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2020 | Vol 3 | Issue 1 

 

AUTOMATION OF THE HOME USING GESTURES 

Ms. Vaddempudi Sravani
1
 , M. Manasa

2 

1,2
 Assistant professor, 

 KSR Institute of Technology and Science, Guntur, Andhra Pradesh, India 

 

 
Abstract 

 Home automation has come a long way since its start, both technologically and in terms of 

the services it offers. Interactions between humans and machines are more important in 

modern society. Through the use of physical gestures, humans will get a more intuitive 

understanding of and control over technologies like computers. Gestures made with the 

hands are the primary means of command. For this aim, flex sensors that can recognize 

several hand gestures might be used. Inexpensive vision systems and data glow are now 

available and can be utilized to run real-world gesture devices. Flex sensors may be used to 

save expenses and simplify the rollout process. In this study, we concentrate on a flex-

sensor based gesture recognition system. User hand movements are translated into character 

traits via the Arduino's flex sensor readings. 

Keywords: Intelligent home automation, gesture-recognition home appliances, Flex SENSOR, 

and an Arduino UNO 

 

 

Introduction 

1. A gesture is any movement of an arm, 

hand, or other body part used to 

emphasize words spoken.Gesture 

recognition studies aim to develop a 

system that can recognize individual 

gestures made by humans and use 

them as a means of communication or 

for manipulating electronic devices.A 

state-of-the-art home automation 

system can be controlled with simple 

gestures. Different hand gestures may 

be used with the gesture kit. A state-

of-the-art home automation system 

can be controlled with simple 

gestures. 

2. One such paper is "An Efficient Hand 

Gesture Recognition System Based on 

Deep CNN," by H. Chung, Y. Chung, 

and W. Tsai, published in the 

proceedings of the 2019 IEEE 

International Conference on Industrial  

3.  
4. Technology (ICIT), Melbourne, 

Australia, 2019, pages 853-858, doi: 

10.1109/ICIT.2019.8755038. 

5. "Gesture based home automation 

system," 2017 International 

Conference on Nextgen Electronic 

Technologies: Silicon to Software 

(ICNETS2), 2017, pp. 198-201, 

doi:10.1109/ICNETS2.2017.8067929. 

6. 11th International Conference on 

Knowledge and Systems Engineering 

(KSE), 2019, pp. 1-7, doi: 

10.1109/KSE.2019.8919419. [3] K. 

N. Trong, H. Bui, and C. Pham, 

"Recognizing hand gestures for 

controlling home appliances with 

mobile sensors," 2019. 

7. Energy Procedia,Volume 



 

62,2014,Pages 576-582, ISSN1876- 

6102,https://doi.org/10.1016/j.egypro.

201 4.12.419; Dong-Luong Dinh, 

Jeong Tai Kim, Tae-Seong Kim; 

Hand Gesture Recognition and 

Interface using a Depth Imaging 

Sensor for Smart Home Appliances. 

8. [5] Home Automation Using Hand 

Gestures Savitha, J. Nandhini, 

Kokilavani, Kalaiarasi, and 

Narmadha, A. S. are the authors. 

Page(s): 312-321. 

9. Using convolutional neural networks 

(CNNs), K. S. Varun, I. Puneeth, and 

T. P. Jacob were able to recognize 

hand gestures for the disabled. This 

research was presented at the 2019 

International Conference on 

Communication and Signal 

Processing (ICCSP) in Chennai, 

India. 

10. Gesture-based home automation is 

an example of the Internet of Things-

based technology used in the 

suggested approach. This allows us to 

manage our household appliances 

independently. The elderly and those 

with physical impairments are the 

primary users of this. 

11. This study is divided into four parts: 

Section 1, an introduction; Section 2, 

the methodology for the suggested 

approach; Section 3, the findings and 

discussions; and Section 4, a 

conclusion and future directions. 

12. Methodology 
 

 

 

 
Block diagram of Gesture Based Home Automation 

 

 

The hardware implementation 

of Gesture based home 

automation consists of Micro 

controller (Arduino UNO), 



 

Flex sensors, Voice module, 

LCD, Relay Module, home 

appliances and power 

supply.The flex sensors are 

connected to the Arduino and 

power supply is given to 

arduino. The Arduino measures 

the flex sensor signals 

generated by a users hand 

motions to identify the 

character.The text is displayed 

on the LCD and voice output 

will generate from the voice 

module and also in addition to 

these we are implementing the 

gesture based home automation 

in these system itself. 

12.1 Arduino Uno 

Arduino is an open-source 

electronics platform based on 

easy-to-use hardware and 

software. Arduino board can 

read inputs - light on a sensor, a 

finger on a button, or a Twitter 

message - and turn it into an 

output - activating a motor, 

turning on an LED, publishing 

something online. You can tell 

your board what to do by 

sending a 

set of instructions to the 

microcontroller on the board. 

To do so you use the Arduino 

programming language (based 

on Wiring), and the Arduino 

software language (IDE) based 

on processing. 

 

 

 

12.2Flex Sensors 

12.3Fig 1: Arduino Uno board 

A flex sensor is a kind of sensor 

which is used to measure the 

amount of defection otherwise 

bending. The designing of this 

sensor can be done by us ting 

materials like plastic and 

carbon. The carbon surface is 

arranged on a plastic strip as 

this strip is turned aside then the 

sensor‟s resistance will be 

changed. Thus, it is also named 

a bend sensor. These sensors are 

classified into two types based 

on its size namely 2.2-inch flex 

sensor & 4.5-inch flex sensor. 

https://www.elprocus.com/laser-sensor-working-and-its-applications/


 

The size, as well as the 

resistance of these sensors, is 

dissimilar except the working 

principle. Therefore the suitable 

size can be preferred based on 

the necessity. Here this article 

discusses an overview of 2.2-

inch flex-sensor. This type of 

sensor is used in various 

applications like computer 

interface, rehabilitation, servo 

motor control, security system, 

music interface, intensity 

control, and wherever the 

consumer needs to modify the 

resistance throughout bending. 

 

 

Fig 2: FLEX sensor 

 

12.4 Channel Relay Module 

The two-channel relay module 

is designed to allow your 

Arduino to control two high-

powered devices. It has two 

relays, each with a maximum 

current rating of 10A at 

250VAC or 30VDC. Modules 

with one, four, and eight 

channels are also available. You 

can choose the one that best 

meets your needs. 

.A relay typically has five pins, 

three of which are high voltage 

terminals (NC, COM, and NO) 

that connect to the device being 

controlled. The device is 

connected between the COM 

(common) terminal and either 

the NC (normally closed) or 

NO (normally open) terminal, 

depending on whether the 

device should remain normally 

on or off. Between the 

remaining two pins (coil1 and 

coil2) is a coil that acts as an 

https://www.elprocus.com/different-types-of-servo-motors-dc-servo-motor-and-ac-servo-motor/
https://www.elprocus.com/different-types-of-servo-motors-dc-servo-motor-and-ac-servo-motor/
https://www.elprocus.com/anti-theft-security-system-for-cars/
https://www.elprocus.com/auto-intensity-control-of-street-lights-circuit/
https://www.elprocus.com/auto-intensity-control-of-street-lights-circuit/


 

electromagnet. 

Fig 3: Channel Relay Module 



 

12.5 Voice module 

The voice module is a powerful 

audio processor along with 

high-performance audio 

analog- to- the digital 

converters (ADCs) and digital-

to-analog converters (DACs). 

The IC is a fully integrated 

solution offering high 

performance and unparalleled 

integration with analog input, 

digital processing, and analog 

output functionality. This is 

specially designed for the 

simple key trigger. The user 

can record & amp; play the 

message averagely for 1, 2, 4, 

or 8 voice message(s) by a 

switch and be adjusted the 

sample rate by using different 

values of resistors. It is suitable 

in a simple interface or needs to 

limit the length of a single 

message, e.g. toys, leave 

messages system, answering 

machine, etc. 

 

 

 

 
 

 

Fig 4:Voice Module 

12.6 16x2 LCD 

The term LCD stands for liquid 

crystal display. It is one kind of 

electronic display module used 

in an extensive range of 

applications like various circuits 

&amp; devices like mobile 

phones, calculators, computers, 

TV sets, etc. These displays are 

mainly preferred for multi-

segment light-emitting diodes 

and seven segments. The main 

benefits of using this module 

are inexpensive; simply 

programmable, animations, and 

there are no limitations for 

displaying custom characters, 

special and even animations, 

etc. A 16×2 LCD has two 

registers like data register and 

command register. The RS 

(register select) is mainly used 

to change from one register to 

another. When the register set is 

„0‟, then it is known as 

command register. Similarly, 

when the register set is „1‟, then 

it is known as data register. 



 

 
 

 

 

Fig 5: 16x2 LCD 

12.7 Appliances 

The appliances required here are 

the Bulb holder, bulb and a fan. 

These appliances are used to 

check the functioning and 

operating of the project model. 

These are connected to the flex 

sensors internally and a code is 

written in C language to operate 

the appliances, along with the 

bulb and fan a voice module and 

speaker is also connected to 

give the voice commands as 

output. 

13. Results & Discussions 

 
In the process of 

implementation, the hardware 

components are connected 

through the suitable pins on the 

board. Here we used the four 

flex sensors these are the main 

component. The four flex 

sensors are connected to the 

arduino board. The senors 

which are connected with 

appliances are connected to the 

pins A4,A5 in the arduino board 

through the help of relays i.e 2 

channel relay board. And the 

voice module is connected to 

the pins 8,9,10,11 in the arduino 

board. We give the voice 

commands which has to be 

produced as output, internally 

using the voice module. 



 

 

 

The LCD display here is used to 

know the sensor values of the 

Flex sensors when they are bent. 

The speaker gives the ouput as 

voice commands and it is 

connected to the 8 channel 

voice module. In this way the 

model is built for the elder and 

challenged people to control the 

appliances 

 

14. Conclusion & Future Scope 

 

Gesture recognition has attracted a lot 

of interest from several fields of study, 

including human-computer interaction 

and image processing. Humans will be 

able to more instinctively control 

computers and machines with the use of 

physical gestures, which will 

substantially simplify the interaction 

process. A system is developed using 

gesture recognition as the main purpose 

for the transmission of information. 

There are currently two main 

approaches to gesture recognition: 

vision-based and accelerometer-based. 

Vision-based methods have their 

drawbacks, such as a sluggish dynamic 

response, unanticipated ambient optical 

noise, and a huge amount of data to 

acquire. 

If deaf-blind persons are taught braille, 

we think they will be able to better 

interact with their loved ones and the 

rest of the community. 

The elderly and others with physical 

disabilities who rely on human 

assistance would benefit the most from 

this Proposed Model. In addition to its 

formal usage in the private sector, this 

project's development on the IoT-based 

Technology makes it particularly well-

suited to advancing the state of the art 

in Home Automation. 

References 

Ruize Xu, Shengli Zhou, Wen 

J. Li “MEMS Accelerometer 

Based Nonspecific- User Hand 

Gesture Recognition” IEEE 

sensors council,volume-12,issue 

5 2012 

M. Shakunthala Devi, R.B. 

Revathi “Real time hand 

gesture recognition using AVR 

Microcontroller”, information 

Communication and Embedded 

Systems (ICICES), 2014 

International Conference on 



 

2014. 

Nina Rudigkeit, Marion 

Gebhard, Axel Graser “An 

analytical approach for head 

gesture recognition with motion 

sensors”, sensing technology 

(ICST) 2015 9th international 

conference .2015. 

hand gesture based home 

automation. Bharambhe, 

Apoorva. 2015, International 

Journal of Advanced Research 

in Computer Science and 

Software Engineering , vol. 5 

issue 2. 

Home security system using 

gsm and microcontroller. 

Hassan, Raqib ul. 2015, open 

journal of safety science and 

security, vol. 5. p. 55-62 


