Decision Support System and Fuzzy Logic Controller for Capillary Irrigation System

Mohammed Adamu , Abioye Mayowa , Isaac Jonah
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Abstract

Purpose: Different irrigation systems exist and they all possess various degrees of benefits in enhancing food sufficiency. In this study however, the enhancement of capillary irrigation system through an integrated fuzzy logic controller with Decision Support System (DSS) to ensure improvement in water saving for irrigation thereby improving crop yield towards food security was examined and achieved. Methodology: An integrated fuzzy logic controller with Decision Support System (DSS) for capillary irrigation system was adopted for the enhancement of water saving for irrigation. By using this method, the challenges of irrigation management which is prevalent with capillary irrigation system is minimised using the fuzzy logic controller. An Internet of things (IoT) based weather station for computation of potential evapotranspiration (PET), for measuring rainfall and a VH400 moisture content sensor for monitoring the volumetric water content of soil, were some facilities used to control the water level depth (WLD) autonomously through a fuzzy controller simulated in MATLAB and implemented on Arduino Mega. Findings: The soil moisture content (SMC) depicts that fuzzy controlled water level depth (WLD) is able to compensate reduction of water in crop medium that took place due to plant water uptake which changes daily. The result proves that dynamics of water supply depth has substantial effects on the water absorption flow rate, wetting pattern, soil water content and cumulative infiltration which are proportional to the water supply depth decrement.      Unique Contribution to Practice: An integrated fuzzy logic controller with Decision Support System (DSS) is a new technique proposed for managing capillary irrigation system as it offers enhanced water saving capacity (irrigation volume) based on crop demand.
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毛细管灌溉系统决策支持系统与模糊控制器
目的:存在不同的灌溉系统,它们在提高粮食充足性方面都具有不同程度的效益。然而,在本研究中,研究并实现了通过模糊逻辑控制器与决策支持系统(DSS)的集成来增强毛细管灌溉系统,以确保改善灌溉节水,从而提高作物产量,实现粮食安全。方法:采用模糊控制器与决策支持系统(DSS)集成的毛细管灌溉系统,提高灌溉节水效果。采用该方法,利用模糊逻辑控制器将毛细管灌溉系统普遍存在的灌溉管理挑战最小化。基于物联网(IoT)的潜在蒸散发(PET)计算气象站、用于测量降雨量的气象站和用于监测土壤体积含水量的VH400含水率传感器,是通过MATLAB仿真的模糊控制器自主控制水位深度(WLD)的一些设施,并在Arduino Mega上实现。结果:土壤含水量(SMC)反映了模糊控制水位深度(WLD)能够补偿作物介质中由于植物对水分的每日变化而产生的水分减少。结果表明,供水深度的动态变化对土壤吸水流量、湿润形态、土壤含水量和累积入渗均有显著影响,且与供水深度递减成正比。对实践的独特贡献:基于决策支持系统(DSS)的集成模糊逻辑控制器是一种管理毛细管灌溉系统的新技术,因为它提供了基于作物需求的增强节水能力(灌水量)。
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