Search for collections on EPrints Repository UNTIRTA

SISTEM MONITORING SUHU DAN KELEMBABAN PADA HIDROPONIK BIBIT TANAMAN BUAH BERBASIS EBB AND FLOW SYSTEM

RAMADHANI, MUTIARA (2024) SISTEM MONITORING SUHU DAN KELEMBABAN PADA HIDROPONIK BIBIT TANAMAN BUAH BERBASIS EBB AND FLOW SYSTEM. S1 thesis, Fakultas Teknik Universitas Sultan Ageng Tirtayasa.

[img] Text (SKRIPSI)
Mutiara Ramadhani_3332190064_Fulltext.pdf
Restricted to Registered users only

Download (3MB)
[img] Text (SKRIPSI BAB 1)
Mutiara Ramadhani_3332190064_01.pdf
Restricted to Registered users only

Download (654kB)
[img] Text (SKRIPSI BAB 2)
Mutiara Ramadhani_3332190064_02.pdf
Restricted to Registered users only

Download (390kB)
[img] Text (SKRIPSI BAB 3)
Mutiara Ramadhani_3332190064_03.pdf
Restricted to Registered users only

Download (333kB)
[img] Text (SKRIPSI BAB 4)
Mutiara Ramadhani_3332190064_04.pdf
Restricted to Registered users only

Download (369kB)
[img] Text (SKRIPSI BAB 5)
Mutiara Ramadhani_3332190064_05.pdf
Restricted to Registered users only

Download (35kB)
[img] Text (SKRIPSI DAFTAR PUSTAKA)
Mutiara Ramadhani_3332190064_Ref.pdf
Restricted to Registered users only

Download (118kB)
[img] Text (SKRIPSI LAMPIRAN)
Mutiara Ramadhani_3332190064_Lamp.pdf
Restricted to Registered users only

Download (1MB)
[img] Text (SKRIPSI CEK PLAGIARISME)
Mutiara Ramadhani_3332190064_CP.pdf
Restricted to Registered users only

Download (21MB)

Abstract

In the cultivation of fruit seedlings, monitoring environmental conditions such as temperature, air humidity, and soil moisture inside the greenhouse is crucial. The commonly used manual methods for daily monitoring of these parameters are deemed ineffective and inefficient. Therefore, this research proposes the design of an Internet of Things (IoT)-based monitoring system using Wemos D1 R1 devices, DHT22 sensors for temperature and air humidity, and YL-69 Soil Moisture sensors. The research results indicate a percentage error of 1,15% for the DHT22 temperature sensor, 5,002% for the DHT22 air humidity sensor, 6,068% for YL-69(1), 5,195% for YL-69(2), and 5,515% for YL-69(3). An optimal monitoring system can transmit accurate parameter readings for 24 hours and, through monitoring ebb and flow watering, can improve the maintenance efficiency of fruit plant seedlings in a greenhouse compared to hose watering.

Item Type: Thesis (S1)
Contributors:
ContributionContributorsNIP/NIM
Thesis advisorSUPRIYANTO, SUPRIYANTO197605082003121002
Thesis advisorFIRMANSYAH, TEGUH198710212012121001
Additional Information: Dalam pemeliharaan bibit tanaman buah, memonitor kondisi parameter seperti suhu lingkungan, kelembaban udara, dan kelembaban tanah di dalam greenhouse menjadi sangat krusial. Metode manual yang umumnya digunakan dalam pemantauan harian terhadap parameter tersebut dinilai tidak efektif dan efisien. Oleh karena itu, penelitian ini mengusulkan desain sistem monitoring berbasis Internet of Things (IoT) menggunakan perangkat Wemos D1 R1, sensor DHT22 untuk suhu dan kelembaban udara, serta sensor Soil Moisture YL-69 untuk kelembaban tanah. Hasil penelitian menunjukkan bahwa persentase error dari sensor DHT22 untuk suhu sebesar 1,15%, DHT22 untuk kelembaban udara sebesar 5,002%, YL-69(1) sebesar 6,068%, YL-69(2) sebesar 5,195%, dan YL-69(3) sebesar 5,515%. Sistem monitoring berfungsi optimal dapat mengirimkan informasi pembacaan parameter yang akurat selama 24 jam dan dari monitoring penyiraman ebb and flow dapat meningkatkan efisiensi pemeliharaan bibit tanaman buah di dalam greenhouse dibandingkan penyiraman selang.
Subjects: T Technology > T Technology (General)
T Technology > TD Environmental technology. Sanitary engineering
T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: 03-Fakultas Teknik
03-Fakultas Teknik > 20201-Jurusan Teknik Elektro
Depositing User: mrs. Mutiara Ramadhani
Date Deposited: 12 Aug 2024 13:54
Last Modified: 13 Aug 2024 14:04
URI: http://eprints.untirta.ac.id/id/eprint/40591

Actions (login required)

View Item View Item