Murali Pavan Vavilakolunu
*** ******* **, *** #***, Detroit MI 48202
Mobile: 313-***-****
Email: *********@*****.***
LinkedIn: https://www.linkedin.com/in/pavan8793
Objective
Seeking Full Time Job in a challenging environment that utilizes team-work effort for researching, learning and developing new high-tech products.
Education
•Wayne State University Duration: August 2014 - May 2016
Master of Science in Electrical Engineering
Coursework: Embedded Systems, Smart Sensor Tech, Computer Aided Design of FPGA’s, Solid State Electronics, Computer Networks & Programming, Scalable and Secure Internet Services, Fiber and Integrated Optics and Optical Communication Networks.
GPA: 3.6 / 4.0
•Jawaharlal Nehru Technological University Duration: August 2010 - April 2014
Bachelor of Technology in Electronics and Communication Engineering
Coursework: C Programming, VLSI Design, Embedded Systems, Computer Networks, Electrical Circuits, Micro Processors and Micro Controllers
GPA: 3.75 / 4.0
Technical Skills
•Programming Languages : C, Embedded C, VHDL, Verilog, MatLAB, Basics in Java.
•Protocols : CAN, LIN, Flex Ray, CANoe, CANalyzer, MOST
•Design Tools : Xilinx, Model-Sim, Multi-Sim, Microwind, Simulink, LabVIEW
•Microcontrollers : ATMega1284, ATMega328 and Microprocessors 8085,8086.
•Software Packages : Adobe, MS Office, Wireshark
•Operating Systems : Windows, Linux, Mac.
Academic Projects
1.Path Controlled Bot (Embedded Systems) Duration: 6 weeks
Language: Embedded C
•Path controlled bot is a project in which a robot runs on two servo motors and is controlled in real time using Arduino Uno.
•In our project we controlled the robot in two ways.
o One is using a Bluetooth module on the base station, wirelessly using an application in the mobile phone.
oIn the other mode, the robot is controlled by interfacing a laptop device to the robot using a serial port connection.
• Mapping of the on screen routes and the real world directions is done in Microsoft Virtual Studio.
Tools Used: Microsoft Visual Studio, Arduino IDE, CANoe
2.Retina Implant Fabrication Duration: 8 weeks
•Designed and fabricated a ‘retinal implant’ which is a biomedical implant technology currently being developed by a number of private companies and research institutions worldwide.
•The sub-retinal implant consists of silicon wafer containing light sensitive micro-photodiodes, which generates signals directly from incoming light. Resultant current is injected into retina cells by the micro-electrodes.
•The implant is meant to partially restore useful vision to people who have lost their vision due to degenerative eye conditions.
3.FPGA Implementation of FFT Algorithm for Mobile WiMAX Duration: 2 weeks
Language: VHDL
•Developed the Field Programmable Gate Array Implementation of the Fast Fourier Transform Algorithm for Mobile WiMAX (Worldwide Interoperability for Microwave Access)
•OFDMA Technology is implemented.
•Utilization, Performance metric testing were done using Xilinx ModelSim.
Tools Used: Xilinx
4.A New VLSI Architecture of Parallel Multiplier-Accumulator Duration: 6 weeks
•Develop a new VLSI Architecture of Parallel Multiplier-Accumulator based on the Radix-2 Modified Booth Algorithm.
•Using this architecture both the multiplication and the accumulation in binary calculations can be done in a single step.
•Used to speed-up the binary calculations performed.
Tools Used: Xilinx
5.Multi-Threaded Proxy Server Duration: 3 weeks
Language: Python
•Objective was to create a Multi-Threaded Proxy Server which understands the GET-requests and responds.
•It is able to handle all kinds of objects - not just HTML pages, but also images.
•Caching and Multi-threading supported.
•The proxy server will forward the client’s request to the web server. The web server will then generate a response message and deliver it to the proxy server, which in turn sends it to the client.
Tools Used: Python IDE, DOS
6.Chat Application Duration: 3 weeks
Language: Python
•In order to learn python, I implemented a basic Chat Application.
•TCP/IP Internet Relay Chat, is a network application to transfer textual messages over network.
•It was implemented in a local network, using both TCP and UDP protocols.
•This project includes socket-programming, use of TCP/IP protocol for server-client connection.
Tools Used: Wire-Shark
Other Projects
1.4 Port Router for Network on Chip
•Designed and verified a 4 port router for Network on Chip.
•In this project we implement a parallel router which can support five requests simultaneously.
•Thus the speed of communication can be increased after reducing communication bottleneck by using simplest routing mechanism, flow mechanism and decoding logic.
Leadership Skills & Activities
•College Representative for a NGO named ‘Social Cause’ during my under-graduation.
•Attended several workshops on Ethical Hacking & Cyber Security held at Indian Institute of Technology(IIT), Bombay.
•Attended ‘Hands-On’ workshops on PCB Designing, and designed a small PCB as a part of it.
•Event organizer for University's Technological Cultural Fest at Sree Dattha Institute of Engineering and Science.
•Volunteered many environmental based causes and activities.
Certifications
Coursera Certification in - HTML, CSS and JavaScript
Coursera Certification in - Front-End Web UI Frameworks and Tools
Coursera Certification in(Present) - Front-End JavaScript Frameworks: AngularJS
Visa Type
Student Visa (F1)