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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 315
IOT BASED SURVEILLANCE ROBOT
Miss. Sayali Bhise1, Miss. Priyanka Chavan2, Mr. Ganesh Jadhav3, Miss. Shital Rajeshirke4
1-4B.E Student, Dept. of Electronic and Telecommunication, S.C.O.E.M, Limb, Satara, Maharashtra, India
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract – This project is to design and build a manually
control IOT based surveillance robot. The purpose oftherobot
is to be able to roam around in a given environment while
transmitting back real time data (video) to thegroundstation
over the internet or Wi-Fi. This real time data can then the
used by the controller (human) to move the robot around. In
this proposed system, the robot is compact and self-contained
with wireless transmission of data. This system will help to
control/spy on the terrorist attack throughout the world by
monitoring and control of robot via the internet through
Raspberry Pi board. The monitoring and controllingofrobotic
movements are done through the wireless network by using a
web-based application.
Key Words: Raspberry Pi, Raspbian OS, Python, Things
Board, Gas sensor, PIR sensor, Metal detector, Temp &
humidity sensor
1. INTRODUCTION
Robot is a machine which design to do particular task. It is
based on program that is software and hardware.Nowadays
industry becoming modern and they use automated
technology to perform risky jobs. This is helpful to minimize
life risk of human and animals.Forexamplesecuritypurpose
we can use automated security system instead of
animal/human to minimize life risk of animals.
For home security, we use camera which is mounted on
fixed location such as doors, windows, walls andceilingalso.
This robot is control by using PC, android mobile or a laptop
via website. The camera captures video and sends it back to
controller’s device via internet.
According to this paper our system helps to controls the
terrorist attack anywhere on earth except water by
monitoring and controlling of robot via internet through
Raspberry Pi board. The monitoring and controllingofrobot
is done by wireless network by using a web application.
The camera is mounted on the robot to get better visibility
of the objects nearby robot. The programming language we
used in this project is python which will be interfaced with
Raspberry Pi board. The PIR sensor detects movements of
person or an animal enters into a surveillance area. This
mobile robot can be operatedfromanywhereintheworldby
using cloud computing. In the war field area it is difficult to
detect the landmines which are life threat to the soldiers.
This system also detects the human presence in thefieldand
sense present situation of the environment. By the video
surveillance user can keep an eye on the live field. The
system operates remotely by using web server and entire
data will be stored on cloud and only the authorized person
can access the data whenever there is necessity. The system
uses standard protocol MQTT (message queue telemetry
transfer) protocol and a machine-human interface.
1.1 PROPOSED WORK
Raspberry Pi receives live data collected from different
sensors embedded with it and then transfer to Things board
dashboard using Wi-Fi. These different sensors are
Temperature sensor ,humidity sensor, Metal Detector
sensor, Gas Sensor, PIR sensor and camera for live video
streaming. The monitoring and controlling of robot is done
by wireless network by using a web application Things
board. The camera is mounted on the robot to get better
visibility of the objects nearby robot. Camera video
transmission via internet is doneusingDuplicityframework.
The programming language we used in thisprojectispython
which will be interfaced with Raspberry Pi board. The PIR
sensor detects movement of a person or an animal enters
into a surveillance area. This mobile robot can be operated
from anywhere in the world by using online IOT based
platform Things board. In the War field area it is difficult to
detect the landmines which are life threat to the soldiers, by
this system we can detect the landmines by using metal
detector sensors and provide a specifiedpathtothesoldiers.
This system also detects the human presence in thefieldand
senses present situation of the environment.
2. DISCRIPTION OF BLOCK DIAGRAM
The block diagram of IOT Based SurveillanceRobotisshown
below. The main components of the system Raspberry Pi,,
Gas sensor, PIR sensor, Metal detector ,Temp & humidity
sensor, Power supply, Camera, Motor, Motor driver, Cloud.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 316
2.1. BLOCK DIAGRAM
The above figure shows that main block diagram of our
project. The Raspberry Pi is used as a small-card sized
computer capable of performing various functionalities. Gas
sensor is useful for leakage detecting (in home and
industry).PIR sensor detects human being moving around
with in approximately 10m from the sensor PIR. Metal
detector aims to disclose an underground metal surface for
particular navigation area. It detect only Iron. Humidity and
temperature sensor is used to detect differences in
temperature present in environment.
2.2 COMPONENT OF SYSTEM
2.2.1 Raspberry Pi
Raspberry pi is a small-card sized computer capable of
performing various functionalities such as in surveillance
systems, military application, industrial application, home
application, etc. The specificationoftheraspberrypi3Model
is ARM8-quad core processor 1200 MHz Broadcom
BCM2837, HDMI support, 1GB Ram with the support of 4
USB devices, and also micro SD card slot. The memory can
further increased to a capacity of about 1GB .The 40 General
Input output pins can be used to connect different types
connector with expansion boards also can be added. The
fully backward compatibility is given to the first 26 identical
pins on Model B board.
Features:
1. SOC: Broadcom BCM2837B0, Cortex-A53 (ARMv8)
64-bit
2. CPU: 1.4GHz 64-bitquad-coreARMCortex-A53CPU
3. RAM: 1GB LPDDR2 SDRAM
4. Thermal management: Yes
5. Video: Yes – Video Core IV 3D. Full-size HDMI
6. Audio: Yes
7. USB 2.0: 4 ports
8. GPIO: 40-pin
9. Power: 5V/2.5A DC power input
10. Operating system support: Linux and Unix
2.1.2 GAS SENSOR (MQ-2)
Gas sensor (MQ2) module is useful for leakage detecting (in
home and industry).It can detect H2, LPG, CH4, CO, Alcohol,
Smoke, and And Propane Based on its fast response time.
Measurements can be taken as soon as possible. Also the
sensitivity can be adjusted by the potentiometer.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 317
Features:
1) Operating voltage is +5v.
2) It can be used to measure or detect LPG, Alcohol,
Propane, Hydrogen, Co &even methane.
3) High sensitivity & fast response.
4) Wide detecting scope.
2.1.3 PIR SENSOR
PIR sensor detects human being moving around with in
approximately 10m from the sensor PIR are fundamentally
made of a pyro electric sensor, which can detect levels of
infrareds radiation.
Features:
1) Rated voltage:230V AC 50hz
2) Load wattage:max.100w
3) Detection area:max.10 meters radius
4) Detection angle: 100° around.
2.1.4 MOTOR DRIVER IC (L293D)
L293D is a dual H-bridge motordriverintegratedcircuit(IC).
Motor drivers act as current amplifiers sincetheytakea low-
current control signal and provide a higher-current signal.
Input logic 00 and 11 will rotate it in clockwise and
anticlockwise directions, respectively.
2.1.5 MOTOR
Motors that operates on 12 v DC power supply are used.
These are rotary electric machine that converts direct
current electric energy into mechanical energy. The motors
used are of 30 rpm speed of operation.
Features:
1) Working voltage: 3-12V.
2) No load speed: 200rpm.
3) No load current: 125mA.
2.1.6 METAL DETECTOR
Metal detector aims to disclose an underground metal
surface for particular navigation area. It detect only Iron.
Metal detectors are useful for finding metal inclusions
hidden within objects buried underground.
2.1.7 TEMP. & HUMIDITY SENSOR
Digital humidity and temperature sensor is used to detect
differences in temperaturepresentinenvironment.Thedata
collected by the DHT11 sensor will be sent to the cloud for
other purposes.
2.1.8 POWER SUPPLY
Raspberry pi needs a power supply of and 2 amp micro USB
type. Raspberry pi require power source to turn it on 5V
adapter. Power supply is enough to power up .In cable, no
extra cables or power supplies are needed.
2.1.9 Pi Camera
The Raspberry Pi camera board contains a 5 MPixel sensor,
and connects via a ribbon cable to the CSI connector on the
Raspberry Pi. In Raspbian support can be enabled by the
installing or upgrading to the latest version of the OS and
then running Raspi-config and selecting the camera option.
3. SOFTWARE REQUIRMENT
3.1 PUTTY
Putty is an SSH and telnet client, developed originally by
Simon Tat ham for the Windows platform. Putty is open
source software that is available with source code and is
developed and supported by a group of volunteers. IP
address of Raspberry Pi have to enter and raspberry pi is
ready for programming.
3.2 PROTEUS
The proteus design suits is a proprietary software tools suit
use primarily for electronic designautomation. Thesoftware
is used mainly by electronic design engineers and
technicians to create schematics and electronic print for
manufacturing circuit board.
3.3 VNC SOTWARE
In computing, virtual network computing (VNC) is a
graphical desktop-sharing system that uses the remote
frame buffer protocol (RFB) to remotely control another
computer. It transmits the keyboard and mouse events from
one computer to another, relaying the graphical-screen
updates back in other direction, over a network.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 318
4. FLOW-CHART
4.1 FOR ROBOT
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 319
4.2 FOR USER
5. ADVANTAGES
1. Wi-Fi based wireless broadbandservicescouldbeused for
public surveillance systems.
2. Wireless surveillance cameras can be useful in situations
where it is difficult to lay cables – Museums, Heritage
Buildings, Industrial plants, etc.
3. Wireless surveillance system is cost effective (when
compared to wired networks involving Fiber Cables,
Trenching, etc.) to install and maintain.
4. Wireless Networks can be deployed quickly and wireless
surveillance can be used for providing temporary Wi-Fi to
fairs/ exhibitions, etc.
5. Wireless Point-to-Point back-haul networks could extend
the network to more than 5 KM over the wireless medium, if
required.
6. FUTUER-SCOPE
We can use this system for military applications installing
suitable sensors. Just by changing the robotic unit design we
can use it in hospitals for patient monitoring. Using some
chemical sensors we can detect harmful gas leakage in the
chamber the time delay which occurs in the execution of
commands can be reduced and thus we can have more real
time access to the robot. With reduced time delay we can
have faster operation and quick response to any illegal
activities in the monitored area. Also it can be used as a spy
robot. The robot is very economical.
7. CONCLUSION
In this project, we implement surveillance robot for military
application with the help of this robot we know real time
condition of border area without using human sources. The
surveillance robot gives us live video streamingaccordingto
that we give the command.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 320
8. REFERENCES
1] R. Karthikeyan, S. Karthik, Prasanna Vishal, S. Vignesh ‖
snitch design and development of a mobile robot for
surveillance and reconnaissance‖
IEEE Sponsored 2nd International Conference on
Innovations in Information Embedded and Communication
Systems ICIIECS’2015.
[2] Kun Wang, Zhiqiang Wang and Houxiang Zhang,
―Development of modular wall-climbing robot inspired by
natural caterpillar‖ IEEE 2nd
International Conference on Computing, Control and
Industrial Engineering (CCIE), 2011.
[3] Tushar Maheshwari, Upendra Kumar, Chaitanya Nagpur,
Chandrakant Ojha and V. K. Mitta.Capturingthespiedimage-
video data using a flexi
Controlled spy-robot‖ third international conference on
image information processing, 2015.
[4] Rui Chen, Rong Liu, Jifan Chen and Jin Zhang.
[5] Dr. M. Meenakshi: ―vision based autonomous robotic
system‖ Signal and Image Processing (ICSIP), 2014 Fifth
International Conference on 8-
10 Jan. 2014 Date Added to IEEE Explore: 31 March 2014

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IRJET - IoT based Surveillance Robot

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 315 IOT BASED SURVEILLANCE ROBOT Miss. Sayali Bhise1, Miss. Priyanka Chavan2, Mr. Ganesh Jadhav3, Miss. Shital Rajeshirke4 1-4B.E Student, Dept. of Electronic and Telecommunication, S.C.O.E.M, Limb, Satara, Maharashtra, India ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract – This project is to design and build a manually control IOT based surveillance robot. The purpose oftherobot is to be able to roam around in a given environment while transmitting back real time data (video) to thegroundstation over the internet or Wi-Fi. This real time data can then the used by the controller (human) to move the robot around. In this proposed system, the robot is compact and self-contained with wireless transmission of data. This system will help to control/spy on the terrorist attack throughout the world by monitoring and control of robot via the internet through Raspberry Pi board. The monitoring and controllingofrobotic movements are done through the wireless network by using a web-based application. Key Words: Raspberry Pi, Raspbian OS, Python, Things Board, Gas sensor, PIR sensor, Metal detector, Temp & humidity sensor 1. INTRODUCTION Robot is a machine which design to do particular task. It is based on program that is software and hardware.Nowadays industry becoming modern and they use automated technology to perform risky jobs. This is helpful to minimize life risk of human and animals.Forexamplesecuritypurpose we can use automated security system instead of animal/human to minimize life risk of animals. For home security, we use camera which is mounted on fixed location such as doors, windows, walls andceilingalso. This robot is control by using PC, android mobile or a laptop via website. The camera captures video and sends it back to controller’s device via internet. According to this paper our system helps to controls the terrorist attack anywhere on earth except water by monitoring and controlling of robot via internet through Raspberry Pi board. The monitoring and controllingofrobot is done by wireless network by using a web application. The camera is mounted on the robot to get better visibility of the objects nearby robot. The programming language we used in this project is python which will be interfaced with Raspberry Pi board. The PIR sensor detects movements of person or an animal enters into a surveillance area. This mobile robot can be operatedfromanywhereintheworldby using cloud computing. In the war field area it is difficult to detect the landmines which are life threat to the soldiers. This system also detects the human presence in thefieldand sense present situation of the environment. By the video surveillance user can keep an eye on the live field. The system operates remotely by using web server and entire data will be stored on cloud and only the authorized person can access the data whenever there is necessity. The system uses standard protocol MQTT (message queue telemetry transfer) protocol and a machine-human interface. 1.1 PROPOSED WORK Raspberry Pi receives live data collected from different sensors embedded with it and then transfer to Things board dashboard using Wi-Fi. These different sensors are Temperature sensor ,humidity sensor, Metal Detector sensor, Gas Sensor, PIR sensor and camera for live video streaming. The monitoring and controlling of robot is done by wireless network by using a web application Things board. The camera is mounted on the robot to get better visibility of the objects nearby robot. Camera video transmission via internet is doneusingDuplicityframework. The programming language we used in thisprojectispython which will be interfaced with Raspberry Pi board. The PIR sensor detects movement of a person or an animal enters into a surveillance area. This mobile robot can be operated from anywhere in the world by using online IOT based platform Things board. In the War field area it is difficult to detect the landmines which are life threat to the soldiers, by this system we can detect the landmines by using metal detector sensors and provide a specifiedpathtothesoldiers. This system also detects the human presence in thefieldand senses present situation of the environment. 2. DISCRIPTION OF BLOCK DIAGRAM The block diagram of IOT Based SurveillanceRobotisshown below. The main components of the system Raspberry Pi,, Gas sensor, PIR sensor, Metal detector ,Temp & humidity sensor, Power supply, Camera, Motor, Motor driver, Cloud.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 316 2.1. BLOCK DIAGRAM The above figure shows that main block diagram of our project. The Raspberry Pi is used as a small-card sized computer capable of performing various functionalities. Gas sensor is useful for leakage detecting (in home and industry).PIR sensor detects human being moving around with in approximately 10m from the sensor PIR. Metal detector aims to disclose an underground metal surface for particular navigation area. It detect only Iron. Humidity and temperature sensor is used to detect differences in temperature present in environment. 2.2 COMPONENT OF SYSTEM 2.2.1 Raspberry Pi Raspberry pi is a small-card sized computer capable of performing various functionalities such as in surveillance systems, military application, industrial application, home application, etc. The specificationoftheraspberrypi3Model is ARM8-quad core processor 1200 MHz Broadcom BCM2837, HDMI support, 1GB Ram with the support of 4 USB devices, and also micro SD card slot. The memory can further increased to a capacity of about 1GB .The 40 General Input output pins can be used to connect different types connector with expansion boards also can be added. The fully backward compatibility is given to the first 26 identical pins on Model B board. Features: 1. SOC: Broadcom BCM2837B0, Cortex-A53 (ARMv8) 64-bit 2. CPU: 1.4GHz 64-bitquad-coreARMCortex-A53CPU 3. RAM: 1GB LPDDR2 SDRAM 4. Thermal management: Yes 5. Video: Yes – Video Core IV 3D. Full-size HDMI 6. Audio: Yes 7. USB 2.0: 4 ports 8. GPIO: 40-pin 9. Power: 5V/2.5A DC power input 10. Operating system support: Linux and Unix 2.1.2 GAS SENSOR (MQ-2) Gas sensor (MQ2) module is useful for leakage detecting (in home and industry).It can detect H2, LPG, CH4, CO, Alcohol, Smoke, and And Propane Based on its fast response time. Measurements can be taken as soon as possible. Also the sensitivity can be adjusted by the potentiometer.
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 317 Features: 1) Operating voltage is +5v. 2) It can be used to measure or detect LPG, Alcohol, Propane, Hydrogen, Co &even methane. 3) High sensitivity & fast response. 4) Wide detecting scope. 2.1.3 PIR SENSOR PIR sensor detects human being moving around with in approximately 10m from the sensor PIR are fundamentally made of a pyro electric sensor, which can detect levels of infrareds radiation. Features: 1) Rated voltage:230V AC 50hz 2) Load wattage:max.100w 3) Detection area:max.10 meters radius 4) Detection angle: 100° around. 2.1.4 MOTOR DRIVER IC (L293D) L293D is a dual H-bridge motordriverintegratedcircuit(IC). Motor drivers act as current amplifiers sincetheytakea low- current control signal and provide a higher-current signal. Input logic 00 and 11 will rotate it in clockwise and anticlockwise directions, respectively. 2.1.5 MOTOR Motors that operates on 12 v DC power supply are used. These are rotary electric machine that converts direct current electric energy into mechanical energy. The motors used are of 30 rpm speed of operation. Features: 1) Working voltage: 3-12V. 2) No load speed: 200rpm. 3) No load current: 125mA. 2.1.6 METAL DETECTOR Metal detector aims to disclose an underground metal surface for particular navigation area. It detect only Iron. Metal detectors are useful for finding metal inclusions hidden within objects buried underground. 2.1.7 TEMP. & HUMIDITY SENSOR Digital humidity and temperature sensor is used to detect differences in temperaturepresentinenvironment.Thedata collected by the DHT11 sensor will be sent to the cloud for other purposes. 2.1.8 POWER SUPPLY Raspberry pi needs a power supply of and 2 amp micro USB type. Raspberry pi require power source to turn it on 5V adapter. Power supply is enough to power up .In cable, no extra cables or power supplies are needed. 2.1.9 Pi Camera The Raspberry Pi camera board contains a 5 MPixel sensor, and connects via a ribbon cable to the CSI connector on the Raspberry Pi. In Raspbian support can be enabled by the installing or upgrading to the latest version of the OS and then running Raspi-config and selecting the camera option. 3. SOFTWARE REQUIRMENT 3.1 PUTTY Putty is an SSH and telnet client, developed originally by Simon Tat ham for the Windows platform. Putty is open source software that is available with source code and is developed and supported by a group of volunteers. IP address of Raspberry Pi have to enter and raspberry pi is ready for programming. 3.2 PROTEUS The proteus design suits is a proprietary software tools suit use primarily for electronic designautomation. Thesoftware is used mainly by electronic design engineers and technicians to create schematics and electronic print for manufacturing circuit board. 3.3 VNC SOTWARE In computing, virtual network computing (VNC) is a graphical desktop-sharing system that uses the remote frame buffer protocol (RFB) to remotely control another computer. It transmits the keyboard and mouse events from one computer to another, relaying the graphical-screen updates back in other direction, over a network.
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 318 4. FLOW-CHART 4.1 FOR ROBOT
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 319 4.2 FOR USER 5. ADVANTAGES 1. Wi-Fi based wireless broadbandservicescouldbeused for public surveillance systems. 2. Wireless surveillance cameras can be useful in situations where it is difficult to lay cables – Museums, Heritage Buildings, Industrial plants, etc. 3. Wireless surveillance system is cost effective (when compared to wired networks involving Fiber Cables, Trenching, etc.) to install and maintain. 4. Wireless Networks can be deployed quickly and wireless surveillance can be used for providing temporary Wi-Fi to fairs/ exhibitions, etc. 5. Wireless Point-to-Point back-haul networks could extend the network to more than 5 KM over the wireless medium, if required. 6. FUTUER-SCOPE We can use this system for military applications installing suitable sensors. Just by changing the robotic unit design we can use it in hospitals for patient monitoring. Using some chemical sensors we can detect harmful gas leakage in the chamber the time delay which occurs in the execution of commands can be reduced and thus we can have more real time access to the robot. With reduced time delay we can have faster operation and quick response to any illegal activities in the monitored area. Also it can be used as a spy robot. The robot is very economical. 7. CONCLUSION In this project, we implement surveillance robot for military application with the help of this robot we know real time condition of border area without using human sources. The surveillance robot gives us live video streamingaccordingto that we give the command.
  • 6. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 04 | Apr 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 320 8. REFERENCES 1] R. Karthikeyan, S. Karthik, Prasanna Vishal, S. Vignesh ‖ snitch design and development of a mobile robot for surveillance and reconnaissance‖ IEEE Sponsored 2nd International Conference on Innovations in Information Embedded and Communication Systems ICIIECS’2015. [2] Kun Wang, Zhiqiang Wang and Houxiang Zhang, ―Development of modular wall-climbing robot inspired by natural caterpillar‖ IEEE 2nd International Conference on Computing, Control and Industrial Engineering (CCIE), 2011. [3] Tushar Maheshwari, Upendra Kumar, Chaitanya Nagpur, Chandrakant Ojha and V. K. Mitta.Capturingthespiedimage- video data using a flexi Controlled spy-robot‖ third international conference on image information processing, 2015. [4] Rui Chen, Rong Liu, Jifan Chen and Jin Zhang. [5] Dr. M. Meenakshi: ―vision based autonomous robotic system‖ Signal and Image Processing (ICSIP), 2014 Fifth International Conference on 8- 10 Jan. 2014 Date Added to IEEE Explore: 31 March 2014