HITL Smart Water leakage Wastage Detection and Control System
Our project is a Human-in-the-Loop Smart Water Leakage Detection & Control System focused on solving real-world water wastage and leakage problems through embedded systems, intelligent monitoring, and controlled automation.
The system is designed to identify abnormal water flow behavior and INTERNAL leakages in real time and assist users in taking immediate action before major water loss or structural damage occurs. Unlike traditional systems that rely either on passive monitoring or complete automation, our approach combines smart sensing, embedded intelligence, and human decision-making for more reliable and practical operation.
Iot and cloud integration
embedded C /C++
Our system uses a combination of real-time sensing, embedded processing, and wireless communication to monitor water behavior continuously.
Some advanced implementation layers and system intelligence modules are intentionally undisclosed as part of our ongoing innovation and future development roadmap.
A custom monitoring architecture analyzes flow activity and identifies irregular patterns associated with leakage or abnormal consumption. Once detected, the system enables controlled user intervention through a connected interface, allowing safe and practical decision-making instead of relying solely on hard automation.
The project architecture is being developed with focus on:
Low-cost scalability
Retrofit compatibility
Real-time responsiveness
Human-centered automation
Smart infrastructure integration
Some advanced implementation layers and system intelligence modules are intentionally undisclosed as part of our ongoing innovation and future development roadmap.
Our system uses a combination of real-time sensing, embedded processing, and wireless communication to monitor water behavior continuously.
A custom monitoring architecture analyzes flow activity and identifies irregular patterns associated with leakage or abnormal consumption. Once detected, the system enables controlled user intervention through a connected interface, allowing safe and practical decision-making instead of relying solely on hard automation.
Technical Stack
Embedded Systems & IoT Architecture
ESP32-Based Wireless Control System
Real-Time Sensor Monitoring
Intelligent Flow Analysis Mechanism
Relay-Controlled Actuation System
WiFi-Based User Interaction Interface
Embedded C / Arduino Development Environment
Smart Water Control Infrastructure