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IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308
_______________________________________________________________________________________
Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 53
ROBOTIC ARM CONTROLLED IN MISSILE LAUNCHERS USING PLC
AND IMAGE AUTHENTICATION TECHNIQUE
Aaron James.S1
, Sabarivani.A2
, Sunitha.N3
1
Assistant Professor, Department of Electronics & Instrumentation, Sathyabama University, Tamil Nadu, India
2
Assistant Professor, Department of Electronics & Instrumentation , Sathyabama University, Tamil Nadu, India
3
Assistant Professor, Department of Electronics &, Instrumentation, Sathyabama University, Tamil Nadu, India
Abstract
As of now, the missile launchers which use Robotic Hand for holding and releasing of missiles in defense organizations are being
controlled by the microcontroller. As a result of this there are many problems associated. One is that the controlling of the whole
process is not perfect. Therefore we have proposed a paper where the robotic hand which controls the missile launcher will be
controlled by a PLC and secured image authentication technique. In our project, the hand which is holding the missile that to be
launch is controlled by the PLC. The robotic hand is operated by with the help of DC motor. The PLC controls the two kind of
position of robotic hand. One is holding the missile and another one is releasing the missile. Actually the PLC is controlling the
DC motor in two conditions which is holding and releasing. In the Space research center, applying the missile is very important
and secure process also. So, operating with the missile launching process, secured by image authentication technique is highly
required. PLC controls the robotic hand by means of ladder diagram which is nothing but programming of PLC. In that
programming only our secure technique will be used. The pass code and image synchronizations are needed to execute the
programming of PLC. Until the authorization the robotic hand it will not release or hold the missile.
Keywords: Robotic Hand, DC motor, PLC
---------------------------------------------------------------------***---------------------------------------------------------------------
1. INTRODUCTION
As of now, the missile launchers which use Robotic Hand
for holding and releasing of missiles in defense
organizations are being controlled by the microcontroller.
As a result of this there are many problems associated. One
is that the controlling of the whole process is not perfect.
Therefore we have proposed a project where the robotic
hand which controls the missile launcher will be controlled
by a PLC and secured image authentication technique.
In our paper, the hand which is holding the missile that to be
launch is controlled by the PLC. The robotic hand is
operated by with the help of DC motor. The PLC controls
the two kind of position of robotic hand. One is holding the
missile and another one is releasing the missile. Actually the
PLC is controlling the DC motor in two conditions which is
holding and releasing. In the Space research center, applying
the missile is very important and secure process also. So,
operating with the missile launching process, secured by
image authentication technique is highly required. PLC
controls the robotic hand by means of ladder diagram which
is nothing but programming of PLC. In that programming
only our secure technique will be used.
2. EXISTING SYSTEM
Now-a-days, robotic hand model which is responsible for
launching the missile in space research center and in defense
sector is controlled by microcontroller. So the efficiency of
controlling is not good. In present scenario the missile
launchers which uses robotic arm for holding and releasing
of the missile, uses microcontroller as the processing unit
for the operation. As a result of this, though the making of
the arrangement is cheap but there are many problems
associated due to the limited scope for processing in the
microcontroller. There occurs some time delay in the
microcontroller and also the controlling capacity of the
microcontroller for the whole process is not proper due to its
limited processing scope. In the existing robotic controlled
missile launchers, the hand which is holding the missile that
to be launch is controlled by the microcontroller. The
robotic hand is operated by with the help of DC motor. The
microcontroller controls the two kind of position of robotic
hand. One is holding the missile and another one is releasing
the missile. This existing methodology is widely used in the
defense sector and in the space research organizations.
Though there may exist some other secured process in the
launching of the missile like finger print authentication or
palm print authentication but basically the main processing
work is done by the microcontroller only. And as a result of
the small scope in processing which is present in the
microcontrollers, the overall controlling of the process is not
perfect. There occurs some time delay and the process
monitoring is not possible using any control application’s
like SCADA. Thus in making of the paper the existing
system and the existing methodology has been thoroughly
studied.
3. PROPOSED SYSTEM
Here in our proposed paper work the missile holding
robotic hand is controlled by PLC and new techniques
that are PLC pass code and Image recognition are used
IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308
_______________________________________________________________________________________
Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 54
over here to make the Missile launching process fully
secured. We have implemented pass code and image
recognition technique in order to give the process a
complete security so that there occurs no hacking or
failure in launching the missiles due to the miscreants.
Thus this is our proposed system.
3.1 Proposed Methodology
The proposed methodology or the proposed working
principle is discussed below.
The process starts with entering the pass code, when the
pass code is correct the web camera detects the image of
the operator and if the image is correct it is sent to the
MATLAB for processing, the output of the MATLAB is
connected to the input of the PLC and if the image
authentication is perfectly done by the MATLAB and
web camera, the PLC starts processing and thus the dc
motor starts which is connected to the robotic arm and
thus the robotic arm does the operation of holding and
releasing the missile. If the image or the pass code is
wrong the buzzer sounds and the led glows. Thus it’s a
very highly secured process.
3.2 Algorithm Developed
Image authentication algorithm has been developed and is
discussed below.
Algorithm of Image Authentication Used
The Circuit Diagram shown in the figure has The
Following
1. Web camera
2. Industrial personal computer
3. Programable logic controller
4. Dc motor
5. LED
6. Buzzer
7. Robotic arm controller
8. 5 volt dc power supply
9. Relay switches
10. Single push button.
Fig.3 Circuit Diagram
4. SOFTWARE IMPLEMENTATION
Various Kinds of software’s are being implemented in our
paper work and they are discussed in great detail below. The
description of the software’s is discussed below.
1. PLC Language: WPL Soft V2.30
2. I/O Driver: Kepserver
3. SCADA: WonderwareIntouc
4. Image Comparisons: MATLAB
4.1 PLC Language: WPL Soft V2.30
Delta WPL Soft V2.30 or V.2.33 software is using for
design the ladder logic for PLC. WPL Soft is a software for
PLC (Programmable logic controller). When PLC is in
operation, use WPL Soft to monitor the set value or
temporarily saved value in timer (T), counter (C), and
register (D) and force On/Off of output contact. WPL Soft is
a program editor of Delta DVP series PLC for WINDOWS
computers.
4.2 I/O Driver Kepserver
The EX series is the analog MPU with the lowest cost.
Apart from supporting digital input and output, the EX
series has built-in multiple analog I/O channels and
integrates a variety of communication protocols for
constructing a complete control network. EX series is
suitable for all kinds of small PLC applications. MPU
points: 20 (8DI/6DO, 4AI/2AO)
Max. I/O points: 238
Program capacity: 4K Steps
Communication port: Built-in RS-232 and RS-485,
compatible with MODBUS ASCII / RTU communication
protocol.
High-speed pulse output: Supports 2-point (Y0, Y1)
independent high-speed pulse output of up to 10 KHz.
Built-in 4-point high-speed counter
Bandwidth refers to the max. counting range of a single
counter.
IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308
_______________________________________________________________________________________
Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 55
Built-in analog I/O function used for packaging machine,
spinning machine, conveyer belt (rotation speed control),
winding machine (tension control), food processing
machine, landscape fountain.
4.3 SCADA
SCADA is an acronym for Supervisory Control and Data
Acquisition. SCADA systems are used to monitor and control
a plant or equipment in industries such as telecommunications,
water and waste control, energy, oil and gas refining and
transportation. PLCs have their origins in the automation
industry and therefore are often used in manufacturing and
process plant applications. The need for PLCs to connect to
communication channels was not great in these applications, as
they often were only required to replace traditional relay logic
systems or pneumatic controllers. SCADA systems, on the
other hand, have origins in early telemetry applications, where
it was only necessary to know basic information from a remote
source. The RTUs connected to these systems had no need for
control programming because the local control algorithm was
held in the relay switching logic. As PLCs were used more
often to replace relay switching logic control systems,
telemetry was used more and more with PLCs at the remote
sites. It became desirable to influence the program within the
PLC through the use of a remote signal.
4.4 Wonderware Intouch
SCADA is one tool for designing the process. For that,
various software are used to create graphical representation
of the any industrial process. Here, we are using
Wonderware Intouch Software which the product coming
from Invensys. Comparing other software, Intouch is cool
one for designing the process. Let we see, how to create the
one digital process in Wonderware Intouch SCADA
software. Wonderware is the market leader in real-time
operations management software.
Wonderware software delivers significant cost reductions
associated with designing, building, deploying and
maintaining secure and standardized applications for
manufacturing and infrastructure operations.
5. RESULTS AND DISCUSSIONS
Missile launchers are used in defense organizations of a
country and the Government gives the top most priority to
its defense sector. One third of the revenue of a country is
spent on its defense. Here we have designed a missile
launcher which operates by involvement of programmable
logic controller and image authentication technique and due
to these two features its highly secured than the existing
missile launchers which uses microcontroller in place of the
PLC. The robotic arm will launch the missile only when the
conditions of security are satisfied i.e. image authentication
and pass code. Else there will be no launching of the missile
by the robotic arm.
Thus initially the user enters the pass code and if it is
satisfied the image authentication process starts with the
use of web cam, once the image authentication is correct
the PLC starts processing and the dc motor starts and the
robotic arm holds or releases the missile. If the passcode or
the image authentication is false than the buzzer sounds
and the led glows which is a tight measure of security. We
have implemented in our paper the PLC since the
processing of PLC is much faster and accurate than the
microcontroller in several ways. Also using one PLC we
can operate many robotic missile launchers. The image
authentication and passcode technique is used since they
prove to be highly secured. The process starts with
entering the passcode ,when the passcode is correct the
web camera detects the image of the operator and if the
image is correct it is sent to the MATLAB for processing,
the output of the MATLAB is connected to the input of the
PLC and if the image authentication is perfectly done by
the MATLAB and web camera, the PLC starts processing
and thus the dc motor starts which is connected to the
robotic arm and thus the robotic arm does the operation of
holding and releasing the missile. If the image or the pass
code is wrong the buzzer sounds and the led glows. Thus
it’s a very highly secured process.
5.1 Performance Analysis
In our proposed paper work the performance of the complete
process is increased using PLC. On the other hand when
missile launchers are handled using microcontroller the
process becomes somewhat slow as compared to the PLC.
Thus when the microcontroller is removed and the PLC is
implemented we have analyzed that the time delay is also
reduced. If the microcontroller took 2 millisecond for the
operation, the PLC can do the same in 0.5 millisecond. Thus
there is a reduction of 1.5 millisecond time delay in our
proposed paper work. Moreover using PLC we can control
the process very efficiently and thus implement SCADA and
other supervisory tools for monitoring the complete process.
Also we can control at least 23 missile launchers using a
single standard PLC. Thus the efficiency of the complete
process is increased as a whole which is not possible using
microcontroller. And also with the implementation of image
authentication and passcode technique in our proposed
paper, the complete process became fully secured.
5.2 Comparisons
Comparing our proposed paper work with that of the
existing robotic controlled missile launchers we have seen
that the existing missile launchers which uses
microcontroller for processing lacks in efficient controlling
of the process and also the monitoring of the complete
process is not possible. But in our proposed paper work we
used PLC for controlling the robotic arm for releasing and
holding of the missile and we found that the controlling is
very good for the whole process as compared with the
microcontroller. Moreover we can completely monitor the
process using SCADA and thus process became much more
secured with pass code verification and image authentication
technique, which is not possible using microcontroller.
Moreover using PLC also reduced the time delay as
IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308
_______________________________________________________________________________________
Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 56
compared with the microcontroller which posses some time
delay due to limited processing scope.
Robotic Arm with Missile
Missile Being Released
6. CONCLUSIONS AND FUTURE WORK
The Robotic arm controlled in missile launchers using PLC
and image authentication technique is carried out in
prototype model as discussed. Thus the design is successful
and the predicted output is also obtained in a perfect way
without any much complications. Thus the robotic arm is
functioning on the command of the PLC and the MATLAB
and the process is being supervised using SCADA thereby
avoiding monitoring and controlling complications.In the
present situation of the missile launchers the microcontroller
is used. To reduce the drawbacks of the microcontroller and
human errors we need to have some kind of high processing
device and the PLC is most fit for it. Also for high security
and for hacking proof reasons we implemented the image
authentication and the pass code technique in our paper so
that it proves to be a highly secured missile launcher using
PLC and image authentication technique.
REFERENCES
[1] Ching-Yung Lin, Member, IEEE, and Shih-Fu
Chang, Member IEEE “A Robust Image
Authentication Method Distinguishing JPEG
Compression from Malicious Manipulation”, Vol. No
: 23rd
, 2010, ISBN 13383, pp. 43-85.
[2] S. K. Nayak, Dr. S. B. Thorat, Miss. Jyoti P Dandale
“Facial Recognition Technology : An analysis with
scope in India”, Vol. No. : 28, 2006, ISBN 19987, pp.
28-43.
[3] A semiautonomous sprawl robot based on remote
wireless control,HongKai Li; ZhenDong Dai;Inst. of
Bio-inspired Struct. &Surface Eng., Nanjing Univ. of
Aeronaut. & Astronaut., Nanjing,China,
[4] Camera-in-hand robotic system for remote
monitoring of plantgrowth in a laboratory , Seelye,
M.; Sen Gupta, G.; Seelye,J.; Mukhopadhyay, S.C.;
Sch. of Eng. & Adv. Technol. (SEAT),Massey Univ.,
Palmerston North, New Zealand ,This paper appears
in: Instrumentation and Measurement Technology
Conference (I2MTC), 2010 IEEE ,Issue Date: 3-6
May 2010
[5] Multifunctional Sensor Networks for Automation,
ProcessMonitoring and Robotic Applications ,
BalakrishnanG.; Hiremath, S.S.; Dept. of Mech. Eng.,
Indian Inst. of Technol.Madras, Chennai, India,This
paper appears in: Robotics inAlpe-Adria-Danube
Region (RAAD), 2010 IEEE 19thInternational
Workshop on Issue Date: 24-26 June 2010

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Robotic arm controlled in missile launchers using plc and image authentication technique

  • 1. IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308 _______________________________________________________________________________________ Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 53 ROBOTIC ARM CONTROLLED IN MISSILE LAUNCHERS USING PLC AND IMAGE AUTHENTICATION TECHNIQUE Aaron James.S1 , Sabarivani.A2 , Sunitha.N3 1 Assistant Professor, Department of Electronics & Instrumentation, Sathyabama University, Tamil Nadu, India 2 Assistant Professor, Department of Electronics & Instrumentation , Sathyabama University, Tamil Nadu, India 3 Assistant Professor, Department of Electronics &, Instrumentation, Sathyabama University, Tamil Nadu, India Abstract As of now, the missile launchers which use Robotic Hand for holding and releasing of missiles in defense organizations are being controlled by the microcontroller. As a result of this there are many problems associated. One is that the controlling of the whole process is not perfect. Therefore we have proposed a paper where the robotic hand which controls the missile launcher will be controlled by a PLC and secured image authentication technique. In our project, the hand which is holding the missile that to be launch is controlled by the PLC. The robotic hand is operated by with the help of DC motor. The PLC controls the two kind of position of robotic hand. One is holding the missile and another one is releasing the missile. Actually the PLC is controlling the DC motor in two conditions which is holding and releasing. In the Space research center, applying the missile is very important and secure process also. So, operating with the missile launching process, secured by image authentication technique is highly required. PLC controls the robotic hand by means of ladder diagram which is nothing but programming of PLC. In that programming only our secure technique will be used. The pass code and image synchronizations are needed to execute the programming of PLC. Until the authorization the robotic hand it will not release or hold the missile. Keywords: Robotic Hand, DC motor, PLC ---------------------------------------------------------------------***--------------------------------------------------------------------- 1. INTRODUCTION As of now, the missile launchers which use Robotic Hand for holding and releasing of missiles in defense organizations are being controlled by the microcontroller. As a result of this there are many problems associated. One is that the controlling of the whole process is not perfect. Therefore we have proposed a project where the robotic hand which controls the missile launcher will be controlled by a PLC and secured image authentication technique. In our paper, the hand which is holding the missile that to be launch is controlled by the PLC. The robotic hand is operated by with the help of DC motor. The PLC controls the two kind of position of robotic hand. One is holding the missile and another one is releasing the missile. Actually the PLC is controlling the DC motor in two conditions which is holding and releasing. In the Space research center, applying the missile is very important and secure process also. So, operating with the missile launching process, secured by image authentication technique is highly required. PLC controls the robotic hand by means of ladder diagram which is nothing but programming of PLC. In that programming only our secure technique will be used. 2. EXISTING SYSTEM Now-a-days, robotic hand model which is responsible for launching the missile in space research center and in defense sector is controlled by microcontroller. So the efficiency of controlling is not good. In present scenario the missile launchers which uses robotic arm for holding and releasing of the missile, uses microcontroller as the processing unit for the operation. As a result of this, though the making of the arrangement is cheap but there are many problems associated due to the limited scope for processing in the microcontroller. There occurs some time delay in the microcontroller and also the controlling capacity of the microcontroller for the whole process is not proper due to its limited processing scope. In the existing robotic controlled missile launchers, the hand which is holding the missile that to be launch is controlled by the microcontroller. The robotic hand is operated by with the help of DC motor. The microcontroller controls the two kind of position of robotic hand. One is holding the missile and another one is releasing the missile. This existing methodology is widely used in the defense sector and in the space research organizations. Though there may exist some other secured process in the launching of the missile like finger print authentication or palm print authentication but basically the main processing work is done by the microcontroller only. And as a result of the small scope in processing which is present in the microcontrollers, the overall controlling of the process is not perfect. There occurs some time delay and the process monitoring is not possible using any control application’s like SCADA. Thus in making of the paper the existing system and the existing methodology has been thoroughly studied. 3. PROPOSED SYSTEM Here in our proposed paper work the missile holding robotic hand is controlled by PLC and new techniques that are PLC pass code and Image recognition are used
  • 2. IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308 _______________________________________________________________________________________ Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 54 over here to make the Missile launching process fully secured. We have implemented pass code and image recognition technique in order to give the process a complete security so that there occurs no hacking or failure in launching the missiles due to the miscreants. Thus this is our proposed system. 3.1 Proposed Methodology The proposed methodology or the proposed working principle is discussed below. The process starts with entering the pass code, when the pass code is correct the web camera detects the image of the operator and if the image is correct it is sent to the MATLAB for processing, the output of the MATLAB is connected to the input of the PLC and if the image authentication is perfectly done by the MATLAB and web camera, the PLC starts processing and thus the dc motor starts which is connected to the robotic arm and thus the robotic arm does the operation of holding and releasing the missile. If the image or the pass code is wrong the buzzer sounds and the led glows. Thus it’s a very highly secured process. 3.2 Algorithm Developed Image authentication algorithm has been developed and is discussed below. Algorithm of Image Authentication Used The Circuit Diagram shown in the figure has The Following 1. Web camera 2. Industrial personal computer 3. Programable logic controller 4. Dc motor 5. LED 6. Buzzer 7. Robotic arm controller 8. 5 volt dc power supply 9. Relay switches 10. Single push button. Fig.3 Circuit Diagram 4. SOFTWARE IMPLEMENTATION Various Kinds of software’s are being implemented in our paper work and they are discussed in great detail below. The description of the software’s is discussed below. 1. PLC Language: WPL Soft V2.30 2. I/O Driver: Kepserver 3. SCADA: WonderwareIntouc 4. Image Comparisons: MATLAB 4.1 PLC Language: WPL Soft V2.30 Delta WPL Soft V2.30 or V.2.33 software is using for design the ladder logic for PLC. WPL Soft is a software for PLC (Programmable logic controller). When PLC is in operation, use WPL Soft to monitor the set value or temporarily saved value in timer (T), counter (C), and register (D) and force On/Off of output contact. WPL Soft is a program editor of Delta DVP series PLC for WINDOWS computers. 4.2 I/O Driver Kepserver The EX series is the analog MPU with the lowest cost. Apart from supporting digital input and output, the EX series has built-in multiple analog I/O channels and integrates a variety of communication protocols for constructing a complete control network. EX series is suitable for all kinds of small PLC applications. MPU points: 20 (8DI/6DO, 4AI/2AO) Max. I/O points: 238 Program capacity: 4K Steps Communication port: Built-in RS-232 and RS-485, compatible with MODBUS ASCII / RTU communication protocol. High-speed pulse output: Supports 2-point (Y0, Y1) independent high-speed pulse output of up to 10 KHz. Built-in 4-point high-speed counter Bandwidth refers to the max. counting range of a single counter.
  • 3. IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308 _______________________________________________________________________________________ Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 55 Built-in analog I/O function used for packaging machine, spinning machine, conveyer belt (rotation speed control), winding machine (tension control), food processing machine, landscape fountain. 4.3 SCADA SCADA is an acronym for Supervisory Control and Data Acquisition. SCADA systems are used to monitor and control a plant or equipment in industries such as telecommunications, water and waste control, energy, oil and gas refining and transportation. PLCs have their origins in the automation industry and therefore are often used in manufacturing and process plant applications. The need for PLCs to connect to communication channels was not great in these applications, as they often were only required to replace traditional relay logic systems or pneumatic controllers. SCADA systems, on the other hand, have origins in early telemetry applications, where it was only necessary to know basic information from a remote source. The RTUs connected to these systems had no need for control programming because the local control algorithm was held in the relay switching logic. As PLCs were used more often to replace relay switching logic control systems, telemetry was used more and more with PLCs at the remote sites. It became desirable to influence the program within the PLC through the use of a remote signal. 4.4 Wonderware Intouch SCADA is one tool for designing the process. For that, various software are used to create graphical representation of the any industrial process. Here, we are using Wonderware Intouch Software which the product coming from Invensys. Comparing other software, Intouch is cool one for designing the process. Let we see, how to create the one digital process in Wonderware Intouch SCADA software. Wonderware is the market leader in real-time operations management software. Wonderware software delivers significant cost reductions associated with designing, building, deploying and maintaining secure and standardized applications for manufacturing and infrastructure operations. 5. RESULTS AND DISCUSSIONS Missile launchers are used in defense organizations of a country and the Government gives the top most priority to its defense sector. One third of the revenue of a country is spent on its defense. Here we have designed a missile launcher which operates by involvement of programmable logic controller and image authentication technique and due to these two features its highly secured than the existing missile launchers which uses microcontroller in place of the PLC. The robotic arm will launch the missile only when the conditions of security are satisfied i.e. image authentication and pass code. Else there will be no launching of the missile by the robotic arm. Thus initially the user enters the pass code and if it is satisfied the image authentication process starts with the use of web cam, once the image authentication is correct the PLC starts processing and the dc motor starts and the robotic arm holds or releases the missile. If the passcode or the image authentication is false than the buzzer sounds and the led glows which is a tight measure of security. We have implemented in our paper the PLC since the processing of PLC is much faster and accurate than the microcontroller in several ways. Also using one PLC we can operate many robotic missile launchers. The image authentication and passcode technique is used since they prove to be highly secured. The process starts with entering the passcode ,when the passcode is correct the web camera detects the image of the operator and if the image is correct it is sent to the MATLAB for processing, the output of the MATLAB is connected to the input of the PLC and if the image authentication is perfectly done by the MATLAB and web camera, the PLC starts processing and thus the dc motor starts which is connected to the robotic arm and thus the robotic arm does the operation of holding and releasing the missile. If the image or the pass code is wrong the buzzer sounds and the led glows. Thus it’s a very highly secured process. 5.1 Performance Analysis In our proposed paper work the performance of the complete process is increased using PLC. On the other hand when missile launchers are handled using microcontroller the process becomes somewhat slow as compared to the PLC. Thus when the microcontroller is removed and the PLC is implemented we have analyzed that the time delay is also reduced. If the microcontroller took 2 millisecond for the operation, the PLC can do the same in 0.5 millisecond. Thus there is a reduction of 1.5 millisecond time delay in our proposed paper work. Moreover using PLC we can control the process very efficiently and thus implement SCADA and other supervisory tools for monitoring the complete process. Also we can control at least 23 missile launchers using a single standard PLC. Thus the efficiency of the complete process is increased as a whole which is not possible using microcontroller. And also with the implementation of image authentication and passcode technique in our proposed paper, the complete process became fully secured. 5.2 Comparisons Comparing our proposed paper work with that of the existing robotic controlled missile launchers we have seen that the existing missile launchers which uses microcontroller for processing lacks in efficient controlling of the process and also the monitoring of the complete process is not possible. But in our proposed paper work we used PLC for controlling the robotic arm for releasing and holding of the missile and we found that the controlling is very good for the whole process as compared with the microcontroller. Moreover we can completely monitor the process using SCADA and thus process became much more secured with pass code verification and image authentication technique, which is not possible using microcontroller. Moreover using PLC also reduced the time delay as
  • 4. IJRET: International Journal of Research in Engineering and Technology eISSN: 2319-1163 | pISSN: 2321-7308 _______________________________________________________________________________________ Volume: 03 Issue: 07 | Jul-2014, Available @ http://www.ijret.org 56 compared with the microcontroller which posses some time delay due to limited processing scope. Robotic Arm with Missile Missile Being Released 6. CONCLUSIONS AND FUTURE WORK The Robotic arm controlled in missile launchers using PLC and image authentication technique is carried out in prototype model as discussed. Thus the design is successful and the predicted output is also obtained in a perfect way without any much complications. Thus the robotic arm is functioning on the command of the PLC and the MATLAB and the process is being supervised using SCADA thereby avoiding monitoring and controlling complications.In the present situation of the missile launchers the microcontroller is used. To reduce the drawbacks of the microcontroller and human errors we need to have some kind of high processing device and the PLC is most fit for it. Also for high security and for hacking proof reasons we implemented the image authentication and the pass code technique in our paper so that it proves to be a highly secured missile launcher using PLC and image authentication technique. REFERENCES [1] Ching-Yung Lin, Member, IEEE, and Shih-Fu Chang, Member IEEE “A Robust Image Authentication Method Distinguishing JPEG Compression from Malicious Manipulation”, Vol. No : 23rd , 2010, ISBN 13383, pp. 43-85. [2] S. K. Nayak, Dr. S. B. Thorat, Miss. Jyoti P Dandale “Facial Recognition Technology : An analysis with scope in India”, Vol. No. : 28, 2006, ISBN 19987, pp. 28-43. [3] A semiautonomous sprawl robot based on remote wireless control,HongKai Li; ZhenDong Dai;Inst. of Bio-inspired Struct. &Surface Eng., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing,China, [4] Camera-in-hand robotic system for remote monitoring of plantgrowth in a laboratory , Seelye, M.; Sen Gupta, G.; Seelye,J.; Mukhopadhyay, S.C.; Sch. of Eng. & Adv. Technol. (SEAT),Massey Univ., Palmerston North, New Zealand ,This paper appears in: Instrumentation and Measurement Technology Conference (I2MTC), 2010 IEEE ,Issue Date: 3-6 May 2010 [5] Multifunctional Sensor Networks for Automation, ProcessMonitoring and Robotic Applications , BalakrishnanG.; Hiremath, S.S.; Dept. of Mech. Eng., Indian Inst. of Technol.Madras, Chennai, India,This paper appears in: Robotics inAlpe-Adria-Danube Region (RAAD), 2010 IEEE 19thInternational Workshop on Issue Date: 24-26 June 2010