scholarly journals Ardunio and Bluetooth based Smart Home Control System

Author(s):  
Kaythi Wut Hmone Khin ◽  
Khaing Myat Nwe ◽  
Lin Lin Phway ◽  
Zarni Sann

Internet of Things (IoT) conceptualizes the idea of remotely connecting, monitoring real world and controlling objects (things). Nowadays, many efficient situations for criminal cases are increasing in everywhere and every time. This IoT project focuses on building a smart home control system which sends alerts to the owner. But if there is Automatic Home control System, people can feel safety of their home and also be feeling smart and comfortable of their home. So, home control System is necessary for every home. To demonstrate the feasibility and effectiveness of this system, devices such as light switches, power plug, temperature sensor and current sensor have been integrated with the proposed home control system. This system can communicated with Short Message Service (SMS) on GSM to control home appliances.

2018 ◽  
Vol 2 (2) ◽  
Author(s):  
Bagas Woro Saputra

AbstractDesign of Smar Welco aims to optimize perrot fish cultivation profit by reducing the cost of electrical energy and replace the waterwheel's control system from manual to automatic in order to facilitate and reduce the cost of its treatment. Smar Welco work by using the Arduino as a main controller and fuzzy logic as a main system and solar cell as the main power supplay. Temperature sensor (DS18B20) and solar light sensor (LDR) is used as the input where the value of both of these sensors will be sent to the Arduino to determine the speed of the waterwheel based on fuzzy logic. This tool is also equipped with automatic ph sensor and wavecom module to send a notification in the form of short message service (sms) to farmers when the ph levels in the embankment are not standard . A method of designing Smar Welco use approach of waterfal method. The result of the application of Smar Welco in  embankment at our partner is obtained that the cost of electrical energy to operate waterwheel down up to Rp 3.126.400,00 in one time harvrest. Keywords: waterwheel, fuzzy logic, arduino   AbstrakYogyakarta memasok ikan dari daerah lain karena produksi dalam provinsi belum mencukupi untuk memenuhi permintaan pasar. Salah satu penyebabnya adalah belum optimalnya produktivitas hasil ikan produsen perikanan di Yogyakarta.  Pembuatan Smar Welco bertujuan untuk mengoptimalkan produktivitas dan profit budidaya perikanan dengan menurukan jumlah ikan mati sebelum dipanen karena kekurangan oksigen dan  menekan biaya energy listrik. Metode yang digunakan adalah penelitian pengembangan dengan pendekatan water fall. Cara kerja Smar Welco menggunakan Arduino dan logika fuzzy sebagai system utamanya serta solar cell sebagai power suplay nya. Sensor suhu, sensor cahaya, dan pH meter digunakan sebagai inputan dimana angka dari ketiga sensor tersebut dikirim ke Arduino untuk menentukan kecepatan kincir air berdasarkan logika fuzzy. Putaran kincir air akan menghasilakan kadar oksigen yang sesuai dengan kebutuhan ikan. Metode penerapan Smar Welco  menggunakan pendekatan water fall dari analisi kebutuhan hingga pemantauan hasil. Penerapan Smar Welco telah berhasil meningktkn produktivitas hasil ikan sebesar 8,3 % dan menurunkan jumlah ikan yang mati sebesar 76 % serta menurunkan biaya listrik hingga 46,16 % atau sekitar Rp 3.119.935,00 untuk satu kali masa panen. Kata kunci : kincir air, logika fuzzy, arduino


2020 ◽  
Vol 7 (2) ◽  
pp. 109
Author(s):  
Abdul Zain ◽  
Rudi Hartono ◽  
Sri Handani W

Conflagration is an unpredictable tragedy. It may occur whether in the woodland areas or in the residential areas. Typically, it would only be recognized if indeed the flames spread and the smoke intensified. This study aims to detect fires using the MQ-2 smoke sensor, DS18b20 temperature sensor, and fire sensor. Using Arduino Uno as the controller, this system’s output is in the form of an alarm buzzer, Short Message Service (SMS) information using SIM800L, and an automatic fire pump. This system operates to detect the temperature shifts, the smoke concentration and the existence of a fire point which triggers an alarm in the form of a siren if two out of the three sensors are activated. It, then, sends information by Short Message Service (SMS) and automatically triggers the pump as the result. The fire sensor can detect hotspots with a maximum distance of 80 cm and the DS18b20 temperature sensor has an average reading error of 0.27 ° C with a maximum reading error of 0.5 ° C. The MQ-2 smoke sensor can detect smoke where the change in smoke concentration is directly proportional to the sensor output voltage. There are three conditions to determine fire conditions, namely the temperature sensor reads more than equal to 55 ° C and the fire sensor is active, or the temperature sensor reads more than equal to 55 ° C and the smoke sensor reads more than equal to 1000 ppm, or the fire sensor is active and smoke sensor reads greater than equal to 1000 ppm.


2019 ◽  
Vol 4 (3) ◽  
pp. 125-132
Author(s):  
Irawati Dewi Syahwir ◽  
Agus Samsi ◽  
Vera Firmansyah ◽  
Prasetyo Wibowo Yunanto ◽  
Renanda Maheswara ◽  
...  

The field of metrology is mainly legal metrology; seals are closely related to the guarantee or validity of a measuring instrument. Seals are designed so that it is not easy for other parties to open the seal. Seal damage must be identified as soon as possible. The application of the Internet of Things (IoT) is needed in the process of sending data in real-time. IoT technology can be applied to electronic seals to know and record the condition of the measuring device. Broken seals caused by irresponsible parties can cause losses to consumers and owners of measuring instruments. Electronic seals are expected to be able to detect seal damage caused by abuse of authority or fraud. The broken seal will send data to the server as well as SMS (Short Message Service) to the related party. Electronic seals can send damage data via SMS within 20 seconds with a success rate of 92% and sending data through the ThingSpeak web server within 40 seconds with a success rate of 82%.


Author(s):  
P. Kiran Kumar ◽  
G. Joga Rao ◽  
M. Titus Viswanath ◽  
P. Rohith Kumar ◽  
Ch. Srinivas ◽  
...  

GSM (SMS) Controlled AC Motor is automatic control system which capable of receiving a set of command instructions in the form of Short message service(SMS) and performs the necessary actions like Start, Stop and speed control. We have used a dedicated modem/mobile at the receiver module i.e. with the model itself and send the commands using SMS service as per the required actions. The GSM modem which is dedicated at the motor driver is interfaced with an intellectual device called Micro controller so that it takes the responsibility of reading the received commands in the form of SMS from the mobile unit and perform the corresponding predefined tasks such as motor start, stop, motor direction and speed control at different levels. The utilization of GSM modem in this project as it ubiquity standard which enables subscribers to use their phones in many parts of the world, and make international roaming very common between mobile phone operators. This system is extremely handy and convenient to operate at any place for controlling the speed and direction of motor.


2020 ◽  
Vol 8 (3) ◽  
pp. 49-54
Author(s):  
Muhanned AL-Rawi ◽  
Muaayed AL-Rawi

<a name="_Hlk27050323"></a><span style="font-family: 'Times New Roman',serif; font-size: 10pt; -ms-layout-grid-mode: line; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-GB; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;" lang="EN-GB">Smart Home (SH) technology, comprising smart devices in the home context. SH technology has demonstrated new and good contribution to increase safety and reliability, at the same time; it might have its own influence to change our living habit. Use of mobile phones is changing with the development of technology; it can be used for different purposes. With the help of a network, mobile phone can be used to implement the smart home by controlling the devices. The objectives of this paper are to implement a smart home by controlling electronic devices at home remotely and to get an alert on intrusion or movement around the restricted premises. The mobile phone is using the short message service (SMS) service available and the alerts are also received as an SMS mentioning the activity occurring around the premises.</span>


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