The Design and Performance Evaluation of a Wireless Sensor Network Based Irrigation System on Different Soil Types

Buhari U. Umar, Eustace Manayi Dogo, Bello Kontagora Nuhu, Arifa Khatoon Haq, Paul Tobi Olaleye
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Abstract

In the Nigerian economy, agriculture plays a very important role, and most of its people depend on it for their livelihood. Agricultural practices in the country are still mainly based on conventional, traditional methods of farming which usually results in wastage of water resources and low production of crops to meet the country's demand. There is a need to transform farming from the traditional way to a more efficient method with optimum water utilization. Irrigation is an assistive measure to salvage the problem of inadequate water for dry season farming. Irrigation consumes a lot of water, time and must be done on a timely basis. The automated irrigation system helps to curb the problem of overwatering and under watering of the land. This research proposed an Arduino-based smart irrigation system using a wireless sensor network to overcome the problem of overwatering, underwatering, and efficient time utilization in farming. The system is implemented using Arduino IDE, Proteus Simulation Tools, and Blynk Platform. The effect of the four-mobile network: MTN, GLO, Airtel and 9mobile on response time for Gidan- Kwano area was evaluated. Testing carried out on the system resulted in a response time of 0.75 seconds for Glo 2G network and 0.45 seconds for Glo 4G network. Less than 1sec in the worst-case scenario. This makes the system effective in terms of time response, thereby eradicate the waste of time that manual system operation poised to irrigation scheduling. Also, the appropriate soil moisture content is maintained, whether it rains or not. This reduces excesses and ensures healthy plant growth, increasing agricultural productivity, and cultivating crops are made possible throughout the year. The system also will help in driving agricultural innovation through the use of IoT.  
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基于无线传感器网络的不同土壤类型灌溉系统设计与性能评价
在尼日利亚的经济中,农业扮演着非常重要的角色,大多数人都依赖农业为生。该国的农业实践仍然主要以传统的耕作方法为基础,这通常导致水资源的浪费和满足该国需求的作物产量低。有必要将传统的耕作方式转变为一种更有效的方法,以最佳地利用水。灌溉是解决旱季农业用水不足问题的辅助措施。灌溉消耗大量的水和时间,必须及时完成。自动灌溉系统有助于控制土地浇水过多和浇水不足的问题。本研究提出了一种基于arduino的智能灌溉系统,利用无线传感器网络来克服农业中浇水过量、浇水不足和时间有效利用的问题。系统采用Arduino IDE、Proteus仿真工具和Blynk平台实现。评价了MTN、GLO、Airtel和9mobile四种移动网络对Gidan- Kwano地区响应时间的影响。在系统上进行的测试表明,Glo 2G网络的响应时间为0.75秒,Glo 4G网络的响应时间为0.45秒。最坏的情况下不到1秒。这使得系统在时间响应方面有效,从而消除了人工系统操作准备灌溉调度的时间浪费。此外,无论是否下雨,都要保持适当的土壤水分含量。这减少了过量,确保植物健康生长,提高了农业生产力,并使全年种植作物成为可能。该系统还将通过使用物联网帮助推动农业创新。
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The Awareness and Adoption of Artificial Intelligence for Effective Facilities Management in the Energy Sector The Design and Performance Evaluation of a Wireless Sensor Network Based Irrigation System on Different Soil Types Assessing Theoretical Frameworks, Human Resources Management Implications and Emerging Technologies on the Water, Energy and Food (WEF) Nexus Farmers-Herders Conflict and Nigeria’s Quest for Food Security: The Imperative Need for Information Communications Technology The Effects of Prepaid Metering Systems on Customer Satisfaction in Niger State, Nigeria
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