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RESUME
Divakar Pal                                                                                   

 Mobile:+91-9900258263               
A-75, Sector-5, 16th Main,                                                             E-mail-divakar@gmail.com
2nd Cross, Rajaji Nagar,                                                                 divakar@gmail.com
Bangalore-10.

OBJECTIVE:
Seeking a position to utilize my skills and abilities in the Information Technology Industry that offers professional growth while being resourceful, innovative and flexible.

COMPUTER KNOWLEDGE:

Language: C, C++, Core JAVA and Data Structure in C.
Environments: - MS-DOS, WIN 98/2K, Turbo C/C++ IDE.
Microprocessors and Microcontrollers: - Hitachi 3664N, Intel 8085, 8088.
Embedded Tools and Utilities: - Hitachi Embedded Workshop (HEW), Hitachi Debugging Interface
[H8S, H8 300], Flash Development Toolkit.

SOFTWARE TRAINING:

1.  Undergone SUN Certified Core Java from SSI, Bhubaneswar.
2.  Extensive C and C++ Training from APTECH, Bhubaneswar.
            
ACADEMIC TRAINING: 

1. Production Department, Bharat Heavy Electrical Ltd. (BHEL), Ram Chandra
    Puram, Hyderabad.
    Duration: - 15th May 2005 to 14th June 2005.
     Reference: Mr. P.Phalgun Rao (AGM (Production Dept.) BHEL, Hyderabad)
2.  State Load Dispatch Center and Field Work, GRIDCO, Mancheswar, Bhubaneswar
    Duration: - 4th May 2004 to 4th June 2004.
     Reference: S.Das (S.D.O (SLDC) GRIDCO, Mancheswar, Bhubaneswar)

EDUCATIONAL QUALIFICATION:
Examination
Institution &Board/University

Year of Passing
% Marks
B.E. (Electrical Engg.)
Ajay Binay Institute of Technology, Cuttack
/Utkal University, Orissa.
2006
65.01
(Avg. up to 7th Semester),
8th Semester Result Awaited.
+2 Science
Maharishi College of Natural Law, Bhubaneswar/Council of Higher Secondary Education, Orissa.
2002
54.01
High School Certificate Exam.
Capital High School, Bhubaneswar/ Board of Secondary Education. Orissa.
2000
70.08


CURRENT PROJECT

DRIVE BY WIRE DC SERVO MOTOR CONTROLLER
Duration: Ongoing
Description: One of the major parts of any robot is an electrical motor with an efficient controller. Efficient controller indicates the real time response with minimum software over head and optimized hardware. As a project, Drive By Wire DC Servo Motor Controller involves effective software architecture & coding and usage of maximum micro controller hardware peripherals. The control module is meant to control a DC servo-motor with a closed loop control and gives 4 universal profiles. The output of the module is PWM signal and digital output to give flexibility in interfacing with the power driver. The Module communicates with the host through serial RS232C duplex communication standard. The module is provided with a boot loader to upgrade the software of the controller. The hardware is capable of reporting of diagnostics if a motor fault occurs and the data can be retrieved by the user interface. A 16x2 LCD interface and a 4x4 hex keyboard comprises of the stand-alone user interface.

The technical focus during the execution of the project is based on the optimum hardware and minimum software. This project also helps understanding and mapping the requirement of bigger motor control application in the industry.

And the professional focus is to meet the dead line and learn from the technical problems faced. In my opinion, these two are the most appreciated industry demand in the competitive world. 
Reference: Gyanaranjan Jena (Technical Lead, DELPHI.)

ACADEMIC PROJECTS

#1.     HARMONIC ANALISYS
Duration: 4 Months
Team Size: 4 Members and Project Guide
Description: As a major project in academic curriculum, this deals with the analysis of the signal spectrum of sinusoidal wave forms and the harmonics present in them. In this project, we used Fourier series and transforms to analyze continuous-time and discrete-time signals and systems. The Fourier representations of signals involve the decomposition of the signal in terms of complex exponential functions. These decompositions are very important in the analysis of Linear- Time-Invariant (LTI) systems. The response of an LTI system to a complex exponential input is a complex exponential of the same frequency. Only the amplitude and phase of the input signal are changed. Therefore, studying the frequency response of a LTI system gives complete insight into its behavior.

The technical focus in this project gives a brief insight and analysis of the sinusoidal wave transmission and its reconstruction from different harmonics at receiving end. This mathematical analysis can be used in signal transmission system to identify and filter harmonic noises and increasing band width. The experimental set up for this analysis is also modeled in MatLab by our team.

The project was completed successfully and analytical data for a 50Hz AC signal is presented in the Technical Symposium conducted by IEEE Student Chapter at Utkal University, Bhubaneswar.
Reference:  Prof. (Dr.), B.B. Sahoo (M.S-Electrical, USA), H.O.D (Elect), ABIT.

 #2.    LIGHT DEPENDENT APPLIANCES SWITCHING SYSTEM
Duration: 4 Months
Team Size: 3 Members and Project Guide
Description: The project is mainly focused to control the power dissipation of an electric appliance depending on the light. The benefits drawn out of this project are to save the power in street lighting system or stadium lighting system etc. The circuit consists of a light sensitive device called as LDR (light dependent resistor), a solid state ac power regulator (TRIAC) and a timer (commonly used 555) circuit to control the firing angle of TRIAC. The resistance of the LDR depends on the amount of intensity of light falling on it. The resistance in the timer circuit also varies as the LDR is the charging resistance in the 555 timer circuit, hence produces proportional frequency. This frequency is used to control the firing angle of the above mentioned TRIAC and thus power supplied to the appliances is varied accordingly.

“This project demonstrates automation of energy spending mean while helping to save the energy in effective way” – Prof. R.K Arrora, Head of Elect Engg, NIT Kurukshetra, in a guest lecture in our college.

This project is completed successfully and the results of power saving factor is appreciated in Inter-College Tech Fest, September 2005, conducted by NIT Rourkela.
Reference:  Prof. (Dr.), B.B. Sahoo (M.S -Electrical, USA), H.O.D (Elect), ABIT.
SEMINAR PRESENTED

OCEAN THERMAL ENERGY CONVERSION (OTEC)
Description: OTEC, or Ocean Thermal Energy Conversion, is an echo friendly energy conversion technology that converts solar heat radiation to electric power. OTEC systems use the ocean's natural thermal gradient. The fact is that the ocean's layers of water have different temperatures through out the depth. And this principle is applied to drive a power-producing cycle. As long as the temperature between the warm surface water and the cold deep water differs by about 20°C (36°F), an OTEC system can produce a significant amount of power. The oceans are thus a vast renewable resource, with the potential to help us produce millions of watts of electric power. This potential is estimated to be about 1013 watts of base load power generation per year, according to some experts and journals.

This presentation bagged First Prize in the category of “Innovative Ideas in Energy Conservation Techniques”, mentored by IEEE Student Chapter and conducted by Institute of Physics, Bhubaneswar.  
Reference:  Prof. (Dr.), S.P.Rath (M.Tech.-Electrical, IIT-Roorkee), Prof. Elect Engg. ABIT.

STRENGTH:

Hardworking, Self Motivated, Quick Decision Maker, Dedicated to Job, Focused, Proactive.

ACHIEVEMENTS:

  • Stood First in Inter College Debate Competition.
      • Topic - Prostitution should be legalized in India.
  • Participated in various Technical Forums organized by Institute of Physics, Bhubaneswar and presented different white papers and projects.
  • Participated in various Technical Forums organized by IEEE and presented different technical papers and projects.
  • Participated in school level debate and technical modeling competitions and received awards and applauds.
PERSONAL DETAILS:

DATE OF BIRTH         :         1st  July, 1985.
SEX                             :           Male.
MARITAL STATUS      :           Single.
NATIONALITY         :         Indian.
PASSPORT NO         :         Applied.
HOBBIES                    :           Reading Technical Magazines, Internet Surfing,
Watching F1 Race, Making new Friends and Traveling.

                                                                                                                                                                Divakar Pal


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