Design and development of smart farm automated organic irrigation system for water resource optimization

The design of an irrigation system is important in agriculture. Facing the challenges of climate change and the scarcity of freshwater, a pursuit of designing an efficient irrigation system is necessary to sustain smart farming. As such, automation is needed to address the water usage efficiency and...

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Main Author: Dela Cruz, John R.
Format: text
Language:English
Published: Animo Repository 2020
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Online Access:https://animorepository.dlsu.edu.ph/etd_masteral/6312
https://animorepository.dlsu.edu.ph/context/etd_masteral/article/13362/viewcontent/DelaCruz_John_11598549_DesignAndDevelopmentOfSmartFarmAutomatedOrganicIrrigationSystemForWaterResourceOptimization_1_Redacted.pdf
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_masteral-133622022-08-26T07:36:23Z Design and development of smart farm automated organic irrigation system for water resource optimization Dela Cruz, John R. The design of an irrigation system is important in agriculture. Facing the challenges of climate change and the scarcity of freshwater, a pursuit of designing an efficient irrigation system is necessary to sustain smart farming. As such, automation is needed to address the water usage efficiency and limited power available for a farm not connected to the electric grid. In the advent of precision agriculture and artificial intelligence, these concepts shall now be considered in making the automation possible. Numerous studies have been done on the techniques and technologies to be used, and the decision support system. These include Web-based and IoT-based technologies. This study focused on the design and development of an automated organic irrigation system for a smart farm for water resource optimization. The system was divided into two subsystems - Water Supply Monitoring Subsystem (WSMS) and the Chamber Irrigation and Control Subsystem (CICS). These subsystems were connected to a centralized controller employing Fuzzy Inference System (FIS). Environmental parameters such as soil moisture, temperature, and humidity have been considered in the design of the irrigation system. The sensors and actuators used in the system were connected to the Wireless Sensor Network (WSN). The irrigation system was deployed in a closed chamber with two plant beds, where each plant bed employs both ordinary drip and micro-drip surface irrigation. Tomato plant was used in this experiment. Environmental parameters were measured and analyzed, and were inputted on the FIS to control the flow of water through the solenoid valve. The results of the experiment shows that the designed and developed irrigation system has measured the environmental parameters, and controlled the flow of the water by controlling the opening time of the actuator. The FIS was helpful in order to decide the opening time of the actuator. This controlled the amount of water needed to water the plants and prevented overwatering and flooding on the plant box. Further studies on precision agriculture, particularly the application of deep learning and other artificial intelligence techniques was recommended. 2020-09-01T07:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/etd_masteral/6312 https://animorepository.dlsu.edu.ph/context/etd_masteral/article/13362/viewcontent/DelaCruz_John_11598549_DesignAndDevelopmentOfSmartFarmAutomatedOrganicIrrigationSystemForWaterResourceOptimization_1_Redacted.pdf Master's Theses English Animo Repository Irrigation farming—Automation Irrigation efficiency Wireless sensor networks Electrical and Computer Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Irrigation farming—Automation
Irrigation efficiency
Wireless sensor networks
Electrical and Computer Engineering
spellingShingle Irrigation farming—Automation
Irrigation efficiency
Wireless sensor networks
Electrical and Computer Engineering
Dela Cruz, John R.
Design and development of smart farm automated organic irrigation system for water resource optimization
description The design of an irrigation system is important in agriculture. Facing the challenges of climate change and the scarcity of freshwater, a pursuit of designing an efficient irrigation system is necessary to sustain smart farming. As such, automation is needed to address the water usage efficiency and limited power available for a farm not connected to the electric grid. In the advent of precision agriculture and artificial intelligence, these concepts shall now be considered in making the automation possible. Numerous studies have been done on the techniques and technologies to be used, and the decision support system. These include Web-based and IoT-based technologies. This study focused on the design and development of an automated organic irrigation system for a smart farm for water resource optimization. The system was divided into two subsystems - Water Supply Monitoring Subsystem (WSMS) and the Chamber Irrigation and Control Subsystem (CICS). These subsystems were connected to a centralized controller employing Fuzzy Inference System (FIS). Environmental parameters such as soil moisture, temperature, and humidity have been considered in the design of the irrigation system. The sensors and actuators used in the system were connected to the Wireless Sensor Network (WSN). The irrigation system was deployed in a closed chamber with two plant beds, where each plant bed employs both ordinary drip and micro-drip surface irrigation. Tomato plant was used in this experiment. Environmental parameters were measured and analyzed, and were inputted on the FIS to control the flow of water through the solenoid valve. The results of the experiment shows that the designed and developed irrigation system has measured the environmental parameters, and controlled the flow of the water by controlling the opening time of the actuator. The FIS was helpful in order to decide the opening time of the actuator. This controlled the amount of water needed to water the plants and prevented overwatering and flooding on the plant box. Further studies on precision agriculture, particularly the application of deep learning and other artificial intelligence techniques was recommended.
format text
author Dela Cruz, John R.
author_facet Dela Cruz, John R.
author_sort Dela Cruz, John R.
title Design and development of smart farm automated organic irrigation system for water resource optimization
title_short Design and development of smart farm automated organic irrigation system for water resource optimization
title_full Design and development of smart farm automated organic irrigation system for water resource optimization
title_fullStr Design and development of smart farm automated organic irrigation system for water resource optimization
title_full_unstemmed Design and development of smart farm automated organic irrigation system for water resource optimization
title_sort design and development of smart farm automated organic irrigation system for water resource optimization
publisher Animo Repository
publishDate 2020
url https://animorepository.dlsu.edu.ph/etd_masteral/6312
https://animorepository.dlsu.edu.ph/context/etd_masteral/article/13362/viewcontent/DelaCruz_John_11598549_DesignAndDevelopmentOfSmartFarmAutomatedOrganicIrrigationSystemForWaterResourceOptimization_1_Redacted.pdf
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