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INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056
VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072
© 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 783
Interactive Voice Response System for College automation
Ms. Ayesha Mahamadshafi Attar1, Ms. ShrutiSudhir Aitavade2,
Ms. PoonamArjunKalkhambkar3 , Ms. SofiyaRiyaj Nadaf4
Prof.Ms. Anisa B. Shikalgar5
1Department of Computer Science and Engineering,
Student at Dr. J. J. Magdum College of Engineering,
Jaysingpur, India.
attar.ayesha05@gmail.com
2Department of Computer Science and Engineering,
Student at Dr. J. J. Magdum College of Engineering,
Jaysingpur, India.
aitavade.shruti10@gmail.com
3Department of Computer Science and Engineering,
Student at Dr. J. J. Magdum College of Engineering,
Jaysingpur, India.
kalkhambkarpa24.pk@gmail.com
4Department of Computer Science and Engineering,
Student at Dr. J. J. Magdum College of Engineering,
Jaysingpur, India.
Sofiya.nadaf@gmail.com
5Department of Computer Science and Engineering,
Dr. J. J. Magdum College of Engineering, Jaysingpur,
India.
annu.shikalgar@gmail.com
--------------------------------------------------------------------***------------------------------------------------------------------
Abstract:
The interactive voice response (IVR) system serves
as a bridge between people & computer by connecting the
telephone network with instructions. The telephone user
can access the information from anywhere at any time
simply by dialing a specified number and following an
automated instruction when a connection has been
established. The IVR system uses pre-recorded or computer
generated voice responses to provide information in
response to an input from a telephone caller. The input
may be given by means of touch-tone or Dual Tone Multi-
Frequency (DTMF) signal, which is generated when a caller
presses a key of his/her telephone set, and the sequence of
messages to be played is determined dynamically
according to an internal menu structure (maintained
within the IVR application program) and the user input.
The IVR System which will be designed to provide an ideal
platform for the operation of start-ups and existing small
concern. It will be a highly economical & efficient. The IVRS
system which will be designed will consist of simple
components like microcontroller and some basic
application chips interfaced to a PC which will have small
software running in the backend while the other jobs are
performed on the front end.
Now-a-days every institution needs automation.
As a part of college automation, we have to do a
project Interactive voice response system for college
Automation. Our project allows the user to know the
student’s attendance and marks quickly through the
telephone line without the intention of the college
authority. In the hardware side embedded system
has been used. T h is microcontroller controls the whole
hardware. Mobile line is used for communication purpose.
Visual Basic has been used for frontend software
programming. Presentation in the class and outcome of
the university are made reachable to the parents
by our project. It will be very obliging to the parents
to be acquainted with their son’s/daughter’s recital in the
college.
Keywords: IVR, DTMF, speech synthesizer,
Microcontroller,etc.
1. INTRODUCTION
Interactive Voice Response systems (IVRS) allow
callers to interact with the communications system
over the telephone. IVR is used to enable the caller
to retrieve information from a database, enter
information into a database, or both. IVR systems
allow the user to efficiently exchange information,
reducing clerical processing.
IVRS provides a voice response to parents and guide
them to the information they require. The parents
can call up on the toll-free number and obtain any
information regarding student by simply pressing
certain button on his mobile as per the guidance of
voice fed into computer.
An IVRS system talks to callers following a
recorded script. It prompts a response to the caller
and asks him to respond by pressing a touchtone
key, and supplies the caller with information based
on responses made.
INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056
VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072
© 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 784
Pre-recorded information
Common examples are audio movie snippet
previews (e.g. at PVR). Though it is possible to build
these IVR’s through live information from databases
(using text-to-speech engines), one doesn’t get the
voice variations, which are so important for the
moviegoer. Other examples are around procedural
(or “how to”) information dissemination like
Income tax filing procedures, bank account opening
or credit card application procedures, etc. Live
information from databases. These IVR’s get
information from databases, convert to voice, and
speaks it back to the caller. Practically all industry
segments are potential users for this, and examples
include Phone banking (where you call in, dial in
your account number & TPIN and can hear your
account balance on phone) Courier packet
trace(where you call in, dial the AWB number, and
the system tells you whether the packet has been
delivered, if it is in transit, etc.).
Objectives
a. In this project student related information is
inserted by the admin of respective
departments.
b. User should input the student code and
select the appropriate menu.
c. Selected menu is given to the server in terms
of DTMF tone.
d. According to his/her concern system plays
the appropriate message.
2. EXISTING SYSTEM
To know the details of the son/daughter parent
should have to approach to the college. This may be
very time consuming and if the parent is leaving
outside the state then it is very time consuming and
economical.Many business applications employ this
technology including telephone banking, order
placement, caller identification and routing, balance
inquiry, and airline ticket booking. A simple
Voicemail system is different from an IVR in that it
is person to person whereas an IVR is person to
computer.
3. LITERATURE SURVEY
A survey was carried by us was found that the system we are
going to implement is not present in any of the college in
“Shivaji University”.
Literature related to our topic is as follows:
 Interactive voice technology development for
telecommunications applications. A Speech and
AcousticsLaboratory.
 Efficient client-server based implementations
of mobile speech recognition services
Technologies used:
DTMF signals (Entered from the telephone
keypad) and natural language speech recognition
interpret the callers response to voice prompts. Other
technologies include the ability to speak complex and
dynamic information such as an email, news report or
weather information using text-to-speech (TTS). TTS is a
computer generated synthesized speech that is no longer
the robotic voice generally associated with computers.
Real voices create the speech in tiny fragments that are
spliced together (concatenated) before being played to
the caller.
All the three Microcontrollers will have the same internal
architecture, but they differ in the following Aspects.
 8031 has 128 bytes of RAM, two timers and 6
interrupts.
 8051 has 4K ROM, 128 bytes of RAM, two timers and 6
interrupts.
 8052 has 8K ROM, 256 bytes of RAM, three timers and 8
interrupts.
Of the three microcontrollers, 8051 is the most
preferable. Microcontroller supports Both serial and
parallel communication. In the concerned project 8052
microcontroller is used. Here microcontroller used
isAT89S52, which is manufactured by ATMEL
laboratories.
4. METHODOLOGY
4.1 Proposed Work:
When user calls to that number then system will
ask to enter correct student code. After that user must
have to listen the audio track in order to get correct
information. The users enter his/her choice. This dial
tone transmitted to the electronic circuit, which will
correctly identify what user want. Then the particular
information is fetched from the database. This
information is converted to voice message and user is
now able to listen what he/she wants.
There are three modules we are implementing:
1) Attendance: The monthly attendance percentage of a
student is updated in the database. That will helpful for
parents as well as student.
2) Test marks: The College is conducting monthly test
.That test marks are added to the Database.
INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056
VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072
© 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 785
3) Fees: The amount paid by student as well as remaining
amount is also present in database.
4.2 Design Approaches
4.2.1. DFD Level 0:
Figure 4.2.1 DFD Level 0
4.2.2 DFD Level 1:
Figure 4.2.2 DFD Level 1
4.2.3 DFD Level 2:
Figure 4.2.3 DFD Level 2
4.2.4 Block Diagram:
Figure 4.2.4 Block Diagram
4.2.5 Sequence Diagram:
Figure 4.2.5 Sequence diagram
1 DFD Level 0
Request
Reply
Client Server
Database
3.5.2DFD Level 1
client Hardware interface
Software interface
Hardware interface
Database
3.5.5 Sequence Diagram
User call
Connection process
Ask to enter student code
Check for availability
Ask for enter choice
User select the choice
Data receive fromdatabase
User obtain information related to choice
Again ask for choice
Press exit option
User Hardware interface Software interface Database
INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056
VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072
© 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 786
4.2.6 Use Case Diagram:
Figure 4.2.6 Use case diagram
4.2.7 Class Diagram:
Figure 4.2.7 Class Diagram
5. CONCLUSION
In today’s world everything needs to be done from
the comfort of one’s home or office. For this
application is prepared in such a way that they can
be easily accessed through computers. In the same
way our project’s aim is to provide the entire
information to the user at the tip of his fingers. Due
to this project the traditional manual way of handling
the customer queries will be handled in a more
technological and automated way. This type of
system performs operations similar to that of a
human telephone operator.
6. REFERENCES
6.1 Journal Paper
International Journal of Advanced Research in
Computer and Communication Engineering
Vol. 1, Issue 6, August 2012
6.2 Websites
[1]http://en.wikipedia.org/wiki/Interactive voice
response
[2] http://web.cmc.net.in/products/ivrs/ivrs.asp
6.3 Books
1.ThiagarajanVishwanathan/Telecommunication
Switching System Networks/India PRI
Pvt.ltd/Second Edition
2. Marven, “General-Purpose Tone Decoding and
DTMF Detection,” in Theory, Algorithms,
uthor Profile
SuperAdmin
Normaluser
Department
admin
Officeadmin
Login
Add/update fee
Add/delete/update
student record
Add/delete admin
Add/update
attendance
Add/update test mark
Hardware interface
Diagram
login
txtuserName
txtPassword
Superadminlogin
Addnewadmin()
deleteadmin()
deptadminlogin
addatdrecord()
updateatdrecord()
deleteatdrecord()
addtestrecord()
updatetestrecord()
deletetestrecord()
Officeadminlogin
addstdrecord()
deletestdrecord()
updatestdrecord()
addfeerecord()
deletefeerecord()
updatefeerecord()
Ms.Ayesha M. Attar
– Completed 12th in
Nandrekar Junior College in
Jaysingpur .Pursuing BE
degree in Computer Science
from Dr. J.J. Magdum college
of Engineering, Jaysingpur,
Shivaji University, Kolhapur.
Research interests are in the
field of embedded system.
INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056
VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072
© 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 787
Ms.Poonam A.Kalkhambkar
– Completed 12th in
R.R.ShindeJr.College Hadapasar in
Pune. Pursuing BE degree in
Computer Science from Dr. J.J.
Magdum college of Engineering,
Jaysingpur, Shivaji University,
Kolhapur. Research interests are in
the field of networking.
Ms.Sofiya R.Nadaf
– Completed 12th in NandrekarJunior
College in Jaysingpur .Pursuing BE
degree in Computer Science from Dr.
J.J. Magdum college of Engineering,
Jaysingpur, Shivaji University,
Kolhapur. Research interests are in
the field of embedded system.
Prof. (Ms.) A. B. Shikalgar –
Perceived BE degree in Information
Technology from
PadmabhooshanVasantraodadaPatil
Institute of Technology, Budhgaon,
Shivaji University, Kolhapur, and
pursuing ME degree from same
University, Currently working as an
Assistant Professor in the
Department of Computer Science &
Engineering, Dr. J. J. Magdum
College of Engineering, Jaysingpur,
Shivaji University, Kolhapur.
Research interests are in the field of
Cloud Computing and Artificial
Neural Network.
Ms.Shruti S.Aitavade
– Completed 12th in Sangali high school
and Junior .college, Sangli. Pursuing BE
degree in Computer Science from Dr. J.J.
Magdum college of Engineering,
Jaysingpur, Shivaji University,
Kolhapur. Research interests are in the
field of embedded system.

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Interactive Voice Response System for College automation

  • 1. INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056 VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072 © 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 783 Interactive Voice Response System for College automation Ms. Ayesha Mahamadshafi Attar1, Ms. ShrutiSudhir Aitavade2, Ms. PoonamArjunKalkhambkar3 , Ms. SofiyaRiyaj Nadaf4 Prof.Ms. Anisa B. Shikalgar5 1Department of Computer Science and Engineering, Student at Dr. J. J. Magdum College of Engineering, Jaysingpur, India. attar.ayesha05@gmail.com 2Department of Computer Science and Engineering, Student at Dr. J. J. Magdum College of Engineering, Jaysingpur, India. aitavade.shruti10@gmail.com 3Department of Computer Science and Engineering, Student at Dr. J. J. Magdum College of Engineering, Jaysingpur, India. kalkhambkarpa24.pk@gmail.com 4Department of Computer Science and Engineering, Student at Dr. J. J. Magdum College of Engineering, Jaysingpur, India. Sofiya.nadaf@gmail.com 5Department of Computer Science and Engineering, Dr. J. J. Magdum College of Engineering, Jaysingpur, India. annu.shikalgar@gmail.com --------------------------------------------------------------------***------------------------------------------------------------------ Abstract: The interactive voice response (IVR) system serves as a bridge between people & computer by connecting the telephone network with instructions. The telephone user can access the information from anywhere at any time simply by dialing a specified number and following an automated instruction when a connection has been established. The IVR system uses pre-recorded or computer generated voice responses to provide information in response to an input from a telephone caller. The input may be given by means of touch-tone or Dual Tone Multi- Frequency (DTMF) signal, which is generated when a caller presses a key of his/her telephone set, and the sequence of messages to be played is determined dynamically according to an internal menu structure (maintained within the IVR application program) and the user input. The IVR System which will be designed to provide an ideal platform for the operation of start-ups and existing small concern. It will be a highly economical & efficient. The IVRS system which will be designed will consist of simple components like microcontroller and some basic application chips interfaced to a PC which will have small software running in the backend while the other jobs are performed on the front end. Now-a-days every institution needs automation. As a part of college automation, we have to do a project Interactive voice response system for college Automation. Our project allows the user to know the student’s attendance and marks quickly through the telephone line without the intention of the college authority. In the hardware side embedded system has been used. T h is microcontroller controls the whole hardware. Mobile line is used for communication purpose. Visual Basic has been used for frontend software programming. Presentation in the class and outcome of the university are made reachable to the parents by our project. It will be very obliging to the parents to be acquainted with their son’s/daughter’s recital in the college. Keywords: IVR, DTMF, speech synthesizer, Microcontroller,etc. 1. INTRODUCTION Interactive Voice Response systems (IVRS) allow callers to interact with the communications system over the telephone. IVR is used to enable the caller to retrieve information from a database, enter information into a database, or both. IVR systems allow the user to efficiently exchange information, reducing clerical processing. IVRS provides a voice response to parents and guide them to the information they require. The parents can call up on the toll-free number and obtain any information regarding student by simply pressing certain button on his mobile as per the guidance of voice fed into computer. An IVRS system talks to callers following a recorded script. It prompts a response to the caller and asks him to respond by pressing a touchtone key, and supplies the caller with information based on responses made.
  • 2. INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056 VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072 © 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 784 Pre-recorded information Common examples are audio movie snippet previews (e.g. at PVR). Though it is possible to build these IVR’s through live information from databases (using text-to-speech engines), one doesn’t get the voice variations, which are so important for the moviegoer. Other examples are around procedural (or “how to”) information dissemination like Income tax filing procedures, bank account opening or credit card application procedures, etc. Live information from databases. These IVR’s get information from databases, convert to voice, and speaks it back to the caller. Practically all industry segments are potential users for this, and examples include Phone banking (where you call in, dial in your account number & TPIN and can hear your account balance on phone) Courier packet trace(where you call in, dial the AWB number, and the system tells you whether the packet has been delivered, if it is in transit, etc.). Objectives a. In this project student related information is inserted by the admin of respective departments. b. User should input the student code and select the appropriate menu. c. Selected menu is given to the server in terms of DTMF tone. d. According to his/her concern system plays the appropriate message. 2. EXISTING SYSTEM To know the details of the son/daughter parent should have to approach to the college. This may be very time consuming and if the parent is leaving outside the state then it is very time consuming and economical.Many business applications employ this technology including telephone banking, order placement, caller identification and routing, balance inquiry, and airline ticket booking. A simple Voicemail system is different from an IVR in that it is person to person whereas an IVR is person to computer. 3. LITERATURE SURVEY A survey was carried by us was found that the system we are going to implement is not present in any of the college in “Shivaji University”. Literature related to our topic is as follows:  Interactive voice technology development for telecommunications applications. A Speech and AcousticsLaboratory.  Efficient client-server based implementations of mobile speech recognition services Technologies used: DTMF signals (Entered from the telephone keypad) and natural language speech recognition interpret the callers response to voice prompts. Other technologies include the ability to speak complex and dynamic information such as an email, news report or weather information using text-to-speech (TTS). TTS is a computer generated synthesized speech that is no longer the robotic voice generally associated with computers. Real voices create the speech in tiny fragments that are spliced together (concatenated) before being played to the caller. All the three Microcontrollers will have the same internal architecture, but they differ in the following Aspects.  8031 has 128 bytes of RAM, two timers and 6 interrupts.  8051 has 4K ROM, 128 bytes of RAM, two timers and 6 interrupts.  8052 has 8K ROM, 256 bytes of RAM, three timers and 8 interrupts. Of the three microcontrollers, 8051 is the most preferable. Microcontroller supports Both serial and parallel communication. In the concerned project 8052 microcontroller is used. Here microcontroller used isAT89S52, which is manufactured by ATMEL laboratories. 4. METHODOLOGY 4.1 Proposed Work: When user calls to that number then system will ask to enter correct student code. After that user must have to listen the audio track in order to get correct information. The users enter his/her choice. This dial tone transmitted to the electronic circuit, which will correctly identify what user want. Then the particular information is fetched from the database. This information is converted to voice message and user is now able to listen what he/she wants. There are three modules we are implementing: 1) Attendance: The monthly attendance percentage of a student is updated in the database. That will helpful for parents as well as student. 2) Test marks: The College is conducting monthly test .That test marks are added to the Database.
  • 3. INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056 VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072 © 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 785 3) Fees: The amount paid by student as well as remaining amount is also present in database. 4.2 Design Approaches 4.2.1. DFD Level 0: Figure 4.2.1 DFD Level 0 4.2.2 DFD Level 1: Figure 4.2.2 DFD Level 1 4.2.3 DFD Level 2: Figure 4.2.3 DFD Level 2 4.2.4 Block Diagram: Figure 4.2.4 Block Diagram 4.2.5 Sequence Diagram: Figure 4.2.5 Sequence diagram 1 DFD Level 0 Request Reply Client Server Database 3.5.2DFD Level 1 client Hardware interface Software interface Hardware interface Database 3.5.5 Sequence Diagram User call Connection process Ask to enter student code Check for availability Ask for enter choice User select the choice Data receive fromdatabase User obtain information related to choice Again ask for choice Press exit option User Hardware interface Software interface Database
  • 4. INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056 VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072 © 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 786 4.2.6 Use Case Diagram: Figure 4.2.6 Use case diagram 4.2.7 Class Diagram: Figure 4.2.7 Class Diagram 5. CONCLUSION In today’s world everything needs to be done from the comfort of one’s home or office. For this application is prepared in such a way that they can be easily accessed through computers. In the same way our project’s aim is to provide the entire information to the user at the tip of his fingers. Due to this project the traditional manual way of handling the customer queries will be handled in a more technological and automated way. This type of system performs operations similar to that of a human telephone operator. 6. REFERENCES 6.1 Journal Paper International Journal of Advanced Research in Computer and Communication Engineering Vol. 1, Issue 6, August 2012 6.2 Websites [1]http://en.wikipedia.org/wiki/Interactive voice response [2] http://web.cmc.net.in/products/ivrs/ivrs.asp 6.3 Books 1.ThiagarajanVishwanathan/Telecommunication Switching System Networks/India PRI Pvt.ltd/Second Edition 2. Marven, “General-Purpose Tone Decoding and DTMF Detection,” in Theory, Algorithms, uthor Profile SuperAdmin Normaluser Department admin Officeadmin Login Add/update fee Add/delete/update student record Add/delete admin Add/update attendance Add/update test mark Hardware interface Diagram login txtuserName txtPassword Superadminlogin Addnewadmin() deleteadmin() deptadminlogin addatdrecord() updateatdrecord() deleteatdrecord() addtestrecord() updatetestrecord() deletetestrecord() Officeadminlogin addstdrecord() deletestdrecord() updatestdrecord() addfeerecord() deletefeerecord() updatefeerecord() Ms.Ayesha M. Attar – Completed 12th in Nandrekar Junior College in Jaysingpur .Pursuing BE degree in Computer Science from Dr. J.J. Magdum college of Engineering, Jaysingpur, Shivaji University, Kolhapur. Research interests are in the field of embedded system.
  • 5. INTERNATIONAL RESEARCH JOURNAL OF ENGINEERING AND TECHNOLOGY (IRJET) E-ISSN: 2395 -0056 VOLUME: 03 ISSUE: 02 | FEB-2016 WWW.IRJET.NET P-ISSN: 2395-0072 © 2016, IRJET | Impact Factor value: 4.45 | ISO 9001:2008 Certified Journal | Page 787 Ms.Poonam A.Kalkhambkar – Completed 12th in R.R.ShindeJr.College Hadapasar in Pune. Pursuing BE degree in Computer Science from Dr. J.J. Magdum college of Engineering, Jaysingpur, Shivaji University, Kolhapur. Research interests are in the field of networking. Ms.Sofiya R.Nadaf – Completed 12th in NandrekarJunior College in Jaysingpur .Pursuing BE degree in Computer Science from Dr. J.J. Magdum college of Engineering, Jaysingpur, Shivaji University, Kolhapur. Research interests are in the field of embedded system. Prof. (Ms.) A. B. Shikalgar – Perceived BE degree in Information Technology from PadmabhooshanVasantraodadaPatil Institute of Technology, Budhgaon, Shivaji University, Kolhapur, and pursuing ME degree from same University, Currently working as an Assistant Professor in the Department of Computer Science & Engineering, Dr. J. J. Magdum College of Engineering, Jaysingpur, Shivaji University, Kolhapur. Research interests are in the field of Cloud Computing and Artificial Neural Network. Ms.Shruti S.Aitavade – Completed 12th in Sangali high school and Junior .college, Sangli. Pursuing BE degree in Computer Science from Dr. J.J. Magdum college of Engineering, Jaysingpur, Shivaji University, Kolhapur. Research interests are in the field of embedded system.