|
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
|
| Volume 187 - Issue 141 |
| Published: September 2026 |
| Authors: Otuekong Essiet Ekong, Anietie Peter Ekong |
10.5120/ijcaca02da1c63de
|
Otuekong Essiet Ekong, Anietie Peter Ekong . Design and Development of Automated Smart Waste Bin for Smart City Development in Nigeria. International Journal of Computer Applications. 187, 141 (September 2026), 59-66. DOI=10.5120/ijcaca02da1c63de
@article{ 10.5120/ijcaca02da1c63de,
author = { Otuekong Essiet Ekong,Anietie Peter Ekong },
title = { Design and Development of Automated Smart Waste Bin for Smart City Development in Nigeria },
journal = { International Journal of Computer Applications },
year = { 2026 },
volume = { 187 },
number = { 141 },
pages = { 59-66 },
doi = { 10.5120/ijcaca02da1c63de },
publisher = { Foundation of Computer Science (FCS), NY, USA }
}
%0 Journal Article
%D 2026
%A Otuekong Essiet Ekong
%A Anietie Peter Ekong
%T Design and Development of Automated Smart Waste Bin for Smart City Development in Nigeria%T
%J International Journal of Computer Applications
%V 187
%N 141
%P 59-66
%R 10.5120/ijcaca02da1c63de
%I Foundation of Computer Science (FCS), NY, USA
Improper solid waste management is a growing concern in many urban areas, leading to environmental pollution, health hazards, and unsightly living conditions. Manual solid waste collection methods have proven to be inefficient and require a significant amount of human labour. In addition, traditional refuse bins are often overloaded, causing litter to spill onto streets, sidewalks, and other public areas. Thus, there is a need for an efficient and automated waste management system that can reduce the labour and time required for waste collection, improve public health and hygiene, and minimize environmental pollution. Guided by the Design Science Research Methodology, this study explores the design and development of a prototype automated smart refuse bin that utilises a microcontroller equipped with multi-directional proximity detection, bin level detection, temperature and humidity detection, fire detection, automatic lid open/close, bin status display screen, buzzer for alerting disposers, GPS location detection, and SMS notification module for sending alerts to the relevant waste collection agents. Experimental findings highlight the robustness and feasibility of the proposed method, demonstrating its potential as a practical solution for efficient automated waste management and, more importantly, fostering smart city development.