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Development of Artificial Intelligence for Variable Rate Application Based Oil Palm Fertilization Recommendation System

机译:基于人工智能的变量施肥推荐系统的开发

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The need for fertilization knowledge that meets good cultivation principles is the background for the need for a platform that can help provide advice on fertilization implementation. The conventional method through leaf and soil analysis to determine the dose of fertilization has many obstacles in its implementation. The availability of experts to provide advice is also not available at all times. One way to transfer knowledge to non-experts is to use Artificial Intelligence (AI) in the form of a dynamic expert system. The purpose of this research is to create a dynamic expert system that can provide advice and apply fertilization quickly, cheaply, accurately, and available at all times. In building this AI system, a knowledge base, working memory, inference engine, and interface are needed. The implementation of dynamic expert system development consists of four stages, namely (1) literature study, (2) laboratory analysis, (3) construction of an inference engine, and (4) interface creation. Based on the literature study that has been carried out, it is known that there are three domains of knowledge of oil palm fertilization, namely the domain of soil, plants and climate. Each of these knowledge domains consists of attributes, sub-attributes, and facts of knowledge which are then arranged in the form of mathematical rules. The relationship between the three knowledge domains is used as the basis for making fertilization rules. The result of this research is an application with Artificial Intelligence to provide information on nutritional needs according to plant age, population, production, land area and location. The application provides recommendations for the type, frequency, amount of fertilizer, and time of application.
机译:需要符合良好栽培原则的施肥知识是需要一个平台来帮助提供施肥实施建议的背景。传统的通过叶片和土壤分析来确定施肥剂量的方法在实施中存在许多障碍。也并非所有时候都有专家提供建议。向非专家传授知识的一种方法是以动态专家系统的形式使用人工智能(AI)。本研究的目的是创建一个动态专家系统,该系统可以快速、廉价、准确且随时可用地提供建议和施肥。在构建这个人工智能系统时,需要知识库、工作记忆、推理机和接口。动态专家系统开发的实现包括四个阶段,即(1)文献研究,(2)实验室分析,(3)推理机的构建,以及(4)界面创建。根据已开展的文献研究,已知油棕施肥有三个知识领域,即土壤、植物和气候领域。每个知识域都由属性、子属性和知识事实组成,然后以数学规则的形式进行排列。这三个知识域之间的关系被用作制定施肥规则的基础。这项研究的结果是应用人工智能,根据植物年龄、人口、产量、土地面积和位置提供营养需求信息。该应用程序提供了类型、频率、施肥量和施用时间的建议。

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