Problem stater:- 2 In traditional agriculture, farmers rely heavily on manual methods to irrigate crops, often without considering the real-time moisture needs of the soil. This leads to over-irrigation or under-irrigation , causing : Wastage of water Poor crop yield Higher electricity consumption Loss of time and effort , especially in large farms With increasing water scarcity and the need for sustainable farming practices, there is a strong need for an intelligent, automated irrigation system . COMPONENTS USED :-
Architecture 3
Key features :- 4 Soil Moisture Monitoring:- Measures the soil moisture level in real-time using a soil moisture sensor . Wireless Connectivity:- Uses Wifi-enabled microcontrollers (like ESP32) to send and receive data . Mobile App Control (Blink or similar):- You can monitor moisture level and control the water pump through a smartphone app . Automated Watering System :- Automatically turns the water pump ON when soil is dry and Turns the PUMP of when soil moisture is sufficient