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Implementation of a Smart Irrigation System for Reducing Watering Waste Vegetable Crop in Ouagadougou: Case of Onion and Tomato Culture.

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dc.contributor.author Ibrahim, Savadogo
dc.date.accessioned 2026-06-05T11:46:51Z
dc.date.available 2026-06-05T11:46:51Z
dc.date.issued 2025-07-07
dc.identifier.uri http://197.159.135.214/jspui/handle/123456789/1219
dc.description A Thesis submitted to the West African Science Service Center on Climate Change and Adapted Land Use and Université Joseph KI-ZERBO, Burkina Faso in partial fulfillment of the requirements for the Master of Science Degree in Informatics for Climate Change en_US
dc.description.abstract Market gardening is the most common form of agriculture in Burkina Faso, especially in Ouagadougou, with production mainly focused on tomatoes and onions. However, farmers face difficulties in managing the optimal amount of water needed during irrigation to ensure proper crop growth and yields. In this work, the objective is to develop and implement a smart irrigation scheduling system in order to optimize water use while increasing the productivity of vegetable crops such as tomatoes and onions. Thus, after a literature review on irrigation systems, an investigation was carried out to analyze the performance of irrigation techniques. We first visited the Ministry of Agriculture of Burkina Faso, where we were given a list and had the opportunity to meet field experts with knowledge of market gardening practices. Based on these insights, proposals were made regarding the requirements an intelligent irrigation system should fulfill to achieve optimal water savings while boosting agricultural productivity. Following this analysis, we designed and implemented a smart irrigation system to optimize water use and monitor it in real time. Two ESP32 microcontrollers were used. The first integrates a soil moisture sensor and a GPS module. It measures the soil moisture of tomato or onion plants and sends commands to the second ESP32. This second controller is connected to a solenoid valve and a flow meter, and it triggers irrigation only when necessary. All collected data is then stored on Firebase and visualized in real time through a mobile application developed with Flutter. The experiment allowed for continuous monitoring of soil moisture, the amount of water used, and the status of the solenoid valve, thus confirming the system’s ability to collect and transmit useful data for irrigation management. en_US
dc.description.sponsorship The Federal Ministry of Research, Technology and Space (BMFTR) en_US
dc.language.iso en en_US
dc.publisher WASCAL en_US
dc.subject ESP32 microcontroller en_US
dc.subject Smart irrigation system en_US
dc.subject Soil moisture sensor en_US
dc.subject Water optimization en_US
dc.subject Burkina Faso en_US
dc.title Implementation of a Smart Irrigation System for Reducing Watering Waste Vegetable Crop in Ouagadougou: Case of Onion and Tomato Culture. en_US
dc.type Thesis en_US


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