scholarly journals Sistem Kendali Pintu Gerbang Otomatis Menggunakan Koneksi Wireless Module Wifi Berbasis Mikrokontroler Arduino Uno

2021 ◽  
Vol 1 (7) ◽  
pp. 297-308
Author(s):  
Sapta Darma Simarmata ◽  
Indra Gunawan ◽  
Ika Purnama Sari ◽  
Sumarno Sumarno ◽  
Ika Okta Kirana
Keyword(s):  

Pada setiap rumah pasti memiliki pintu gerbang atau pintu pagar yang dilengkapi dengan penguncinya. Dari hal tersebut, pintu gerbang rumah yang berguna untuk keamanan kondisi rumah maupun keamanan kendaraan pribadi. Pada umumnya untuk membuka pintu gerbang atau pintu pagar serta menguncinya dengan menggunakan manual atau dengan tangan manusia. Dari masalah tersebut, maka penulis membuat suatu prototype pintu gerbang otomatis berbasis mikrokontroler Arduino Uno dan Android sebagai sistem operasi. Suatu sistem pada Android yang dapat berfungsi sebagai saklar dan dapat membuka dan mengunci pintu gerbang dengan secara otomatis, yang di kontrol oleh Android, yang terbuhung pada koneksi Wireless atau Wifi device. Dengan perancangan sistem otomatis pada pintu gerbang yang berbasis mikrokontroler Arduino Uno dan Android sebagai sistem operasinya, maka dapat membantu mempermudah pengguna dalam mengatur untuk membuka dan mengunci pintu gerbang tanpa harus keluar dari kendaraan ataupun keluar rumah.

2019 ◽  
Vol 8 (4) ◽  
pp. 6514-6517

An emergency road signing system is an important device to prevent road disasters, especially during jeopardize conditions. In this project, it is focused on the shallow depth of water from 10cm to 30cm that can slow down the vehicles or even causes the collision. Arduino UNO microcontroller is utilized to detect the waterlogged and shows the of water depth on the road sign to allow the drivers to make a decision ahead for passing through the waterlogged. Furthermore, ZigBee wireless module is used to interface the sensor and display to increase the movability of the display from the waterlogged location. The system is powered up by the PV panel to support green technology and protect the environment as well. From results, it is found that placing the three signboards before the waterlogged location is more effective for drivers to respond.


Author(s):  
Alexandr Trunov ◽  
Zhan Byelozyorov

The sound series are considered as an addition to visual and thermal imaging information flows when using computerized monitoring systems (CS). A minimum complete structure of spaced microphones for collecting data on sound rows, which is suitable for calibrating, isolating and transmitting data on sound anomalies (SA), is proposed.  Duplication of the data transmission channel by wire and Wi-Fi module for recording and determining the type and coordinates of the SA is provided. An experimental receiving module has been assembled, which includes microphones, amplifiers and signals matching boards for digital and analog forms, an ARDUINO UNO WIFI REV2 controller with an integrated Wi-Fi module. It is presented that its addition with a personal computer and a smartphone with the Android operating system forms a CS for remote wireless control of the course of the experimental analysis of sound series. It has been confirmed experimentally that its structure is minimally complete. An algorithm was developed and a software package was written in C/C++ languages. It is shown that the number of microphones is selected from the conditions of the problem from 1 to 5, but their number is limited to five digital inputs of the ARDUINO UNO WIFI REV2 board. A wave representation of the law of temporal changes in intensity and the integral norm of SA is applied. The possibilities of calibrating all data of sound series in analog and digital form are demonstrated. The article presents the suitability of testing the algorithms for determining the phases of echograms from time series data, containing SAs of different origins and recorded by three different microphones. The effect of connecting a Wi-Fi module on reducing the voltage drop by 0.5–1 V is shown. The necessity of an additional registration condition for all microphones is demonstrated. The software interfaces for the calibration of the receiving module and the operation of the mobile application have been developed.


2020 ◽  
Vol 5 (1) ◽  
pp. 78
Author(s):  
Ade Sumaedi ◽  
Makhsun Makhsun ◽  
Achmad Hindasyah

PT. Duta Nichirindo Pratama is a company engaged in the field of Autoparts Manufacture. Barcode is the identity of an item / product on the package. Barcode technology has been used as the identity of goods in a production. Barcodes are used to facilitate the identification of goods produced. Paste the barcode on the packaging of packaging results at PT. Duta Nichirindo Pratama is done manually, but there are often errors attached to the barcode on a similar packaging. This research will design and create a system based on Visual Basic.Net and Arduino to select barcode attachment errors that have the potential to be sent to consumers. The system is designed using Unified Modeling Language (UML) diagrams, database design and interface menu design. The system created will then be tested to detect the black box test. With a computing-based design system that functions to detect barcodes on the packaging automatically, the problem of sticking barcodes on the packaging can be detected.


Author(s):  
Aulia El Hakim
Keyword(s):  

Kendali perangkat elektronika secara jarak jauh pada umumnya menggunakan remote infra merah ataupun menggunakan kendali sms gateway. Permasalahan terjadi Jika menggunakan Ired Pada saat pengiriman data,  maka antara infra merah sebagai transmiter dan receiver  harus berhadapan satu sama lain tanpa ada penghalang. Hal ini dapat menyulitkan dalam proses pengendalian perangkat elektronika secara jarak jauh. Sedangkan bila menggunakan sms gateway maka dibutuhkan pulsa “sms” untuk komunikasi data, sehingga pengendalian tidak effisien dan tidak praktis. Penelitian ini Bertujuan sebagai alternatif lain dalam pengendalian perangkat elektronika secara nirkabel yang ekonomis dan praktis. Board mikrokontroller yang digunakan pada penelitian ini bersifat open-source yaitu menggunakan board arduino uno. Untuk pembuatan aplikasi Android AndroBlue pada smartphone, dengan memanfaatkan pemrograman berbasis online dari ai2.appinventor.mit.edu.Cara penggunaan alat ini adalah dengan mengaktifkan Bluetooth pada Smartphone Android dan memberikan daya pada prototipe kendali perangkat elektronika, kemudian dilakukan pairing antara bluetooth pada smartphone dengan bluetooth yang ada pada prototipe kendali. Setelah terhubung, maka perangkat elektronika tersebut dapat dikendalikan dengan menggunakan aplikasi AndroBlue yang sudah terinstall pada smartphone. Dari hasil pengujian terhadap kendali perangkat elektronika secara jarak jauh dapat diketahui dari 10 kali uji coba dengan perbedaan jarak yang sudah ditentukan, tingkat keberhasilan  mencapai 80 %.


Author(s):  
Varun Kumar ◽  
Lakshya Gaur ◽  
Arvind Rehalia

In this paper the authors have explained the development of robotic vehicle prepared by them, which operates autonomously and is not controlled by the users, except for selection of modes. The different modes of the automated vehicle are line following, object following and object avoidance with alternate trajectory determination. The complete robotic assembly is mounted on a chassis comprising of Arduino Uno, Servo motors, HC-SRO4 (Ultrasonic sensor), DC motors (Geared), L293D Motor Driver, IR proximity sensors, Voltage Regulator along with castor wheel and two normal wheels.


2020 ◽  
Vol 65 (1) ◽  
pp. 163-170
Author(s):  
Eugen Răduca

The paper presents a model of centrifugal equipment for extracting honey made around an ATmega 328 processor, with which the Arduino Uno module is equipped. The created model is functional, being tested, and the practical results obtained would allow the transition to prototype equipment. The created model is flexible, allowing to obtain flexible operating cycles, with variable speeds, soft settable, in both directions of rotation. The number of frames from which the bee honey can be extracted is variable depending on the juicer itself, which is driven by the motor


2016 ◽  
Vol 10 (1) ◽  
pp. 1
Author(s):  
Potnuru Devendra ◽  
Mary K. Alice ◽  
Ch. Sai Babu ◽  
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