Design and Implementation of an IoT-Enabled Solar-Grid Hybrid Smart Irrigation System for Multi-Crop Cultivation in Semi-Arid Areas Case Study: Garoua Cameroon
Date
2025-10-25
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Department of Electrical and Electronic Engineering (EEE), Islamic University of Technology(IUT), Board Bazar, Gazipur-1704, Bangladesh
Abstract
The paper introduces a project of creating a precision irrigation system based on Internet of
Things (IoT) connectivity and a hybrid solar-grid energy system. The study will seek to
maximize the utilization of water in the multi-crop production through the use of real-time
soil moisture sensors as well as threshold-based control logic, which will run on an ESP32
microcontroller. The power module of the system focuses on the solar energy and the system
automatically switches back to the grid when there is not enough sunlight to power the
system thus maintaining a constant power supply and energy security. The Blynk platform
provides a complete IoT monitoring interface, which allows visualizing the data in real-time
and controlling irrigation processes remotely. It is experimentally proven that the suggested
system is effective in automating irrigation, water conservation, and self-sufficiency in
energy usage. The findings show that this hybrid IoT-solar design will improve the efficiency
of the resources and will be a big step towards climate-resilient and sustainable agricultural
automation.
Description
Supervised by
Dr. Khondokar Habib Kabir
Professor,
Department of Electrical and Electronic Engineering (EEE)
Islamic University of Technology (IUT)
Board Bazar, Gazipur, Bangladesh
This thesis is submitted in partial fulfillment of the requirement for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2025
