrient solution, room temperature, and humidity are needed to be considered to produce superior seeds. In this study, room temperature and humidity, pH value, and EC content in nutrient solution were controlled. The PID and on/off controller were employed in the examination plant. The PID was applied to control room temperature. On the other hand, the on/off was applied to control room humidity, pH, and EC value. PID parameters were set to Kp = 3, Ki = 2, and Kd = 10. As a result, the system produced rise time of 60 minutes, overshoot of 1.17%, and settling time of 57.5 minutes. At the same time, the on/off controller was able to settle the humidity from 61% to 80% within 150 seconds. Moreover, reduction of the pH value from 6.9 to 5.34 can be reached within 12.8 minutes. The study of the EC showed that the longer for the water valve to open, the longer it takes to reach the set point. The study also showed that the rate of cherry tomato plant height is 2.675 cm/week utilizing both of the PID and the on/off controller, while it can only reach 0.2 cm/week without controller. Furthermore, examination on the leaf numbers per week showed that the leaf grew 2 sheets per week when both controllers were applied, while it grew no sheet without controller.http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/406hidroponik, sistem wick, pembibitan tomat ceri, EC, pH, temperatur, kelembaban
collection DOAJ
language English
format Article
sources DOAJ
author Ira Puspasari
Yosefine Triwidyastuti
Harianto Harianto
spellingShingle Ira Puspasari
Yosefine Triwidyastuti
Harianto Harianto
Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
Jurnal Nasional Teknik Elektro dan Teknologi Informasi
hidroponik, sistem wick, pembibitan tomat ceri, EC, pH, temperatur, kelembaban
author_facet Ira Puspasari
Yosefine Triwidyastuti
Harianto Harianto
author_sort Ira Puspasari
title Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
title_short Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
title_full Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
title_fullStr Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
title_full_unstemmed Otomasi Sistem Hidroponik Wick Terintegrasi pada Pembibitan Tomat Ceri
title_sort otomasi sistem hidroponik wick terintegrasi pada pembibitan tomat ceri
publisher Universitas Gadjah Mada
series Jurnal Nasional Teknik Elektro dan Teknologi Informasi
issn 2301-4156
2460-5719
publishDate 2018-03-01
description Process of maintaining hydroponic wick system manually requires extra energy, especially during the cherry tomato plant breeding season. Parameters, including pH value, Electrical Conductivity (EC) nutrient solution, room temperature, and humidity are needed to be considered to produce superior seeds. In this study, room temperature and humidity, pH value, and EC content in nutrient solution were controlled. The PID and on/off controller were employed in the examination plant. The PID was applied to control room temperature. On the other hand, the on/off was applied to control room humidity, pH, and EC value. PID parameters were set to Kp = 3, Ki = 2, and Kd = 10. As a result, the system produced rise time of 60 minutes, overshoot of 1.17%, and settling time of 57.5 minutes. At the same time, the on/off controller was able to settle the humidity from 61% to 80% within 150 seconds. Moreover, reduction of the pH value from 6.9 to 5.34 can be reached within 12.8 minutes. The study of the EC showed that the longer for the water valve to open, the longer it takes to reach the set point. The study also showed that the rate of cherry tomato plant height is 2.675 cm/week utilizing both of the PID and the on/off controller, while it can only reach 0.2 cm/week without controller. Furthermore, examination on the leaf numbers per week showed that the leaf grew 2 sheets per week when both controllers were applied, while it grew no sheet without controller.
topic hidroponik, sistem wick, pembibitan tomat ceri, EC, pH, temperatur, kelembaban
url http://ejnteti.jteti.ugm.ac.id/index.php/JNTETI/article/view/406
work_keys_str_mv AT irapuspasari otomasisistemhidroponikwickterintegrasipadapembibitantomatceri
AT yosefinetriwidyastuti otomasisistemhidroponikwickterintegrasipadapembibitantomatceri
AT hariantoharianto otomasisistemhidroponikwickterintegrasipadapembibitantomatceri
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