Embedded & IoT Systems
Building connected devices and control loops with ESP32, STM32, sensors, and lightweight communication layers for real-time monitoring.
I am Rabah Djebbes, an Automation & Control Engineer with a backend development core, building IoT platforms, robotics tooling, computer vision projects, and industrial software systems that connect hardware decisions to usable products.
Automation, control, embedded systems, and Python platforms.
Smart environments, sensor fusion, STM32, and industrial workflows.
Open to engineering and software collaboration opportunities.
This portfolio leads with the disciplines that define my work: automation and control engineering, intelligent embedded systems, industrial software, and real-world deployment.
Building connected devices and control loops with ESP32, STM32, sensors, and lightweight communication layers for real-time monitoring.
Applying control theory, kinematics, SCADA concepts, and industrial logic to systems that need structure, precision, and repeatability.
Designing backend platforms and tooling in Python and Django to turn engineering data into dashboards, workflows, and deployable products.
Both academic tracks are tied to working engineering systems, with direct links to the thesis material and implementation repositories.
This project designed an intelligent classroom management system at Ahmed HAMMANI Campus using RFID-based attendance, ESP32 data transmission, and a web platform for session monitoring, reporting, and device orchestration.
An IoT-enabled safety helmet built for construction environments, combining sensor data, environmental monitoring, and real-time reporting around worker safety.
The strongest evidence is the code. These projects link straight to the public repositories behind my engineering and development work.
Projects grounded in industrial automation, control, and applied engineering.
Backend system for an IoT-enabled smart classroom platform built around monitoring, attendance, and academic session management.
Embedded safety system for construction settings with environmental sensing and smart monitoring capabilities.
A control-focused utility to tune PID parameters and simulate system response for engineering experimentation.
Projects focused on machine perception and robot motion logic.
Real-time eye tracking system that estimates where a user is looking on the screen using facial landmarks.
A Denavit-Hartenberg calculator for computing robotic arm forward kinematics, useful for path planning and robotics analysis.
Backend and platform work outside the industrial engineering track.
A feature-rich forum platform with threaded discussions and user moderation tools.
Automated news aggregation platform tracking Russia-Ukraine conflict news in real time.
A community platform for room-based discussion, topic sharing, and user-managed collaboration spaces.
University of Constantine 1
Focus: Advanced Control, Robotics, SCADA, Image Processing.
University of Constantine 1
Graduation Project: Project HALO, a smart hard hat for safer field operations.
Recent certifications and learning tracks that support the software and engineering stack I work in.