SISTEM PEMANTAUAN VOLUME INFUS BERBASIS INTERNET OF THINGS (IoT) MENGGUNAKAN ESP32

ANUGRAH, MUHAMMAD RIZQI (2020) SISTEM PEMANTAUAN VOLUME INFUS BERBASIS INTERNET OF THINGS (IoT) MENGGUNAKAN ESP32. S1 thesis, Universitas Mercu Buana Jakarta.

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Abstract

Installation of infusion in hospitals in Indonesia is as much as (17.11%) and .according to World Health Organization (WHO) surveillance data, the incidence of infusion at emergency .departments is quite high at 85% per year and 120 million. people of 190. million patients treated in hospitals using infusions. 70% of nurses are not. compliant in implementing the standards set standards. To solve .that problem then infuse fluid volume monitoring by real time and computerized .system is made. This system use ESP-32 microcontroller as a controller, . Raspberry Pi used as mini PC to show Node-Red. Load cell sensor read the .weight of infuse fluid and processed by ESP-32 and then the data sent to Node-Red software so become monitoring. dashboard by real time. The sensor reading results will be showed in volume. form on LCD (Liquid Crystal Display) and Node-Red dashboard monitoring IoT. (Internet of Things) platform. The infuse. volume monitoring system that has been made used to help the nurses when the. nurses check the infuse in patient room. The nurse can monitored the condition. of the infuse in nurse station by accessing the Node-Red dashboard monitoring .website using web browser on PC (Personal Computer) and Handphone. Node-Red dashboard .use gauge and chart display. When gauge display turning red it means that. infuse fluid is almost empty. Buzzer is used on the device to make a sound when .the infuse is less than 50 ml. The device reading has error value about 0.0085%. and has reading accuracy about 99.992%. Keywords: Infuse, ESP-32, Load Cell, Internet of Things, Node-Red .Pemasangan infus di Rumah Sakit di Indonesia sebanyak (17,11%) Dan menurut .data surveilans World Health Organisation (WHO) dinyatakan bahwa angka .kejadian pemasangan infus di Instalasi Gawat Darurat cukup tinggi yaitu 85% per tahun dan 120 juta. orang dari 190 juta pasien yang di rawat di rumah sakit menggunakan infus. serta didapatkan juga 70% perawat tidak patuh dalam melaksanakan.standar pemasangan infus berdasarkan standar yang telah ditetapkan. Guna .mengatasi masalah tersebut dibuatlah sistem monitoring volume cairan infus secara real time .dan terkomputerisasi. Sistem tersebut menggunakan mikrokontroler ESP-32 .sebagai kontroler, Raspberry Pi berfungsi sebagai mini PC untuk menampilkan. Node-RED. Sensor load cell membaca berat cairan infus dan diproses di ESP-32 .dan selanjutnya data dikirim ke software Node-RED sehingga menjadi dashboard. monitoring secara real time. Hasil pembacaan sensor ditampilkan .dalam bentuk volume yang ditampilkan pada LCD (Liquid Crystal Display) dan .platform IoT (Internet of Things) dashboard monitoring Node-RED. Sistem. monitoring volume infus yang dibuat berfungsi untuk membantu petugas. medis dalam pengecekan cairan infus pada kamar pasien. Petugas medis dapat .memantau kondisi infus pada ruang jaga dengan mengakses alamat dashboard monitoring Node-RED .menggunakan web browser pada PC (Personal Computer) dan HP (Handphone). .Tampilan dashboard Node-RED berbentuk gauge dan chart, apabila tampilan gauge berubah warna .menjadi merah menandakan cairan infus hampir habis. Pada alat terdapat .buzzer yang berbunyi apabila kondisi infus di bawah <50 ml. Pembacaan alat .mempunyai nilai error sebesar 0.0085 % dan mempunyai akurasi pembacaan sebesar 99.992 %. Kata kunci: Infus, ESP-32, Load Cell, Internet of Things, Node-RED

Item Type: Thesis (S1)
Call Number CD: FT/ELK. 20 058
Call Number: ST/14/21/046
NIM/NIDN Creators: 41418120134
Uncontrolled Keywords: Infus, ESP-32, Load Cell, Internet of Things, Node-RED
Subjects: 000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 004 Data Processing, Computer Science/Pemrosesan Data, Ilmu Komputer, Teknik Informatika > 004.6 Interfacing and Communications/Tampilan Antar Muka (Interface) dan Jaringan Komunikasi Komputer > 004.67 Wide Area Network (WAN)/Wide Area Network > 004.678 Internet (World Wide Web)/Internet
000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 005 Computer Programmming, Programs, Data/Pemprograman Komputer, Program, Data > 005.1 Programming/Pemrograman
000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 005 Computer Programmming, Programs, Data/Pemprograman Komputer, Program, Data > 005.3 Programs/Program > 005.38 Programs for Specific Operating Systems and For Specific User Interfaces/Program untuk Sistem Operasi Tertentu dan Antarmuka Pengguna Khusus
600 Technology/Teknologi > 620 Engineering and Applied Operations/Ilmu Teknik dan operasi Terapan > 621 Applied Physics/Fisika terapan > 621.3 Electrical Engineering, Lighting, Superconductivity, Magnetic Engineering, Applied Optics, Paraphotic Technology, Electronics Communications Engineering, Computers/Teknik Elektro, Pencahayaan, Superkonduktivitas, Teknik Magnetik, Optik Terapan, Tekn
Divisions: Fakultas Teknik > Teknik Elektro
Depositing User: Putra Arsy Anugrah
Date Deposited: 18 Nov 2022 03:02
Last Modified: 05 Apr 2024 03:14
URI: http://repository.mercubuana.ac.id/id/eprint/49933

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