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Decision support system for nitrogen fertilization using fuzzy theory.

机译:基于模糊理论的氮肥决策支持系统。

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During the last three decades there has been great concern about the impact of agriculture on the environment and its resources. Conventional agriculture is based on whole field and mostly empirical approaches to defining and applying agrochemical inputs, which poses certain limitations regarding the management of existing variability in agricultural land. In this paper, the design and application of a fuzzy decision support system, concerning site specific nitrogen fertilization, is described. The system uses an easy but efficient way of solving the nitrogen equation under agricultural conditions and is based on knowledge elicitation and fuzzy logic methodologies. More specifically, the system is composed of two parts; a knowledge base and an analytical modular part which simulates nitrogen balance. The analytical part is built in a four level structure which consists of eleven fuzzy systems. The evaluation of the system presupposes the availability of 14 state variables that can be easily collected and refer to characteristics of the soil, weather and farming practices. The incorporated knowledge and the formulation of fuzzy rules were based on interviews with experts and on annotating scientific and technical bibliographic resources. A sensitivity analysis of the developed system was carried out in order to evaluate its robustness against errors or uncertainty in the state variables and further to assess and highlight the important variables. The application of the system using a set of point data, drawn from cotton fields in central Greece and stored in a Geographical Information System, is described in brief and the results show considerable variability in the recommended amount of nitrogen fertilizer among the reference sites.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2011.06.007
机译:在过去的三十年中,人们非常关注农业对环境及其资源的影响。常规农业基于整个领域,并且主要是经验方法来定义和应用农用化学品投入,这在管理农业用地现有变异性方面存在一定的局限性。本文介绍了针对特定地点施氮的模糊决策支持系统的设计和应用。该系统使用一种简单而有效的方法在农业条件下求解氮方程,并基于知识启发和模糊逻辑方法。更具体地说,该系统由两部分组成:一个知识库和一个模拟模块,用于模拟氮平衡。分析部分以四级结构构建,该结构由十一个模糊系统组成。该系统的评估以14个状态变量的可用性为前提,这些状态变量可以轻松收集并参考土壤,天气和耕作方式的特征。纳入的知识和模糊规则的制定是基于对专家的采访以及对科学和技术书目资源的注释。为了对状态变量的误差或不确定性评估其鲁棒性,并进一步评估和突出显示重要变量,对所开发系统进行了敏感性分析。简要描述了该系统的应用,该系统使用了一组点数据,这些点数据取自希腊中部的棉田,并存储在地理信息系统中,结果显示参考点之间推荐的氮肥用量存在很大差异。对象标识符http://dx.doi.org/10.1016/j.compag.2011.06.007

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