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KNOWLEDGE-BASED CONTROL SYSTEMS FOR SINGLE STEM ROSE PRODUCTION — PART II: IMPLEMENTATION AND FIELD EVALUATION

机译:单干生产的基于知识的控制系统—第二部分:实施和现场评估

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摘要

Field evaluations of knowledge-based control systems (KBS) for single stem rose production were performed. Two fuzzy inference systems (FIS) for automated selection of daytime and nighttime temperature were incorporated into the design of the integrated environmental control systems. Assessments of systems’ operational characteristics for daytime and nighttime temperature settings, single stem rose performance, and potential supplemental heating energy savings were performed over three consecutive crops. It was found that the KBS is capable of making a critical decision for daytime temperature settings based on the principle of economic optimization. Single stem roses produced by the KBS were graded by stem length. Overall crop quality was in the medium to high grades for the first two tests and poor for the last test. From the investigations, it was learned that undesirable low daytime temperature and light level during plant establishment promotes flower bud abortion. Potential benefits of heating energy savings using the KBS were estimated compared to a blueprint set point schedule (21°C). A moderate reduction in heating energy costs could be realized by using the KBS. The new method demonstrated the success of incorporating a FIS into decision support for daily environment control decisions, where conflicting economic goals must be dynamically re-evaluated as crop conditions and weather vary.
机译:对单茎玫瑰生产进行了基于知识的控制系统(KBS)的现场评估。集成环境控制系统的设计中包含了两个用于自动选择日间和夜间温度的模糊推理系统(FIS)。在连续三季作物中,评估了系统在白天和晚上的温度设置,玫瑰单茎生长性能以及潜在的补充供热节能方面的运行特性。已经发现,KBS能够根据经济优化原则对白天的温度设置做出关键决策。 KBS生产的单茎玫瑰按茎长分级。前两个测试的总体农作物质量处于中等至高等级,而最后一个测试的总体作物质量较差。从调查中得知,植物建立过程中不良的低白天温度和光照水平促进了花蕾的流产。与蓝图设定点计划(21°C)相比,估计了使用KBS节省供暖能源的潜在好处。使用KBS可以适度降低供暖能源成本。新方法证明了将FIS纳入日常环境控制决策的决策支持的成功,在该决策中,必须根据作物条件和天气变化动态地重新评估冲突的经济目标。

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