Abstract:
Nowadays, technology has grown at high speed and the internet is available everywhere.
People are very much dependent on the technology. For this reason, home appliances
smart control systems have become more and more popular day by day. IoT-based home
appliances smart control refers to the integration of Internet of Things (IoT) technology
with household appliances to enable remote control, monitoring, automation, and
enhanced functionality. This project is an implementation of IoT based complete home
appliance smart control system where the user can control the SDB parameters (circuit
breaker, magnetic contractor, etc.) along with other home appliances such as light, fan,
fan speed, air conditioner, refrigerator, security light, etc. from a smartphone or any
internet-connected smart devices from anywhere which is not found in existing projects.
In addition, voice and manual control facility is also integrated in this project so that the
user can feel more comfortable. Besides, the user can also monitor various real-time data
such as current, voltage, power, energy, humidity, temperature, etc. using a smartphone
from a remote place, and if any emergency assistance is required then it also can be
obtained. Some additional features are also integrated into this project such as an energy saving lighting system used in security and toilet lights, protection of the whole system
from under voltage, sending notifications as well as switching on the alarm if the smoke
crosses the acceptance level in the kitchen to prevent fire accidents initially. Overall, this
project demonstrates the potential of IoT-based home appliance smart control systems in
improving performance, reducing delay, more accurate real-time data monitoring, and
more safety and security of homes where user experience will more better and more
comfortable.
Description:
Supervised by
Dr. Mohammad Masum Billah,
Assistant Professor,
Department of Electrical and Electronic Engineering (EEE)
Islamic University of Technology (IUT)
Board Bazar, Gazipur, Bangladesh
This thesis is submitted in partial fulfillment of the requirement for the degree of Master of Science in Electrical and Electronic Engineering, 2024