Increasing Water Efficiency by Using Fuzzy Logic Control in Tomatoes Seedling Cultivation

S. Kesler, Abdil Karakan, Y. Oğuz
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引用次数: 1

Abstract

– The biggest problem in agriculture is the insufficient amount of water. Sowing cannot be done in the fields due to water scarcity. Some fields become barren land due to excessive irrigation. For these reasons, it is important to use water wisely. In the study, irrigation of tomatoes seed is controlled with fuzzy logic. The use of water is made automatically according to the humidity, temperature and soil moisture of the air. The study was carried out in two stages. First stage; The irrigation system is designed in the MATLAB program. For this, temperature, humidity and soil moisture were used as three inputs. Irrigation time was calculated as output. All inputs and outputs are set to low, medium and high. In the second stage; equal amounts of tomatoes seeds were planted in two separate containers. Normal irrigation was done in the first pot. The control of irrigation in the second bowl was made with fuzzy logic. All data are shown on the screen and recorded for 1 minute. As a result of the study, 22500 milliliters of water were used in normal irrigation, and 10410 milliliters of water were used in a fuzzy logic-controlled circuit. As a result, a water saving of 53.77% was achieved. Arduino microcontroller is used for control. The code was written for the fuzzy logic control circuit simulated in the Arduino microcontroller MATLAB program to work. At the same time, temperature and humidity sensors are connected to the Arduino microcontroller. Incoming data is remotely monitored and controlled by a modem connected to the microcontroller. When the records in the database are examined, 83% energy was saved with lighting algorithm and energy flow control algorithms.
模糊逻辑控制在番茄苗木栽培中的应用
农业最大的问题是水资源不足。由于缺水,不能在地里播种。由于过度灌溉,一些田地变成了荒地。由于这些原因,明智地用水是很重要的。在研究中,采用模糊逻辑控制番茄种子灌溉。根据空气的湿度、温度和土壤湿度自动进行用水。这项研究分两个阶段进行。第一阶段;在MATLAB程序中设计灌溉系统。为此,使用温度、湿度和土壤湿度作为三个输入。灌溉时间作为产量计算。所有输入和输出设置为低、中、高。在第二阶段;在两个不同的容器中种植等量的西红柿种子。第一碗正常灌水,第二碗灌水控制采用模糊逻辑。所有数据显示在屏幕上并记录1分钟。研究结果表明,正常灌溉用水22500毫升,模糊逻辑控制电路用水10410毫升。节水效果达到53.77%。采用Arduino微控制器进行控制。该代码是为模糊逻辑控制电路编写的仿真程序,在Arduino单片机的MATLAB中工作。同时,温度和湿度传感器连接到Arduino微控制器。输入的数据由连接到微控制器的调制解调器远程监控和控制。通过对数据库记录的分析,照明算法和能量流控制算法的节能效果达到83%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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