PearlNathalieRazado
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14 slides
Aug 27, 2024
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About This Presentation
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Size: 1.36 MB
Language: en
Added: Aug 27, 2024
Slides: 14 pages
Slide Content
Smart Irrigation Solar Machine Watering System Prototype
Background of the Study Traditional irrigation systems are a problem for farmers because they can actually harm the environment by causing soil erosion and water contamination. Many fields are harmed by the conventional irrigation system because plants receive more water than they require.
Objective Improve the irrigation systems. Check how this smart system performs in actual fields, looking at how it saves water and uses solar energy efficiently.
Statement of the Problem Can the smart solar irrigation system effectively function using solar power? 2. Does the plants can get the right amount of water needed using the device? 3. Is the device effective in watering the plants?
Hypothesis Null Hypothesis (Ho): There is no significant difference in water use efficiency and environmental impact between traditional irrigation systems and the proposed smart solar irrigation system. Alternative Hypothesis (Ha): The smart solar irrigation system significantly improves water use efficiency and reduces environmental impact compared to traditional irrigation systems.
Significance of the study Cost-Effective and Environmentally-Friendly Solution Eco-Friendly Design Contribution to Sustainable Agriculture Help Farmers, making farming more easy
Review of Related Literature Previous studies introduced an innovative solar-powered automatic irrigation system, EEWMP, as an enhanced version of SWAMP (Rafi Ullah et al., Scientific Programming 2021). This system utilizes water pumps to extract water from bore wells into tanks, integrating an automated controller and moisture sensor to optimize water flow from tanks to fields, effectively maximizing water usage in irrigation.
Review of Related Literature (S. Harishankar et al. Research India publication, January 2014) . A smart irrigation system by the advent of wireless communication technologies, monitoring systems, and advance control strategies for optimal irrigation scheduling to improve water use efficiency.
Review of Related Literature (“Examining the Impact of Solar-Powered Drip Irrigation in Faisalabad Division” Muhammad Tamoor et. Al. 2018) This study investigates the socio-economic and environmental effects of solar-powered automated drip irrigation on farmers. Findings reveal significant improvements in resource savings, crop yields, and farmer profits, contributing to enhanced rural livelihoods.
Review of Related Literature A smart irrigation system by the advent of wireless communication technologies, monitoring systems, and advance control strategies for optimal irrigation scheduling to improve water use efficiency. ( Bwambale , et al. Agricultural water management 2022)
Methodology COLLECTING MATERIALS
Methodology Building the Function of the Machine The smart irrigation system's core functions will be refined in the testing phase, with a focus on autonomously managing water flow based on insights gained. The system will be fine-tuned to consider soil conditions and solar energy availability, while optimizing the integration of the rainwater tank as a reliable water source for consistent irrigation.
ILLUSTRATION
Methodology Functionality/Effectiveness of Smart Irrigation Solar Machine Watering System Prototype OUTCOME AND DATA GATHERING