scholarly journals Prototype Alarm Pendeteksi Banjir dengan Water Level Sensor Funduino Berbasis Mikrokontroler Arduino Uno

2020 ◽  
Vol 26 (1) ◽  
pp. 68
Author(s):  
Ratna Herawati ◽  
Wisnu Sanjaya ◽  
Syah Ronny Wijaya
Keyword(s):  

Ruang terbuka hijau yang semakin berkurang, eksploitasi hutan secara besar-besaran, sampah-sampah semakin menumpuk ditambah dengan perubahan cuaca yang ekstrim dapat memicu terjadinya bencana alam. Salah satunya adalah banjir yang dapat menghambat aktivitas, menimbulkan berbagai penyakit serta kerugian secara materi. Oleh karena itu untuk mengurangi dampak kerugian yang ditimbulkan oleh banjir adalah adanya sistem atau alat pendeteksi banjir dengan alarm. Prototype alarm pendeteksi banjir dengan sensor water level Funduino berbasis Arduin Uno ini dibuat untuk membantu masyarakat dalam meminimalisir kerugian yang ditimbulkan oleh banjir dan dapat dipantau melalui LCD. Pada penelitian ini digunakan sensor water level Funduino untuk mengetahui adanya air. Data dari sensor berupa sinyal digital yang akan diproses oleh Mikrokontroler Arduino Uno kemudian ditampilkan pada LCD sebagai display dan akan ditandai dengan bunyi alarm dari buzzer. Berdasarkan pengujian yang telah dilakukan baik pada mekanik maupun pada elektronika yang telah dibuat serta melihat tujuan dari penelitian, maka dapat disimpulkan bahwa alat telah diuji dan dapat digunakan untuk membantu masyarakat maupun penjaga pintu air.

2021 ◽  
Vol 6 (3) ◽  
Author(s):  
Muhaimin Muhaimin ◽  
Bengawan Alfaresi ◽  
Feby Ardianto

The arrangement of the floodgates for rice irrigation canals is currently still using the manual method. This is very burdensome for farmers because it requires time and energy. Therefore, we need a sluice in the irrigation canal that can be done automatically. The purpose of this research is to design a miniature sluice system that can automate the sluice gate in opening and closing the sluice gate based on the water level limit of the channel. The method used in this study is the use of Arduino Uno as data storage, a servo motor that functions as a floodgate controller, a water level sensor to open the floodgate and an ultrasonic sensor that functions to determine the water level. The results of the tool testing in the research of the miniature automatic sluice gate that has been designed, namely the automatic sluice gate will open when the water sensor at the top is exposed to water. The ultrasonic sensor will measure the distance between the sensor and the water surface to make a decision to close the floodgate. If the sensor distance with the water surface is still 14 m, then the floodgate will open 1800, if the sensor distance with the water surface is 4 cm and 14 cm, then the floodgate will open 900 and if the distance between the sensor and the water surface is 4 cm, then the floodgate will be closed.


Author(s):  
Sabar Sabar ◽  
Dewi Maulidah Nur Anjani ◽  
Sastra Kusuma Wijaya

This virtual instrumentation system based on Arduino and LabVIEW aims to detect the water level using a water level sensor. The water level sensor used to measure the water level is the Funduino type. This sensor and the buzzer module are connected to the Arduino Uno to transmit data to LabVIEW. When the water has reached a certain height, this sensor will detect the water level. When the water has reached the set point, this sensor will sound a buzzer as a sign that the water is full. Based on the experimental results, it is found that the tension value affects the volume of the experiment site. Where the greater the volume used will produce a large voltage, and vice versa. Furthermore, the graph results obtained that are still away from the linearity of a regression function with a value of y = 0.0079x + 1.8561 and R² = 0.4298.


2019 ◽  
Vol 1 (2) ◽  
Author(s):  
Fina Supegina

Hydroponics is one of planting method that use water as a medium of plants growth, in this technique, mineral solution added into the water solvent, allowing the nutrient uptake process by the plants.  Farming by hydroponic method must pay attention to the following parameters namely, temperature, humidity, the level of water needs and nutrients and also the level of sunlight need for photosynthesis process.  This research used hydroponic technique in hydroponic growth room, and  there is a LED growth light as an alternate of sunlight, due to this room is closed without sunlight.  There are outputs displayed in monitoring system namely, temperature sensor, humidity sensor, ultrasound sensor to detect height of the plant and water level sensor to measured height of the water as a medium of the plant.  Results of measured sensor in hydroponic growth room explained as the following:  fan cooler worked when temperature , and humidity  .  Water pump worked when water level is less than 50% accordance set point.  Control on LED Growth Light and LED Bulb when LDR sensor reached set point > 500 in bright condition, and < 500 in dark condition respectively. The average of Time update/received data in thing speak web is 2.4 second. Keywords: Smart Control, Hydroponic, IoT, Monitoring


Author(s):  
J S Ashwin ◽  
N Manoharan

An embedded based power plant system is used for checking the environmental condition based on different sensor. The microcontroller is fixed inside the boiler which is a turbine, to monitor the status and the information is passed through GSM. In this project we proposed the main water tank supplies number of boilers. The water level is controlled by a water level sensor, each evaporator has two channels, one is delta other one is outlet and the channels' valves are controlled by some temperature sensors composed in each package. From the GSM modem, the user will get the present status of the boiler level by sending a radiator ID number as message. When the temperature inside the boiler exceed the threshold value it will indicate as a warning to the concerned authority person to take the immediate step.


2019 ◽  
Vol 5 (2) ◽  
pp. 97
Author(s):  
Renintha Susilo ◽  
Muhammad Gibran ◽  
Fathan Akbar ◽  
Heny Ispur Pratiwi
Keyword(s):  

Tingkat genangan hasil curah air hujan di area akses masuk dan keluar kampus Universitas Pembangunan Jaya (UPJ) dari atau menuju lingkar jalan raya Bintaro Xchange Mall (tepatnya di Jalan Bakti Karya) bisa mencapai lebih dari 35 cm, angka ketinggian tersebut sudah merendam separuh diameter ban motor ukuran normal, sehingga akan mengganggu kelancaran aktivitas akademik UPJ. Sebuah purwarupa sudah dirancang bangun berbasis mikrokontroler Arduino Uno, GSM Modul untuk membantu memberi notifikasi para warga UPJ tentang kondisi tingkat genangan volume airpada jalan akses tersebut melalui sistem SMS terdaftar, sehingga warga UPJ tidak terjebak di area tersebut.Kata Kunci : Arduino Uno, GSM Modul, Water Level Senso


2021 ◽  
Vol 1 (1) ◽  
pp. 53-64
Author(s):  
Lukman Medriavin Silalahi ◽  
Setiyo Budiyanto ◽  
Freddy Artadima Silaban ◽  
Arif Rahman Hakim

Irrigation door is a big issue for farmers. The factor that became a hot issue at the irrigation gate was the irresponsible attitude of the irrigation staff regarding the schedule of opening/closing the irrigation door so that it caused the rice fields to becoming dry or submerged. In this research, an automatic prototype system for irrigation system will be designed based on integrating several sensors, including water level sensors, soil moisture sensors, acidity sensors. This sensor output will be displayed on Android-based applications. The integration of communication between devices (Arduino Nano, Arduino Wemos and sensors supporting the irrigation system) is the working principle of this prototype. This device will control via an Android-based application to turn on / off the water pump, to open/close the irrigation door, check soil moisture, soil acidity in real time. The pump will automatically turn on based on the water level. This condition will be active if the water level is below 3cm above ground level. The output value will be displayed on the Android-based application screen and LCD screen. Based on the results of testing and analysis of the prototype that has been done in this research, the irrigation door will open automatically when the soil is dry. This condition occurs if the water level is less than 3 cm. The calibrated Output value, including acidity sensor, soil moisture sensor and water level sensor, will be sent to the server every 5 seconds and forwarded to an Android-based application as an output display.


2020 ◽  
Vol 4 (1) ◽  
pp. 230-235
Author(s):  
Novianda Nanda Nanda ◽  
Rizalul Akram ◽  
Liza Fitria

During the rainy season, several regions in Indonesia experienced floods even to the capital of Indonesia also flooded. Some of the causes are the high intensity of continuous rain, clogged or non-smooth drainage, high tides to accommodate the flow of water from rivers, other causes such as forest destruction, shallow and full of garbage and other causes. Every flood disaster comes, often harming the residents who experience it. The late anticipation from the community and the absence of an early warning system or information that indicates that there will be a flood so that the community is not prepared to face floods that cause a lot of losses. Therefore it is necessary to have a detection system to provide early warning if floods will occur, this is very important to prevent material losses from flooded residents. From this problem the researchers designed an internet-based flood detection System of Things (IoT). This tool can later be controlled via a smartphone remotely and can send messages Telegram messenger to citizens if the detector detects a flood will occur.Keywords: Flooding, Smartphone, Telegram messenger, Internet of Thing (IoT).


2020 ◽  
Vol 13 (2) ◽  
pp. 55-61
Author(s):  
Alfa Satya Putra ◽  
Jennifer Novia Nursalim ◽  
Arnold Aribowo ◽  
Hendra Tjahyadi

Fuel shortage is a common problem in Indonesia. This prompted many cases of vehicle fuel theft. As a solution to this problem, an Arduino-based vehicle fuel theft detector system is implemented. Arduino-based vehicle fuel theft detector system is a prototype that uses Arduino UNO as a microcontroller, IComSat v1.1 SIM900 GSM/GPRS Shield to communicate with mobile phone, fuel level sensor as a volume detector, and push button as a detector to check whether the fuel tank’s lid is open or closed. The working principle of this system is to detect the state of the fuel tank lid. When the lid is open, the system will make a phone call. Then, the system will keep track of fuel volume. If there is a drastic decrease in volume, the system will send information about the decreasing volume in the form of a short message to the owner of the vehicle. The success rate of the communication system between Arduino UNO and other electronic devices is 100%. Accuracy of fuel level sensor is 90%. Success rate of push button switch in detecting the state of fuel tank’s lid is 100%. Success rate of GSM Shield communication is 90%.


1990 ◽  
Vol 37 (2) ◽  
pp. 1024-1031 ◽  
Author(s):  
K. Termaat ◽  
J. Kops ◽  
K. Ara ◽  
M. Katagiri ◽  
K. Kobayashi

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