Home automation by using raspberry Pi and android application

Author(s):  
H Bharathi ◽  
U Srivani ◽  
M D Azharudhin ◽  
M Srikanth ◽  
M Sukumarline
Author(s):  
Shauvik Purkayastha ◽  
Triporna Kashyap ◽  
Navam Pradhan ◽  
Rajashree Konwar

The human race has always been in the quest for a better and easier life and ever since technology begun heavily integrating itself into the society. From the appliances in our kitchen to the phones in our palms, there are many high tech devices that make our lives easier. But it would be more convenient if we could control these devices remotely. An automated system could control machines and perform tasks as per the convenience of the user from long distances. In this paper, we are presenting a proposed system for a Smart Home automation where the user can control home electronic appliances easily and with higher controllability using an android application. To design this system, we are using a Raspberry Pi module. The Raspberry Pi acts as a mini computer.


2011 ◽  
Vol 4 (7) ◽  
pp. 188-190 ◽  
Author(s):  
Kallakunta. Ravi Kumar ◽  
◽  
Shaik Akbar

Sensors ◽  
2021 ◽  
Vol 21 (11) ◽  
pp. 3784
Author(s):  
Cristina Stolojescu-Crisan ◽  
Calin Crisan ◽  
Bogdan-Petru Butunoi

Home automation has achieved a lot of popularity in recent years, as day-to-day life is getting simpler due to the rapid growth of technology. Almost everything has become digitalized and automatic. In this paper, a system for interconnecting sensors, actuators, and other data sources with the purpose of multiple home automations is proposed. The system is called qToggle and works by leveraging the power of a flexible and powerful Application Programming Interface (API), which represents the foundation of a simple and common communication scheme. The devices used by qToggle are usually sensors or actuators with an upstream network connection implementing the qToggle API. Most devices used by qToggle are based on ESP8266/ESP8285 chips and/or on Raspberry Pi boards. A smartphone application has been developed that allows users to control a series of home appliances and sensors. The qToggle system is user friendly, flexible, and can be further developed by using different devices and add-ons.


2018 ◽  
Vol 11 (1) ◽  
pp. 55-66
Author(s):  
Aditya Mirza Bahari ◽  
Nenny Anggraini ◽  
Siti Ummi Masruroh

ABSTRAK Cody App Academy adalah sebuah tempat kursus berbasis teknologi di Bintaro, Jakarta Selatan. Berdasarkan observasi yang dilakukan penulis, Cody masih menerapkan cara manual untuk menyalakan dan mematikan listrik. Selain itu, hasil dari wawancara oleh pengelola Cody, dapat disimpulkan bahwa hal ini berdampak terhadap efisiensi penggunaan arus listrik yang ada di Cody, yang berkaitan langsung dengan besar atau kecilnya tagihan listrik yang harus dibayarkan oleh pengelola Cody. Maka penulis mengusulkan sebuah solusi berupa prototipe Sistem Pengendali Ruangan dengan teknologi motion berbasis mobile web yang merupakan aplikasi yang dapat merubah sistem manual menjadi sebuah sistem home automation. Aplikasi ini akan secara otomatis mematikan arus listrik ketika ruangan sedang kosong, dilihat dari tidak terdeteksinya gerakan dalam rentang waktu lebih dari 10 menit. Metode pengumpulan data yang yang penulis gunakan adalah pengumpulan data primer dan sekunder yang terdiri dari observasi, wawancara dan studi literatur sejenis. Sedangkan untuk metode pengembangan aplikasi adalah prototipe evolusioner dengan 4 tahap yang mencakup analisis kebutuhan pengguna, membuat satu prototipe. Hasil dari penelitian ini adalah  penerapan home automation yang berupa Sistem Pengendali Ruangan dengan teknologi motion  selama jangka waktu 2 bulan berbasis mobile web terbukti membuat penggunaan listrik di Cody lebih efisien berdasarkan perbandingan tagihan listrik sebelum dan sesudah menggunakan sistem yang penulis usulkan. Hal ini dapat terlihat dari perubahan signifikan pada biaya listrik yang harus dibayarkan Cody per bulan yakni sejumlah 20% lebih efisien dibandingkan tanpa menggunkan sistem yang penulis usulkan.   ABSTRACT Cody App Academy is a technology-based course place in Bintaro, South Jakarta. Based on observations made by the author, Cody is still applying the manual way to turn on and turn off the electricity. In addition, the results of interviews by Cody's managers, it can be concluded that this impacts on the efficiency of the use of electric current in Cody, which is directly related to the large or small bill of electricity that must be paid by the manager of Cody. So the author proposed a solution in the form of prototype Space Control System with motion technology based mobile web which is an application that can change the manual system into a home automation system. This application will automatically turn off the power when the room is empty, judging from the detection of movement in the span of more than 10 minutes. Data collection methods that the author uses is the collection of primary and secondary data consisting of observations, interviews and studies of similar literature. The method of application development is an evolutionary prototype with 4 stages that includes user needs analysis, making a prototype. The result of this research is the implementation of home automation in the form of Room Control System with motion technology for 2 months based on mobile web proved to cause the use of electricity in Cody more efficient based on the ratio of electric bill before and after using the system that the author proposed. This can be seen from the significant change in the cost of electricity that Cody has to pay per month which is 20% more efficient than without using the proposed system. How To Cite : Bahari, A.M. Anggraini, N. Masruroh, S.U. (2018). SISTEM OTOMASI RUANGAN DENGAN RASPBERRY PI BERBASIS MOBILE WEB STUDI KASUS: (LEMBAGA KURSUS CODY APP ACADEMY). Jurnal Teknik Informatika, 11(1), 55-66.  doi 10.15408/jti.v11i1.6261 Permalink/DOI: http://dx.doi.org/10.15408/jti.v11i1.6261 


Author(s):  
Anup Kumar Kolya ◽  
Debasish Mondal ◽  
Alokesh Ghosh ◽  
Subhashree Basu

This paper presents the design and implementation of control strategy for both the speed and direction of a direct current (DC) motor using Android-based application in smart phone. The Raspberry Pi 3 with a motor driver controller has been used to implement the control action via Python-based user-defined programming. The Android application has been developed using Android Developer Tools (ADT) in Java platform. The Android apps work like a client and communicates with Raspberry Pi through wi-fi connectivity. Finally, a small graphical user interface (GUI) has been created in Python in order to interface and control the motor with buttons in GUI. The advantages of GUI are that it is attractive, user friendly, and even a layman can work with the application developed in GUI.


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