Please use this identifier to cite or link to this item: https://repository.sustech.edu/handle/123456789/28507
Title: Waste Control and Monitoring Using Long-Range Wide Area Network
Authors: Sirelkhatim, Rafaa Adil Hassan
Ramdan, Ahmed Ayman Fouad
Ahmed, Remaz Ahmed Ali
Mohammed, Mazza Hassan Babiker
Alkhalifa, Muzan Ismail Alwali
Supervisor, Rashid A. Saeed
Keywords: Electronics Engineering
Waste Control
Long-Range Wide Area Network
Issue Date: 1-Sep-2026
Publisher: Sudan University of Science and Technology
Citation: Sirelkhatim, Rafaa Adil Hassan. Waste Control and Monitoring Using Long-Range Wide Area Network/ Rafaa Adil Hassan Sirelkhatim, 2. Ahmed Ayman Fouad Ramdan,Remaz Ahmed Ali Ahmed, Mazza Hassan Babiker Mohammed,Muzan Ismail Alwali Alkhalifa;Rashid A. SAEED.- Khartoum : Sudan University Of Science and Technology ,College Of Engineering, 2026.- 92p:ill ;28cm.- B.Sc.
Abstract: Traditional waste collection methods often result in inefficient collection schedules, increased operational costs, and environmental pollution. To address these challenges and enhance waste management, this project proposes the use of a Long-Range Wide Area Network (LoRaWAN)-based system for the monitoring, sorting, sterilizing, and compressing of waste. All bins (nodes) collect real-time environmental data with the help of sensors and send it using LoRa to the Cluster Head, which serves as a local gateway. The Cluster Head gathers and sends the information to a cloud-based Network Server (Node-RED) via the Internet. The information is then communicated and sent through the MQTT protocol to a Dashboard to monitor and make decisions in real-time. The system also incorporates GPS-based location tracking and notification services to optimize waste collection operations. The proposed system contributes to reducing unnecessary collection trips, improving operational efficiency, and supporting sustainable environmental management. Simulation results confirmed that the system is efficient in all tasks, sending an alert when the container is full, when harmful gases are detected, and/or when the bin is rotated or moved. It also represents the position of the bin perfectly and offers live information. The proposed system contributes to reducing unnecessary collection trips, improving operational efficiency, and supporting sustainable environmental management.
URI: https://repository.sustech.edu/handle/123456789/28507
Appears in Collections:Bachelor of Engineering

Files in This Item:
File Description SizeFormat 
B-tech-G3.pdfResearch2.47 MBAdobe PDFView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.