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PROTOTYPE ALAT PEMBERIAN PAKAN AYAM OTOMATIS MENGGUNAKAN ARDUINO DAN INTERNET OF THINGS UNTUK NOTIFIKASI KETERSEDIAAN PAKAN Ahmad Rufa’i; Zakaria Ansori
Journal of Innovation And Future Technology (IFTECH) Vol 4 No 2 (2022): Vol 4 No 2 (August 2022): Journal of Innovation and Future Technology (IFTECH)
Publisher : LPPM Unbaja

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47080/iftech.v4i2.2172

Abstract

In this modern era, we as a society need to take advantage of Technology to supPort chicken breeding activities, especially in the field of animal husbandry. One of the potential farms is broiler chickens. Broiler chickens are a type of poultry that produces meat. One of the factors of accelerating the growth of broiler chickens can also be measured from regular and systematic feeding, scheduling of feeding. At this time the food filling system in raising chickens still uses manual, namely using human labor, therefore the management of the automatic feeding system will be more efficient in maintaining broiler chickens and make it easier for farm owners to control the stock of feed availability. In conducting this research, the type of research used is a qualitative data collection method. In addition, the system that will be built uses the Waterfall design method. In modeling this application using the UML method in the form of use case diagrams, class diagrams, activity diagrams, and squence diagrams. The result of this research is the production of an automaticchicken feed prototype using Arduino and the Internet of Things for feed availability notification.
Sistem Pelaporan Keamanan Otomatis Menggunakan Arduino Berbasis Android pada Perumahan Ciujung Indah Kragilan Muhamad Andreas Saputra; Ahmad Rufa’i; Adith Aulia Rahman
QISTINA: Jurnal Multidisiplin Indonesia Vol. 4 No. 2 (2025): December 2025
Publisher : CV. Rayyan Dwi Bharata

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.57235/qistina.v4i2.7375

Abstract

A responsive security system is essential for quickly responding to emergencies in residential areas. This study designed and implemented an ESP32-based security alert system controlled via an Android application at the Ciujung Kragilan Housing Complex. The system replaces conventional methods by utilizing Internet of Things (IoT) technology, where the ESP32 acts as a local access point and web server controlling a siren and audio module. The Android application provides an interface for users to trigger an alert sequence: a 7-second siren followed by a pre-recorded voice announcement based on the incident location. Functional testing showed that all HTTP endpoints (/alarm/on, /alarm/off, /voice/play) were executed successfully with a response time below 500 ms. The system proved effective as a fast and scalable early warning solution and can serve as a foundation for developing more integrated environmental security systems in the future.