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Anderias Eko Wijaya
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INDONESIA
Jurnal Teknologi Informasi dan Komunikasi
ISSN : 22524517     EISSN : 27237249     DOI : https://doi.org/10.47561/a.v13i1
Jurnal Teknologi Informasi dan Komunikasi menerbitkan kajian ilmiah hasil penelitian dan pemikiran di bidang ilmu dan teknologi komputer yang didistribusikan sebagai sumber referensi bagi para akademisi di bidang Ilmu dan Teknologi Komputer. Jurnal Teknologi Informasi dan Komunikasi menerima artikel ilmiah dengan cakupan penelitian: 1. Internet of Things 2. Machine Learning 3. Data Mining 4. Big Data 5. Sistem Pengambilan Keputusan 6. Sistem Artificial Intelligence 7. Jaringan Komputer 8. Sistem Informasi
Articles 5 Documents
Search results for , issue "Vol 17 No 2 (2024): October" : 5 Documents clear
SISTEM MONITORING KENYAMANAN TOILET BERBASIS IoT MENGGUNAKAN PLATFORM BLYNK Parlaungan S., Timbo Faritcan; Novianti, Wieke; Permana, Eka; Ahmad, Hermansyah Nur
Jurnal Teknologi Informasi dan Komunikasi Vol 17 No 2 (2024): October
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v17i2.245

Abstract

The purpose of this research can monitor and control the comfort of IoT-based toilets (Internet Of Things) using the Blynk Platform. In general, the comfort of the toilet is known if the situation is dirty and seen directly, especially if it causes an unpleasant odor. This system aims to collect temperature, gas data and provide access to toilet condition information to cleaners easily and quickly through an application integrated with Blynk. In monitoring comfort in toilets, the research methods used include literature surveys to understand IoT concepts and relevant technologies, as well as a review of temperature and gas sensor technologies that are suitable for data collection. In addition, user needs analysis and system design are also carried out to ensure the availability of accurate and relevant information. From the results obtained, it is hoped that this study can help determine the condition of the toilet in realtime so that toilet comfort is more awake and users feel comfortable when using the toilet. This research can also be a reference for future researchers related to the material used.
PERANCANGAN SISTEM MONITORING JARAK JAUH PINTU PINTAR RUMAH INDEKOS BERBASIS IOT (INTERNET OF THINGS) MENGGUNAKAN PLATFORM BLYNK Leander, Daud Elia; Ashidiqie, Muhammad Fikry; Udoyono, Kodar
Jurnal Teknologi Informasi dan Komunikasi Vol 17 No 2 (2024): October
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v17i2.265

Abstract

Security systems are crucial for ensuring the safety of residents, particularly in boarding houses, which tend to be more vulnerable to criminal activities. In this study, a door security system based on the IoT (Internet of Things) was developed using the Blynk platform. The system is designed to allow boarding house owners and residents to monitor door access via a smartphone, enhancing security more effectively and efficiently. The system utilizes a NodeMCU microcontroller as the control center, which is connected to a door sensor, and provides real-time notifications through the Blynk application. Additionally, activity log features and remote control capabilities are integrated into the system. Testing was conducted through simulation scenarios to evaluate the system's response to various security conditions. The results showed that the system operates effectively and provides real-time notifications to users. This system is expected to serve as an alternative solution for improving boarding house security that is easy to implement and use.
PENGEMBANGAN SISTEM IOT UNTUK PEMANTAUAN KESEHATAN DOMBA DENGAN ALGORITMA C4.5 BERBASIS THINGSPEAK Nugraha, Fahmi; Wijaya, Anderias Eko; Hermawan, Rian; Sobari, Dicky Iskandar
Jurnal Teknologi Informasi dan Komunikasi Vol 17 No 2 (2024): October
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v17i2.266

Abstract

Effective livestock health monitoring is one of the primary challenges in modern farming, especially in detecting early health disorders in sheep. This research aims to develop a sheep health monitoring system based on the Internet of Things (IoT) using the C4.5 algorithm and the ThingSpeak platform. The system collects vital sheep data such as body temperature, heart rate, sound, and physical activity in real time through sensors and microphones connected to IoT devices. The data is then transmitted to the ThingSpeak platform for analysis and storage. The C4.5 algorithm is used to build a decision model capable of classifying the health conditions of sheep based on collected parameters such as temperature, heart rate, and respiration. The processed data results are displayed in the form of graphs and warning notifications on the ThingSpeak platform, allowing farmers to monitor livestock health easily and responsively. The accuracy test yielded a 90% accuracy rate using a confusion matrix with a data sampling split of 80% for training data and 20% for testing data. This indicates that the system has a high level of accuracy in detecting sheep health conditions. Consequently, the system has the potential to assist farmers in improving the efficiency of livestock health monitoring automatically and in real time. Moreover, the application of IoT technology and the C4.5 algorithm in the livestock sector is expected to provide innovative solutions to support productivity and animal welfare.
DAMPAK PENERAPAN DIGITALISASI ARSIP DI DESA CIBOGO KEC.CIBOGO, KAB.SUBANG TERHADAP KEGIATAN PELAYANAN MASYARAKAT Saepudin, Asep; Rusilpan, Ilpan; Jupriyanto; Carkiman
Jurnal Teknologi Informasi dan Komunikasi Vol 17 No 2 (2024): October
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v17i2.270

Abstract

The ever-increasing development of digitalization has made village governments begin to apply it in the process of providing services to the community and in the process helps facilitate the work carried out by employees, thereby making the service process fast and easy. Digital archives are used to simplify the process of searching for archives that have been created and reduce physical archives that require space for storage. By using observation and interview research methods as well as system development methods using waterfall, the results obtained from this research are that the digital archive system can run well and can be used by users. If a digital archive system is compared with conventional archives, the result is that digital archives can improve service quality, making it easier for employees to manage archives. Digital archives can reduce paper use by 50 percent, thereby reducing environmental impacts caused by paper use, such as cutting down trees and pollution from the use of chemicals
SISTEM KONTROL LAMPU TERAS RUMAH BERBASIS IoT (Internet of Things) MENGGUNAKAN METODE NAÏVE BAYES PADA PLATFORM NODE-RED Aulia, Regita Faza; Murdianingsih, Yuli; Faizal, Muhammad; Suryadi, Usep Tatang; Abidin, Aa Zezen Zaenal
Jurnal Teknologi Informasi dan Komunikasi Vol 17 No 2 (2024): October
Publisher : STMIK Subang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47561/a.v17i2.271

Abstract

Salah satu energi yang banyak digunakan sehari-hari adalah energi untuk penerangan. Setiap rumah pasti memiliki sumber penerangan, salah satu sumber penerangan yang ada di rumah adalah lampu. Saat penghuni rumah berpergian seringkali lampu teras rumah dibiarkan menyala. Untuk mengatasi hal tersebut maka diperlukan sebuah pengendali pada lampu teras rumah agar lebih efisien lampu mati saat matahari terbit, menyala saat cuaca mendung dan saat malam hari agar mencegah tindak kriminalitas saat penghuni rumah sedang berpergian. Dengan dibuatnya sistem kontrol lampu teras rumah berbasis Internet of Things menggunakan metode Naïve Bayes pada platform Node-RED, pemilik rumah dapat mengontrol lampu teras rumahnya dari jauh. Sistem ini memanfaatkan NodeMCU untuk menyambungkan data ke platform menggunakan jaringan internet, sensor LDR yang berfungsi mendeteksi intensitas cahaya sekitar, sensor DHT11 untuk mendeteksi suhu dan kelembaban disekitar, modul relay untuk menyambungkan lampu dengan perangkat lainnya, dan platform Node-RED yang akan mengontrol lampu teras rumah.

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