scholarly journals Rancang Bangun Pintu Air Otomatis Menggunakan Water Level Float Switch Berbasis Mikrokontroler

2015 ◽  
Vol 4 (1) ◽  
pp. 22
Author(s):  
Heki Apriyanto
Keyword(s):  

Penelitian ini bertujuan untuk membangun sistem pintu air otomatis membuka ataupun menutup pintu berdasarkan ketinggian air pada bendungan yang sebelumnya masih bersifat konvensional atau masih menggunakan tenaga manusia. Pintu air yang bersifat konvensional dinilai kurang efektif, mengingat curah hujan yang cukup tinggi disertai sulitnya memperkirakan ketinggian air yang selalu berubah-ubah, selain faktor tersebut ketinggian air pada suatu bendungan dipengaruhi juga oleh banjir kiriman didaerah lain. Metode penelitian yang digunakan dengan menggunakan pengumpulan data dan pengembangan perangkat yang terdiri dari perencanaan, analisis, perancangan dan implementasi, dimana dalam analisis menggunakan analisis SWOT untuk menilai layak atau tidaknya rancangan ini diterapkan. Hasil yang diharapkan adalah terwujudnya pintu air otomatis untuk meringankan manusia dalam menjalankan tugas serta membuat sistem yang berjalan dengan lebih efisien. Rancang bangun pintu air otomatis ini menggunakan mikrokontroler arduino uno dan nano sebagai alat pemroses, serta dilengkapi dengan sensor ultrasonik, water level float switch sensor, LCD display, motor servo. Water level float switch sensor yang berfungsi untuk memutar motor servo untuk mengangkat atau menurunkan pintu air sesuai batas ketinggian air. Hasil yang diharapkan adalah terciptanya sistem pintu air otomatis pada suatu bendungan dan dapat mengurangi kelalaian manusia dalam bertugas mengingat sulitnya memperkirakan ketinggian air yang selalu berubah-ubah dalam waktu tertentu.

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


2012 ◽  
Vol 17 (1) ◽  
pp. 22
Author(s):  
Rizal Fauzan Adi Rahardjo ◽  
Heru Winarno

Rizal Fauzan Adi Rahardjo, Heru Winarno, in paper water level detection based atmega 8 microcontroller with lcd display, led, buzzer and seven segment as early warning of post water (rob) increase based CP1E-E40DR-A programmable logic controller explain that as a result of the overflow of the tidal sea water in rural areas sriwulan sayung District of Demak , the tidal water easily entered into the residential area , which can be fatal if not in further tackle. Tidal flood has become commonplace in the area Sriwulan Sayung District of Demak . However , the longer the tidal flood is troubling and very disturbing society . So I took the initiative to create a miniature tidal flood prevention . Height of the water level of a river that flows directly into the sea will be detected by the sensor. The sensors will send data to the PLC and will be displayed by the seven segment . Further increase in the water level of the river will also affect the water level in the ditch homes residents . Height of the ditch water level is detected by the sensor which will send data to the PLC and then displayed by seven segment LCD and previously through the microcontroller atmega 8. The maximum height of the water level gutter will be marked with berbunyinya buzzer and LED life. Keywords : Sensor , Seven Segment , Microcontroller Atmega 8 , LCD , LED, buzzer.


2015 ◽  
Vol 14 (2) ◽  
pp. 75
Author(s):  
I G.M Sugiri Arnawa ◽  
I . G. A. Raka AGung

The prototype of this dam water level monitoring function to provide information about the dam water level through social media twitter and speakers. Information on twitter social media can be found by following the twitter account of this tool . The prototype consists of a microcontroller Arduino Uno , HC - SR04 sensor , LCD , WTV020SD and the Ethernet Shield . Sensor HC - SR04 , read the value of the dam water level based on emission and reflection of ultrasonic waves . Arduino Uno microcontroller will process and display the sensor input from HC - SR04 form of dam water level on the LCD and sent via ethernet shield to social media twitter . WTV020SD serves to ring the speaker on the water level 10 cm , 20 cm , 30 cm and 40 cm . The sound emitted is the normal condition of the dam , flood alert , flood alert and flood . Water level measurement results on LCD , manual measurement and display on twitter social media have gotten the same results .


2021 ◽  
Vol 2 (4) ◽  
Author(s):  
Refni Wahyuni ◽  
Jeri Trio Sentana ◽  
Muhardi Muhardi ◽  
Yuda Irawan

2020 ◽  
Vol 2 (1) ◽  
pp. 32-40
Author(s):  
M. Iqbal Febryansah ◽  
Anton Yudhana ◽  
Alfian Ma'arif

Perkembangan pemeriksaan penyakit kelainan ginjal melalui analisa urin saat ini dilakukan dalam dua proses pemeriksaan secara makroskopis dan mikroskopis. Pada dasarnya dibutuhkan sebuah alat yang mampu memproses dan menganalisis sebuah sampel urin secara otomatis agar tidak terjadinya kesalahan dalam melakukan pemeriksaan penyakit melalui sampel urin. Awalan perkembangan ini menggunakan sebuah Kontroler Arduino UNO dan dua buah variabel masukan yaitu sensor warna TCS3200 dan sensor PH meter SKU SEN0161. Dua buah variabel masukan sensor bekerja secara berdampingan dengan sensor TCS3200 memiliki hasil keluaran berupa nilai frekuensi RGB dan diproses kembali menjadi frekuensi keabuan. Lalu, sensor PH meter SKU SEN0161 menghasilkan sebuah nilai PH pada sampel urin. Hasil dari pemeriksaan tersebut ditampilkan pada sebuah penampil berupa LCD berukuran 16x2. Hasil pemeriksaan dari alat ini dibandingkan dengan hasil analisa pakar dari Balai Laboratorium Kesehatan Yogyakarta bagian Urology. dan mendapatkan tingkatan nilai akurasi 93% dengan keberhasilan data sebanyak 28 dari 30 data yang diambil. The development of examining kidney disorders through urine analysis is currently carried out in two processes of examination, macroscopic and microscopic. Basically, we need a tool that is able to process and analyze a urine sample automatically so that there are no errors in carrying out disease checks through the urine sample. The beginning of this development used an Arduino UNO controller and two input variables, namely the TCS3200 color sensor and the SKU SEN0161 PH meter sensor. Two sensor input variables working side by side with the TCS3200 sensor have an output in the form of RGB frequency values and are processed back into gray frequencies. Then, the PH meter SKU SEN0161 sensor generates a PH value in the urine sample. The results of these checks are displayed on a 16x2 LCD display. The examination results of this tool are compared with the results of the analysis of experts from the Yogyakarta Health Laboratory Center, Urology section. and get an accuracy level of 93% with the success of the data as much as 28 of the 30 data taken.


Kilat ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 77-88
Author(s):  
NOVI KURNIASIH ◽  
DEWI PURNAMA SARI ◽  
DENA ANDIKA RIZKA FIRDAUS

ABSTRACT The slow handling of the flooding problem for people who live on riverbanks and densely populated areas in urban areas due to the lack of preliminary information obtained by the local community, causing huge losses both morally, materially and even causing fatalities. Based on these problems, a prototype monitoring system for flooding early detection was made with the aim that it can be used as a means of information whose data can be accessed through notifications in the form of short message services (SMS) in real time. In making this research, data collection was carried out in the form of water level data that had occurred at the location of the flood and then made the system design and implementation of that system by conducting trials in the field. This early flood detection system works by monitoring the water level using a level control system. This water level monitoring uses an ultrasonic sensor that is controlled using an arduino uno microcontroller. Data information about the water level is forwarded to the GSM module in the form of a notification message of SMS to the public. For the working of this prototype device in the design, the author uses an electrical power supply from renewable energy in the form of On Grid PLTS system. The results obtained from this research are for normal status the water level is at 5-50 cm, for alert status is 55-85 cm and for danger status is 90-100 cm. Keywords:   Water Level, Ultrasonic Sensor, Arduino Uno Microcontroller, GSM Module, On Grid PLTS System   ABSTRAK Lambatnya penanganan masalah banjir bagi masyarakat yang tinggal di daerah bantaran pinggiran sungai maupun kawasan padat penduduk yang berada di perkotaan dikarenakan kurangnya informasi awal yang diperoleh oleh masyarakat setempat sehingga menyebabkan kerugian yang sangat besar baik secara moril, materil bahkan sampai menimbulkan korban jiwa. Berdasarkan permasalahan tersebut maka dibuat suatu prototype sistem monitoring pendeteksi dini banjir dengan tujuan dapat digunakan sebagai sarana informasi yang datanya dapat diakses melalui notifikasi berupa short message service (SMS) secara real time. Dalam membuat penelitian ini dilakukan pengumpulan data berupa data level ketinggian air yang pernah terjadi di lokasi banjir kemudian membuat perancangan sistem serta pengimplementasian dari sistem yang dibuat dengan melakukan uji coba di lapangan. Sistem pendeteksi dini banjir ini bekerja dengan cara memantau level ketinggian air menggunakan sistem level control. Pemantauan level ketinggian air ini menggunakan sensor ultrasonik yang dikontrol menggunakan mikrokontroller arduino uno. Informasi berupa data-data mengenai level ketinggian air ini diteruskan ke modul GSM berupa pesan notifikasi dalam bentuk SMS kepada masyarakat. Untuk bekerjanya perangkat prototype ini dalam rancangannya penulis menggunakan suplai daya listrik dari renewable energy berupa sistem PLTS On Grid. Hasil yang diperoleh dari penelitian ini yaitu bahwa untuk status normal level ketinggian air berada pada angka 5-50 cm, untuk status siaga berada pada angka  55-85 cm dan untuk status bahaya berada pada angka 90-100 cm. Kata kunci:   Level Ketinggian Air, Sensor Ultrasonik, Mikrokontroler Arduino Uno, Modul GSM, Sistem PLTS On Grid


In recent surveys, the electrical accidents to the linemen are increasing year by year due to the improper communication between the electrical staff and the substation. These faults occur during maintenance and there is no proper coordination between the people to people. This paper deals about this issue and the solution brought out to reduce electrical accidents due to these communication failures. In our day to life, the applications of embedded systems are used in everywhere and it is cost effective and better accuracy and precise of results will get. Currently, the research is going on the basis of embedded systems which includes microcontroller plays a vital role. Recent technology like Arduino based system is used by implementing the password protection in circuit breaker. Password is entered by the specific person and there is a provision of password changing system. Arduino UNO is used to control the signal in the relay module and the matrix keyboard is introduced to enter the input and LCD display is used to display the output and the ON/OFF switches provided as the loads through the Relay switch. By using this system, accidents can be prevented and valuable human lives can be saved.


2017 ◽  
Vol 1 (1) ◽  
pp. 24
Author(s):  
IGAP Raka Agung ◽  
IGAK Diafari Djuni H

The purpose of this research is to make the switch to turn on and off lighting with time can be set based on certain conditions. Controller utilizes Arduino UNO microcontroller with input from DS1307 RTC IC, photodiode, IComSat V1.1 with the output of LCD display and lighting switch. In this study realized photodiode sensor to detect dark and light illumination, DS1307 RTC IC as a source of real-time equal to the time actually, IComSat v1.1 SIM900 GSM/GPRS Shield for Arduino to communicate with HP via SMS, switch circuit and drivers for turn on and off the load of lighting and Arduino UNO with programs that has been put into flash memory. Research results obtained are supporting components of the equipment control to turn on and off of lighting utilizing microcontroller can be realized and are functioning in accordance with the plan. Two lightings can already turn on and off based on the input time of the RTC (the default) and on off status can be checked by SMS. Both lightings can already be turn on and off by SMS messages sent from mobile HP and received by microconroller (IComSat) and feedback lighting conditions is already accepted by mobile HP corresponds to on and off lights condition.


Author(s):  
Mohammad Irfan Fahmi ◽  
Hidayatullah ◽  
JhonsonEfendi Hutagalung ◽  
Sajadin Sembiring
Keyword(s):  

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.


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