Alamsyah, Surya Fadli (2025) Pengembangan Sistem Pelacakan Kontainer Terintegrasi Berbasis IoT untuk Mendukung Perangkat Pelacak Berbasis Baterai dan Tenaga Surya. Project Report. [s.n.], [s.l.]. (Unpublished)
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5025221059-Project_Report.pdf - Accepted Version Restricted to Repository staff only Download (1MB) | Request a copy |
Abstract
Antares merupakan platform Internet of Things (IoT) milik PT Telkom Indonesia yang menyediakan solusi pemantauan aset industri. Proyek Kerja Praktik ini berfokus pada pengembangan sistem pelacakan kontainer dengan tantangan utama mengintegrasikan perangkat pelacak bertenaga surya ke dalam platform yang sebelumnya hanya mendukung perangkat berbasis baterai. Tujuan pengembangan ini adalah mewujudkan sistem pemantauan terpadu yang memungkinkan pengguna memantau kedua jenis perangkat melalui satu antarmuka dashboard. Sistem dikembangkan dengan arsitektur backend berbasis Python yang terdiri atas komponen ingesti data dan layanan web. Komponen ingesti data menjalankan TCP Server untuk menerima, mendekode, dan mencadangkan data telemetri, sedangkan layanan web berbasis FastAPI menyajikan data kepada pengguna melalui dashboard dan endpoint API. Seluruh data dikelola dalam basis data MySQL. Hasil akhir proyek ini berupa dashboard web berbasis Jinja2 yang menampilkan data perangkat baterai dan surya secara dinamis, serta dilengkapi fitur peta interaktif, filter data, dan manajemen geofence.
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Antares is an Internet of Things (IoT) platform owned by PT Telkom Indonesia that provides industrial asset monitoring solutions. This internship project focuses on developing a container tracking system, with the main challenge of integrating solar-powered tracking devices into a platform that previously supported only battery-powered devices. The goal of this development is to create a unified monitoring system that allows users to monitor both types of devices through a single dashboard interface. The system was developed using a Python-based backend architecture consisting of data ingestion and web service components. The data ingestion component runs a TCP Server to receive, decode, and back up telemetry data, while the web service, built with FastAPI, delivers the data to users through a dashboard and API endpoints. All data is managed in a MySQL database. The final outcome of this project is a Jinja2-based web dashboard that dynamically displays both battery-powered and solar-powered device data, equipped with an interactive map, data filtering, and geofence management features.
| Item Type: | Monograph (Project Report) |
|---|---|
| Uncontrolled Keywords: | Internet of Things, FastAPI, TCP Server, Container Tracking System, Server TCP, Sistem Pelacakan Kontainer. |
| Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5105.585 TCP/IP (Computer network protocol) T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5105 Data Transmission Systems |
| Divisions: | Faculty of Intelligent Electrical and Informatics Technology (ELECTICS) > Informatics Engineering > 55201-(S1) Undergraduate Thesis |
| Depositing User: | Surya Fadli Alamsyah |
| Date Deposited: | 11 Nov 2025 05:56 |
| Last Modified: | 11 Nov 2025 05:56 |
| URI: | http://repository.its.ac.id/id/eprint/128772 |
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