基于物联网的甘蓝气培生长监测与控制系统开发

Renny Eka Putri, Winda Fauzia, Dinah Cherie
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引用次数: 0

摘要

& # x0D;& # x0D;& # x0D;& # x0D;印尼人在城市农业中可以使用的方法之一是种植植物的气培法。气培法比水培法和普通栽培法具有更快的养分输送速度。本研究的主要目的是设计一种油菜气培监测与控制系统。L)使用blynk应用程序作为远程控制的接口。控制系统采用NodeMCU V3、DHT22传感器、HC-SR04超声波传感器和TDS传感器。该系统中的植物使用一个容器箱,尺寸为110厘米× 80厘米,箱内有10个喷嘴,连接在1 / 2英寸的管道上,盒盖上有24个种植孔,间距为20厘米。当箱内温度为25℃时,泵自动开启,当箱内温度为24℃或湿度为80%时,泵自动停止。30 d的研究结果表明,DHT22传感器的平均R2值为0.9864和0.9864,HC-SR04传感器的平均R2值为0.996,TDS传感器的平均R2值为0.9899。对白豆植株的生长观察,系统植株平均高度为13.3 cm,对照植株平均高度为13.4 cm。系统植株平均叶宽为4.3 cm,对照植株平均叶宽为3.6 cm。系统植株平均叶片数为8片,对照植株平均叶片数为9片。系统株重为5.493 g,对照株重为2.961 g。所研制的控制系统效果良好,可用于植物的气培栽培。& # x0D;& # x0D;& # x0D;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring and Control System Development on IoT-Based Aeroponic Growth of Pakcoy (Brassica rapa L.)
One of the methods that can be used by Indonesian people in urban farming is the Aeroponic method of planting plants. The aeroponic method has a faster nutrient delivery speed than hydroponics and normal plant cultivation. The main objective of this study was to design an aeroponic monitoring and control system for Pakcoy (Brassica rapa. L) using the blynk application as an interface for remote control. The control system used is NodeMCU V3, DHT22 sensor, HC-SR04 ultrasonic sensor and TDS sensor. Plants in the system use a container box measuring 110 cm x 80 cm with 10 nozzles on the inside of the box attached to a ½ inch pipe, with 24 planting holes on the lid of the box with a spacing of 20 cm. The pump will automatically turn on when the temperature in the box is >25oC and will stop when the temperature is =24oC, or when the humidity is <80%. The results obtained during the 30 days of research showed that the average R2 value of the DHT22 sensor was 0.9864 and 0.9864, the HC-SR04 sensor was 0.996 and the TDS sensor was 0.9899. Observations on the growth of pakcoy plants obtained an average height of 13.3 cm for system plants and 13.4 cm for control plants. The average leaf width in system plants was 4.3 cm and 3.6 cm in control plants. the average number of leaves on system plants is 8 leaves and 9 leaves on control plants. The system plant weight was 5.493 gr and that of the control plant was 2.961 gr. The control system that has been made can work well and can be used in aeroponic cultivation of plants.
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