This paper is published in Volume-6, Issue-5, 2020
Area
Electrical And Electronic
Author
Achamd Marzuki
Co-authors
Bangbang Hermanto
Org/Univ
Politeknik Negeri Pontianak, Indonesia, Indonesia
Pub. Date
04 September, 2020
Paper ID
V6I5-1141
Publisher
Keywords
Telegram Bot, IoT, Thingspeak, Peak to Peak

Citationsacebook

IEEE
Achamd Marzuki, Bangbang Hermanto. IoT based Electrical Power distribution through Telegram Bot and Web Cloud, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Achamd Marzuki, Bangbang Hermanto (2020). IoT based Electrical Power distribution through Telegram Bot and Web Cloud. International Journal of Advance Research, Ideas and Innovations in Technology, 6(5) www.IJARIIT.com.

MLA
Achamd Marzuki, Bangbang Hermanto. "IoT based Electrical Power distribution through Telegram Bot and Web Cloud." International Journal of Advance Research, Ideas and Innovations in Technology 6.5 (2020). www.IJARIIT.com.

Abstract

The convenience of distributing electrical power and monitoring the load in homes, offices, as well as industries is very important. This enables the periodic and easy monitoring of changes or disturbances that occur in a load globally. This project monitors and controls the Electrical Power distribution system through a Telegram Bot and web cloud (Thingspeak.com). The Telegram Bot, which is available on Telegram, a social media application, is used to send commands to the electrical loads and also receive feedback in the form of a voltage (V), current (I), and Power (P) parameters. Meanwhile, the Web cloud (Thingspeak.com) is used to display the parameters in graphical or numerical form. Furthermore, the "peak to peak" method produces accurate voltage and current measurements using the ZMPT101B and ACS712 sensors. The result showed that the sensor readings are carried out alternately using a Multiplexer (Mux), to provide flexibility for another additional sensor. Therefore, the load control system is equipped with a TPR (Thyristor Power Regulator) circuit to regulate the amount of power.
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