Project Description: Our project, Hydrobot, is an innovative AI- and IoT-integrated hydroponic system designed to address environmental and agricultural challenges sustainably. The system leverages renewable energy from piezoelectric discs to power its components and offers real-time monitoring and control via an IoT app, ensuring efficient and sustainable plant growth.
Key features include:
Hydroponic Tower: A food-grade structure that supports plant growth without soil, conserving water and reducing land usage.
Energy Source: Renewable energy generated from piezoelectric discs, demonstrating sustainable power solutions.
LED Grow Lights: Adjustable in intensity and color (red, blue, and purple), controlled via PWM to optimize plant growth based on user inputs through the Blynk app.
Diaphragm Pump for Nutrient Misting: Ensures plants receive the right amount of nutrients in a mist form, improving absorption and efficiency.
ESP32-CAM with Pan-Tilt Mechanism: Captures images of plants for disease detection using machine learning. It identifies diseases like yellow mosaic, powdery mildew, and deficiencies (nitrogen, phosphorus, potassium) and notifies users via the IoT app.
TDS Sensor: Monitors nutrient solution concentration to ensure proper plant health and growth.
IoT Integration : Enables users to control LED lights, receive disease alerts, and manage the hydroponic system remotely.
Pan-Tilt Servo Control for ESP32-CAM: Ensures complete plant surveillance for disease detection and better growth analysis.
The system provides a holistic approach to sustainable farming, ensuring optimal plant health, promoting renewable energy use, and raising awareness about environmental factors. Hydrobot is designed to tackle food security, reduce carbon footprints, and educate users about sustainable practices for a greener future
Project Theme: Clean Energy and Sustainable Cities
Project Category: AI and ML Projects, Hardware Projects