用模糊逻辑方法开发番茄冷却系统

Jo-Ann V. Magsumbol, G. Cagatan, L. G. Lim, E. Dadios
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引用次数: 4

摘要

气候变化对全球农作物生产有很大影响。随着科技的发展,人们开发了几种方法来适应不断变化的世界气候。其中之一是提供一种小气候技术,可以提供适合植物生长和发育的环境。在受气候变化影响的生长因子中,温度对番茄植株的生长起着至关重要的作用,可以通过不同的降温方法进行控制。温度高于或低于番茄生长所需的温度范围,要么导致果实不成熟,要么导致开花。本研究的重点是监测和控制番茄生长室内环境的温度。将用于监测和控制小气候条件的输入参数包括番茄植株的作物年龄、一天中的时间和气温。将生长室内的温度与生长室外的温度进行比较,并与番茄植株生长阶段的最佳温度进行比较。根据这些参数,使用模糊逻辑系统进行决策,控制室内空调机组的温度设定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a cooling system for Tomato using fuzzy logic approach
Climate change has great impact in the production of crops worldwide. With the advent of technology, several methods have been developed to adapt to an ever changing world climate. One of these is to provide a microclimate technology that can provide an environment suitable for the growth and development of a plant. Among the growth factors affected by the climate change, temperature plays a very vital role in growing tomato plant and can be controlled through different cooling methods. A temperature which is greater or less than the necessary range for the tomato plant will either lead to immature fruit or loss of flowers. The focus of this research is to monitor and control the temperature inside a growth chamber environment for growing a tomato plant. The input parameters that will be used to monitor and control microclimatic conditions include crop age of the tomato plant, time of the day, and air temperature. Temperature inside the growth chamber will be compared to the temperature outside the growth chamber, as well as to the optimum temperature for the growth stage of the tomato plant. Based on these parameters, fuzzy logic system will be used to make decisions to control the temperature setting of the air-condition unit inside the chamber.
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