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Penerapan Smart Trash Monitoring System untuk Memantau Sampah Rumah Tangga di Perumahan Graha Panyindangan Estate Indramayu Fauzan Ishlakhuddin; Esti Mulyani; Eka Ismantohadi
Pemberdayaan Masyarakat : Jurnal Aksi Sosial Vol. 2 No. 4 (2025): Desember: Pemberdayaan Masyarakat : Jurnal Aksi Sosial
Publisher : Lembaga Pengembangan Kinerja Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62383/aksisosial.v2i4.2606

Abstract

Household waste management is a significant challenge in creating clean, healthy, and sustainable residential areas. Dependence on manual monitoring methods often leads to delays in waste collection, waste pile-ups, and operational inefficiencies. This community service program implements a Smart Trash Monitoring Sistem (STMS) based on the Internet of Things (IoT) in Graha Panyindangan Estate, Indramayu. The system utilizes ultrasonic sensors and ESP32 to detect waste levels and sends real-time data to a dashboard accessible by residents and cleaning staff. The results of implementing STMS show improved efficiency in waste management, with waste collection being carried out on time based on accurate, real-time data. This system also reduces the need for manual inspections and encourages responsible waste management behavior among residents. In addition to technical benefits, there have been social changes, such as increased environmental awareness and the formation of new social norms within the community. The involvement of local leaders in supporting the system’s sustainability further strengthens the implementation of the smart living concept, resulting in a cleaner, healthier, and more sustainable residential environment in the long term.
Penerapan Smart Trash Monitoring System untuk Memantau Sampah Rumah Tangga di Perumahan Graha Panyindangan Estate Indramayu Fauzan Ishlakhuddin; Esti Mulyani; Eka Ismantohadi
Karya Nyata : Jurnal Pengabdian kepada Masyarakat Vol. 2 No. 4 (2025): Desember : Karya Nyata : Jurnal Pengabdian kepada Masyarakat
Publisher : Lembaga Pengembangan Kinerja Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/karyanyata.v2i4.2600

Abstract

Household waste management remains a critical challenge in creating clean and sustainable residential environments. Manual monitoring methods often lead to delayed waste collection, overflowing bins, and operational inefficiency. This community engagement program implements an Internet of Things (IoT)-based Smart Trash Monitoring SIstem (STMS) at Graha Panyindangan Estate, Indramayu. The sIstem utilizes ultrasonic sensors and ESP32 microcontrollers to detect the fill level of household waste containers and transmit data in real time to a user-accessible dashboard. The results demonstrate that the STMS provides accurate waste-level information, reduces manual inspections, enhances collection efficiency, and fosters data-driven behavior among residents. Social changes also emerged, including improved environmental awareness, new social norms, and the emergence of local leaders supporting sIstem sustainability. This program contributes to the realization of smart living in modern residential communities, ensuring better waste management, cleaner environments, and more sustainable practices for future generations. It also provides valuable insights into the role of technology in addressing environmental issues at the community level.
OPTIMALISASI KONSUMSI AIR RUMAH TANGGA MENGGUNAKAN SISTEM PEMANTAUAN AIR PINTAR BERBASIS IOT Fauzan Ishlakhuddin; Fachrul Pralienka Bani Muhamad; Eka Ismantohadi; Lucky Dawamuz Dzikri; Mohamad Muhgni Rahadiansyah; Ramadhani
Rabit : Jurnal Teknologi dan Sistem Informasi Univrab Vol 11 No 1 (2026): Januari
Publisher : LPPM Universitas Abdurrab

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36341/rabit.v11i1.7136

Abstract

This study develops an Internet of Things (IoT)-based Smart Water Monitoring System for periodic (near real-time) and comprehensive monitoring of household water consumption. The system consists of two main devices: a device for monitoring PDAM water flow rate and pressure using a YF-S201 flow sensor and a pressure sensor, and a device for monitoring water tank conditions using an SR04T ultrasonic sensor for water level measurement and a turbidity sensor for water clarity detection. Both devices are connected to ESP32/ESP8266 microcontrollers and transmit sensor data to a server every five minutes via a WiFi network. The implementation results indicate that the system is capable of performing stable sensor readings and data transmission during the household testing period, with consistent data delivery success and relatively low latency suitable for domestic monitoring purposes. Sensor evaluation was conducted using simple comparative methods, showing consistent measurement patterns after the initial calibration process. The collected data are visualized through web and mobile applications in the form of flow rate graphs, supply pressure graphs, water tank level charts, and turbidity indicators. This system has the potential to enhance the visibility of household water consumption and provides a technical foundation for early detection of water supply anomalies and the future development of data-driven water conservation systems.