Penggunaan Radio Frequency Identification Sebagai Monitoring Waktu Operator Maintenance

Gardini, Belinda Fatihah (2019) Penggunaan Radio Frequency Identification Sebagai Monitoring Waktu Operator Maintenance. Other thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Karena tingkat kepadatan jadwal penerbangan yang di handle oleh pihak GMF Surabaya maka setiap engineer dan mechanic GMF diharuskan untuk membuat laporan. Dalam pembuatan laporan tersebut tidak ada instrument yang dapat memonitoring waktu maintenance sehingga waktu pada report laporan yang dilaporkan bersifat tidak sebenarnya.
Pada proyek akhir ini dibuatlah sebuah alat yang mampu memonitoring waktu maintenance dengan ESP32 WROOM DEVKIT V1 sebagai kontroler dan modul Wi-Fi. Informasi hasil pembacaan ID dari setiap kartu akan dikirimkan oleh ESP32 pada database dengan perantara jaringan wifi lokal. Sehingga hasil monitoring waktu maintenance pada setiap kartu dapat ditampilkan di website. Hasil yang diperoleh adalah jarak RFID dengan reader pada posisi datar paling jauh adalah sejauh 5 cm, pada posisi miring paling jauh adalah 2,5 cm dan pada posisi tegak paling jauh adalah 1 cm. Pada proses pengriman data dari access point ke PC dengan penghalang dinding dapat terus dilakukan hingga jarak 28 meter. Sedangkan tanpa penghalang dinding dapat terus dilakukan hingga jarak 56 meter.
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Because flight schedules handled by GMF Surabaya verry bussy, every GMF engineer and mechanic is required to make reports. In making the report there is no instruments that can monitor maintenance time so that the time in the reported is not real. In this final project, was made a tool that was able to monitor maintenance time with ESP32 WROOM DEVKIT V1 as a controller an wifi module. The information from ID of each card will be sent by ESP32 to the database with use local wifi network. So the results of monitoring maintenance time on each card can be displayed on the website. The results obtained are the range of rfid distance with the reader in the farthest flat position is as far as 5 cm, at the farthest position is 2.5 cm and at the most upright position is 1 cm. In the process of sending data from access point to PC with a wall barrier it can continue to be carried out up to a distance 28 meter. In the process of sending data from access point to PC without wall barrier it can continue to be carried out up to a distance 56 meter.

Item Type: Thesis (Other)
Additional Information: RSEO 621.384 Gar p-1 2019
Uncontrolled Keywords: Radio Frequency Identification, Monitoring, ESP32, Maintenance dan Operator
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK105.8883 Web authoring software (include web server)
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK2791 D.C. to A.C. transforming machinery.
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5105.546 Computer algorithms
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5105.585 TCP/IP (Computer network protocol)
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5105.5956 Quality of service. Reliability Including network performance
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK7871.674 Detectors. Sensors
Divisions: Faculty of Vocational > 36304-Automation Electronic Engineering
Depositing User: Gardini Belinda Fatihah
Date Deposited: 10 Aug 2026 02:46
Last Modified: 10 Aug 2026 02:46
URI: http://repository.its.ac.id/id/eprint/68785

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