Effectiveness of iot based automation system for salad cucumber (Cucumis sativus) cultivation in protected house under Sri Lankan conditions

S. N. A. Jayathilaka, K. Adikaram, H. Kumarasinghe
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Abstract

Protected house cultivation is one of the best solutions to address food security and overcome the scarcity of land and other resources in the future. An automation system with the Internet of Things (IoT) will be the most effective way to maintain a protected house with minimum labours. This research was mainly focused to determine the effectiveness of IoT based automation system for protected house cultivation of salad cucumber in Sri Lanka and validation of temperature and relative humidity sensors used in this system. The study was carried out in two protected houses with the same crop management practices. An IoT-based automation system was designed to control temperature and relative humidity inside the protected house. Fertigation was done several times a day by an automation system for the automated protected house to control electrical conductivity in grow bags. Temperature, RH, EC, and light intensity were recorded by using sensors and standard methods in different periods. Temperature and RH values measured from sensors and standard methods were not significantly different during the experimental period. Therefore, used temperature and RH sensors were valid for this system. Temperature, RH, and EC values were significantly different in two protected houses and the automated protected house was maintaining those conditions near to the desired levels for salad cucumber. There was a 40% yield increment in the automated protected house than the conventional protected house. Based on the findings, IoT based automation system is effective to use with protected house cultivation of salad cucumber in the southern province of Sri Lanka.
基于物联网的自动化系统在斯里兰卡条件下沙拉黄瓜(Cucumis sativus)保护室内栽培中的有效性
保护性房屋种植是解决粮食安全和克服未来土地和其他资源短缺的最佳解决方案之一。具有物联网(IoT)的自动化系统将是用最少的劳动力维护受保护房屋的最有效方法。本研究主要集中在确定基于物联网的自动化系统在斯里兰卡沙拉黄瓜防护室内栽培的有效性,并验证该系统中使用的温度和相对湿度传感器。这项研究在两个采用相同作物管理方法的受保护房屋中进行。设计了一个基于物联网的自动化系统来控制受保护房屋内的温度和相对湿度。每天由自动化保护房的自动化系统进行几次施肥,以控制种植袋中的导电性。采用传感器和标准方法记录不同时期的温度、相对湿度、电导率和光强。在实验期间,传感器和标准方法测得的温度和RH值无显著差异。因此,使用的温度和RH传感器对该系统是有效的。两个防护房的温度、相对湿度和EC值显著不同,自动化防护房将这些条件维持在沙拉黄瓜所需的水平附近。自动化防护房的产量比传统防护房高出40%。基于研究结果,基于物联网的自动化系统在斯里兰卡南部省份的沙拉黄瓜保护室内栽培中得到了有效的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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