scholarly journals RANCANG BANGUN SISTEM PENYIRAMAN TANAMAN SAYUR BERBASIS ARDUINO DENGAN SENSOR KELEMBABAN TANAH

2020 ◽  
Vol 1 (1) ◽  
pp. 23-32
Author(s):  
Sampurna Dadi Riskiono ◽  
Roy Harry Syidiq Pamungkas ◽  
Yudha Arya

Development at this time is increasing, people expect a tool or technology that can help human work, so technology becomes a necessity for humans. This final task is made a device that can do the job of watering tomato plants automatically. This tool aims to replace the manual work becomes automatic. The benefit of this tool is that it can facilitate the work of humans in watering chili plants. This tool uses a soil moisture sensor which acts as a soil moisture detector and sends an order to Arduino Uno to turn on the relay driver so that the wiper motor can splash water according to the needs of the soil automatically. The making of this final project is done by designing, making and implementing system components which include Arduino uno as a controller, driver relay to blow on and off the wiper motor, LCD (Linquit Cristal Display) to display the percentage value of water content

Author(s):  
Akbar Sujiwa ◽  
Oktavianus Hadiwikarta

The development in this era is increasing, humans expect a tool or technology that can help human work, because now technology has become a human need. Therefore, a device that can do watering the wine is made automatically. This tool aims to replace manual work to be automatic. The benefits that can be obtained from this tool is that it can facilitate human work in watering grapes. This tool uses a soil moisture sensor which functions as a soil moisture detector and sends commands to Arduino uno to turn on the relay driver so that the pump can flush water according to soil needs automatically. The making of this final project is done by designing, creating and implementing system components including Arduino uno as a controller, relay drivers for turning on and off the water pump, LCD (Liquid Cristal Display) to display soil moisture values. The results of the research prove that the tool made can function properly and can be developed as expected. The tool can water the vine when the soil humidity is below 50%, and turn off the pump when the soil moisture is above 50%.


Author(s):  
Kenny Philander YR ◽  
Rinto Suppa ◽  
Muhlis Muhallim

This study aims to create an Arduino-based automatic plant watering system, in which the water pump can pump water automatically based on the reading from the soil moisture sensor, which aims to make it easier for people to water plants. This research was conducted at the Palopo City Agriculture Office. The results of this study indicate that users no longer need to water plants manually. In designing an Arduino-based Automatic Plant Watering System, a microcontroller and several components are used, including: Arduino UNO, FC-28 moisture sensor, water pump, relay, 16x2 LCD and breadboard. This tool works by reading data from the soil moisture sensor, if The sensor detects dry soil levels, then the data from the sensor will be read by Arduino. The data that has been read by Arduino will be forwarded to the relay, then the relay will forward the data that will be used to turn on or turn off the water pump


Author(s):  
K. Akanksha

Nowadays gardening has become a hobby for everyone. Everyone is showing interest in growing their own plants in their houses like terrace farming. So we have decided to do a project which can be useful for everyone even the farmers can be benefitted by our project. In our project we are preparing a greenhouse for cultivating different kinds of crops. Our greenhouse consists of arduino UNO, sensors like (temperature sensor, soil moisture sensor, colour sensor and light sensor), actuators. All these are used in sensing the outside environment and giving signals to arduino so that it sends the signal through GSM module and this GSM module will give us a message alert through our mobile phones like for example if the moisture is less in soil then we will get alert “your moisture has decreased water the plants” so that we can turn on our motor pumps to water. Here we are using thingspeak cloud for coding the arduino through IOT. Our project will also do its watering by itself when the moisture level decreases, this is done by soil moisture sensor. It is very reasonable and complete greenhouse can be constructed under Rs.10,000 which can save lots of money for the farmers. The crop yield will also be very good and this will be useful in increasing the economy of farming.


2018 ◽  
Vol 10 (1) ◽  
pp. 7
Author(s):  
Ridarmin Ridarmin ◽  
Zulizha Pandu Pertiwi

<p>naman merupakan tumbuhan yang dibudidayakan agar dapat diambil manfaatnya. Budidaya tanaman sendiri pada dasarnya dapat menjadi peluang usaha yang menjanjikan. Mulai dari budidaya tanaman hias, sayur mayur dan lain sebagainya. Tetapi saat ini produksi tanaman hias masih banyak yang belum menghasilkan hasil yang maksimal, dikarenakan masyarakat masih menggunakan teknologi manual dalam sistem pertanian yang digunakan. Tujuan dilakukan penelitian ini adalah merancang sebuah alat penyiraman tanaman hias otomatis untuk mengatasi masalah dalam penyiraman tanaman hias yang masin dilakukan secara manual dan sebagai bahan pembelajaran. Prototype ini menggunakan Arduino Uno sebagai pengontrol utama, sensor kelembaban tanah<br />digunakan untuk membaca kadar kelembaban tanah dan digunakan sebagai saklar untuk menghidupkan pompa penyiram. Dengan adanya alat penyiram otomatis ini, sensor kelembaban tanah akan membaca kelembaban tanah apakah tanah dalam keadaan kering apa sudah dalam keadaan basah. Ketika tanah dalam keadaan kering alat penyiram akan menyiram sampai tanah menjadi basah dan ketika sudah basah mesin akan mati secara otomatis.</p><p><br /><strong>Kata kunci</strong> : prototype, penyiram tanaman Arduino UNO, Sensor kelembaban tanah, Tanaman Hias.</p>


IoT plays a vital role in modern technologies by connecting objects to internet through which real time values can be . The system is developed using one such technology in greenhouse. The system developed for the purpose of crop prediction in greenhouse. Soil parameters such as pH and moisture, the environment parameters like temperature and humidity is acquired from the implemented system. The required nutrients such as N, P, K is fed to the crops manually is also considered as input for crop prediction. The system is developed with Arduino Uno, NodeMCU ESP8266(WIFI Module), Sensor like DHT Humidity and Temperature DHT11, pH Analogy, Soil Moisture sensor, 12V DC motor for triggering, 12V Relay and a few other components to complete the circuit. Web hosting is done using PHP. The sensors values get stored in data base using MYSQL for further analytics.


2019 ◽  
Vol 18 (1) ◽  
pp. 1-10
Author(s):  
Rianto Setiobudio ◽  
Cosmas Eko Suharyanto

Not all regions of Indonesia can feel rice harvest up to 3 times in 1 year. This is because for the last few years rainfall is uncertain. This causes a lack of water for rice irrigation. Arranging water irrigation based on soil moisture and arduino then the water that existed during the dry season is expected to meet the need for irrigation or rice. Water dispersion using soil moisture sensor applied on rice with compost planting medium in bucket container with diameter 42 cm and compost depth 18 cm then got 18.6 liter water usage in 3,8 mounth or 115 days, in the same time while waterlogging on rice uses 20,3 liters of water. the soil moisture sensor will read the lower bound of the soil moisture that is 80% of the saturation of the soil at a value of 626. If the value is read below from that value then the arduino will turn on the relay and the pump will drain the water to the rice plant, as well as vice versa.


2020 ◽  
Vol 12 (1) ◽  
pp. 13
Author(s):  
Achmad Aminul Muklis ◽  
Ulul Ilmi

The development of today’s technology is increasing, people expect a tool that can help human work, for that technology becomes a necessity for humans. This undergraduate thesis makes a tool that can do the work of watering chili plants automatically. This tool aims to replace manual work to become automatic. The benefit obtained from this tool is to facilitate human work in watering chili plants. This tool uses soil sensors soil moisture that serves as a detector and sends commands to the ATmega328 microcontroller to turn on the driver relay so that the pump can flush the water as needed automatically. The making of this undergraduate thesis is done by designing, creating and implementing system components which include the ATmega328 Microcontroller as the controller, driver relay to turn on and turn off the water pump, the LCD (Cristal Display liquid) to display the score of soil moisture. The results of the research prove the tool made can work well and can be developed as expected. The tool can function when the soil moisture is above 1003 PH, however, it does not work if the soil moisture is less than 345PH.


2017 ◽  
Vol 4 (2) ◽  
pp. 223
Author(s):  
Andi Farmadi ◽  
Dodon T Nugrahadi ◽  
Fatma Indriani ◽  
Oni Soesanto

<p><em>Greenhouse use is often used as a crop development site for cultivation or research, by controlling temperature, soil moisture and irrigation, and continuously being developed in automated control systems. Greenhouse control developed in this research is by using fuzzy system algorithm. The fuzzy system is embedded in arduino uno wifi microcontroller for the control of crop irrigation in greenhouses with C programming language on arduino IDE. The system input consists of two variables that are inputted through the temperature sensor input and the soil moisture sensor. The sensor input variable is then made fuzzy set for mapping the temperature condition in the cold, or hot, for soil moisture variable made with three sets that is dry, moist and wet, from the two variables of the input with each of the three sets made rule in this case made in nine decision rule for plant watering status. fuzzy method used is to use sugeno method because it is simpler in decision making which allows more efficient in writing source code on arduino microcontroller which has small memory limitations. The result of the decision or output of the fuzzy system is comprised of a watering system of plants with non-flush status, medium flush, and flush</em></p><p><em><strong>Keywords</strong>: Fuzzy system, microcontol, greenhouse.</em></p><p><em>Pemanfaatan Rumah Kaca sering digunakan sebagai tempat pengembangan tanaman untuk budidaya ataupun penelitian, dengan mengontrol suhu, kelembaban tanah dan pengairan, yang terus mengalami perkembangan dalam sistem kontrol otomatis. Pengontrolan pada rumah kaca yang dikembangkan pada penelitian ini yaitu dengan menggunakan algoritma sistem fuzzy. Sistem Fuzzy yang ditanamkan pada mikrokontroller arduino uno wifi untuk mengontol otomatis penyiraman tanaman pada rumah kaca dengan bahasa pemrograman C pada IDE arduino. Input sistem terdiri dari dua variabel yang dimasukkan melalui input sensor suhu dan sensor kelembaban tanah. Variabel inputan sensor kemudian dibuat himpunan fuzzy untuk memetakan keadaan suhu pada kondisi dingin sedang, atau panas, untuk variabel kelembaban tanah dibuat dengan tiga himpunan yaitu kering, lembab dan basah, dari kedua varibel inputan tersebut dengan masing masing tiga himpunan dibuatkan rule dalam kasus ini dibuat dalam sembilan buah rule keputusan untuk status penyiraman tanaman.metode fuzzy yang digunakan adalah menggunakan metode sugeno karena lebih simpel dalam pengambilan keputusan yang memungkinkan lebih efisien dalam penulisan source code pada mikrokontroller arduino yang memiliki keterbatasan memori yang kecil. Hasil dari keputusan atau output dari sistem fuzzy tersebut adalah terdiri sistem penyiraman tanaman dengan status tidak siram, siram sedang, dan siram banyak</em></p><p><em><strong>Kata Kunci</strong> : Sistem  Fuzzy, mikrokontol, rumah kaca.</em></p>


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