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Image of IMPLEMENTASI PROTOKOL MESSAGE QUEUING TELEMETRY TRANSPORT PADA SISTEM MONITORING HIDROPONIK BERBASIS DIGITAL TWIN

SKRIPSI IF

IMPLEMENTASI PROTOKOL MESSAGE QUEUING TELEMETRY TRANSPORT PADA SISTEM MONITORING HIDROPONIK BERBASIS DIGITAL TWIN

ROHENDI, AGUS - Personal Name;

ABSTRAK

Permasalahan yang mendasari penelitian ini adalah bagaimana memantau sistem hidroponik secara manual, yang tidak efisien, rentan terhadap kesalahan manusia, dan dapat menghambat pertumbuhan tanaman. Sebuah sistem monitoring berbasis Internet of Things (IoT) yang menggunakan ide Digital Twin dirancang untuk mengatasi masalah tersebut. Memanfaatkan protokol MQTT untuk mengirimkan data ke platform IoT Antares secara real-time, sistem hidroponik dimodelkan secara fisik dengan menggunakan mikrokontroler ESP32 untuk mengontrol berbagai sensor yang menunjukkan suhu air, nutrisi, level air, intensitas cahaya, dan suhu lingkungan. Selanjutnya, data ini divisualisasikan dalam model 3D interaktif yang dibangun menggunakan Unity 3D. Hasil pengujian Quality of Service (QoS) menunjukkan bahwa sistem ini sangat andal dengan nilai packet loss 0% dan stabil dengan jitter rendah, meskipun ada keterlambatan pengiriman data rata-rata 3 hingga 7 detik. Ini menunjukkan bahwa penerapan Digital Twin dapat menjadi solusi yang efektif untuk melacak kondisi sistem hidroponik dari jarak jauh dengan cara yang mudah dipahami dan akurat.

Kata kunci: IoT, MQTT, ESP32, Digital Twin, hidroponik, monitoring.


ABSTRACT

The underlying problem addressed by this research is how to monitor hydroponic systems manually, which is inefficient, prone to human error, and can hinder plant growth. An Internet of Things (IoT)-based monitoring system that utilizes the Twin Digital concept was designed to address these issues. Utilizing the MQTT protocol to send data to the Antares IoT platform in real-time, the hydroponic system is physically modeled using an ESP32 microcontroller to control various sensors that indicate water temperature, nutrients, water level, light intensity, and ambient temperature. Furthermore, this data is visualized in an interactive 3D model built using Unity 3D. Quality of Service (QoS) test results show that this system is highly reliable with 0% packet loss and stable with low jitter, despite an average data transmission delay of 3 to 7 seconds. This demonstrates that the implementation of Digital Twin can be an effective solution for remotely monitoring hydroponic system conditions in an easy-to-understand and accurate manner.

Keywords: IoT, MQTT, ESP32, Digital Twin, hydroponics, monitoring


Ketersediaan
S250925009607.2 ROH iPerpustakaan STMIK AMIKBANDUNGTersedia
Informasi Detil
Judul Seri
-
No. Panggil
607.2 ROH i
Penerbit
: ., 2025
Deskripsi Fisik
-
Bahasa
Indonesia
ISBN/ISSN
-
Klasifikasi
NONE
Tipe Isi
-
Tipe Media
-
Tipe Pembawa
-
Edisi
-
Subyek
-
Info Detil Spesifik
-
Pernyataan Tanggungjawab
-
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