Artificial intelligence for small hydroponics farms employing fuzzy logic systems and economic analysis

Anugerah F. Amalia, H. S. Rahayu, Y. P. Rahardjo, Lintje Hutahaean, E. Rohaeni, C. Indrawanto, R. A. Saptati, V. Siagian, Abdul Waris
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Abstract

ABSTRACT The application of artificial intelligence (AI) in modern agriculture has attracted increasing attention since its automation has the potential to accelerate food production with efficiency in resource use. Fuzzy logic, as one AI method, can be applied in hydroponics as an automation function of a nutrient mixing machine. There have been some inventions of nutrient mixing machines in commercial-scale agribusiness but not yet at the level of the small and medium farms that are mostly found in developing countries. This study constructed a hydroponics nutrient mixing machine employing a fuzzy logic method, calculated the machine’s efficiency, and evaluated its economic application. The automated nutrient mixing machine using fuzzy logic was efficient, and both theoretical field capacity and actual field capacity indicators were higher with the use of the nutrient mixing machine compared to manual nutrient mixing. This machine saves 78% of the labor normally used for mixing nutrients, with a saving of up to 42.86% in the nutrients used compared with mixing manually.
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采用模糊逻辑系统和经济分析的小型水培农场人工智能
人工智能(AI)在现代农业中的应用越来越受到人们的关注,因为它的自动化具有加速粮食生产和提高资源利用效率的潜力。模糊逻辑作为一种人工智能方法,可以作为营养物混合机的自动化功能应用于水培。在商业规模的农业综合企业中已经有了一些营养混合机的发明,但还没有达到大多数在发展中国家发现的中小型农场的水平。本研究采用模糊逻辑方法构建了一种水培营养物混合机,计算了机器的效率,并对其经济应用进行了评价。采用模糊逻辑的自动化养分混合机效率高,与人工养分混合相比,使用该养分混合机的理论田间容量和实际田间容量指标均较高。本机节省了通常用于混合营养物的劳动力78%,与人工混合相比,使用的营养物可节省42.86%。
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