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Engineer Software

Location:
Southfield, MI
Salary:
70000 USD
Posted:
February 13, 2017

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Resume:

Nithya Sannareddy *****, Grodan Dr, Apt ***, Southfield, Michigan 48033

+1-814-***-****

Gmail: ****************@*****.***

OBJECTIVE:

My Passion towards Automotive drives me for challenging and growth oriented career opportunity as engineer where my skills and experience can be enhanced while contributing to growth of the organization.

EDUCATION:

Master’s in Electrical and Computer Engineering May2016

Gannon University, Erie, PA

Bachelor’s in Electrical and Electronics Engineering May2014

Sree Vidyanikethan Engineering College, Tirupathi, India

TECHNICAL SKILLS:

Programing Languages: C, C++, Embedded C, UI (User Interface).

Operating System and Networking: Windows XP/7/8/8.1/10, MAC

Software: MATlab, Simulink, Dspace Hardware in loop (HIL), LT-Spice, Electric Software, Electric Power World, P-Spice, LabVolt

Web Developing Skills: HTML5, CSS3, Bootstrap, JavaScript, JQuery, NodeJs, AngularJS.

RELATED COURSE WORK:

Microprocessor, Microcontroller, Embedded C Programing, VLSI, VHDL.

Digital Signal Processing and Digital Image Processing, PDC.

Electric drives, Advance engineering analysis, Power system analysis.

WORK EXPERIENCE:

Corning, NY

Role: Embedded Software Engineer May 2016 – Dec 2016

Involved in the development of Software requirements and functional specifications for new Advanced Driver Assistance.

Bosch mainly brought CAN communication to the automobile industry.

Involved in the design of Advanced Driver Assistance systems using modeling tools such as MATLAB, Simulink.

Developed software in C following C++ coding guidelines.

Played key role in ensuring the timely deliverables of hardware, software & calibration inputs associated with the HIL(Hardware-In-Loop) testing.

Involved in developing software interfacing modules for automotive communication protocols such as CAN, LIN and FlexRay.

Extensively used CANalyser and CANdb.

Graduate Assistant, Gannon University Jan 2016 – May 2016

Assisted students to perform electrical experiments by using LabVolt, PowerWorld simulation tool, MATLAB and Simulink.

Assisted the professor in projects and also worked as G.A. for Power System course.

Designed Simulation circuits on LT spice.

Developed LabVIEW programs for testing circuit boards using NI's data acquisition system.

RESEARCH PROJECTS:

Airbag Deployment Logic and Side–Impact Sensing Simulation Sep 2015 – Dec 2015

Improved the occupant safety using airbags.

Subjected to various collision simulations like car to car in different angles and rear lateral pole and side pole results have been captured.

Calibrated the airbags much earlier than the integration which decreases the fatality rates corresponding from side impacts.

Automated Control System for Vehicle Emissions Monitoring Nov 2012 – Apr 2012

This project aims at using the semi-conductor sensors at the emission outlets of vehicles which detects the level of pollutants (CO2) and indicates this level with a meter.

When the emission level shoots beyond the threshold level, the driver is notified that the limit has been breached.

Designed embedded real-time assembler-based firmware using 8-bit microcontroller which monitors and controls the execution of whole process.

Software written using Embedded C.

Participated in the full development cycle from design, coding, verification, and documentation.

ACADAMIC PROJECTS:

Image Denoising Using Singular Decomposition Jan 2015 to May 2015

In this project, I advise a modest de-noising algorithm which is done by expanding the parallel image and the low-rank control.

Here the system organizes parallel image coverings by the wedge corresponding system.

The individual collection of parallel coverings remains factorized by singular value decomposition (SVD). Finally, the first de-noised copy remains created through collecting complete handled covers.

For the least -rank Circumstances SVD can offer the finest energy. This different SVD based techniques has least rank calculation in SVD field. This escapes the knowledge of limited base for indicating image copies. Final grades determine the planned technique that efficiently decreases sound.

Control of Vehicle Suspension using PI and PID Controller Aug 2015 to Dec 2015

Calculated the gain values (Kp, Ki, kd) and transfer function using vehicle suspension plant

Designed PI and PID controller to control the vibrations in vehicle in closed loop response

Tested the designed system using MATLAB and Simulink in both open and closed loop

Calibration Of Microphone Using Lab View Jan 2014 to May 201

Place: Satish Dhawan Space Center Shar (DEPARTMENT OF SPACE)

In this project the parameters are measured like Thrust, pressure Strain, Temperature, vibration and Sound level.

The rocket motor firing sound reveals quality of the rocket firing during static tests.

For rocket motor sound recording purpose normal condenser microphone is used for portion distance and direction.

An acoustic attenuation chamber is suggested where the dynamic microphone will be housed instantly calibrated acoustic attenuator.

The aim of the project is to calibrate the microphone using hardware interface and using LabView software.

Instrumentation, Data Acquisition and Processing Oct 2012 to Dec 2012

(In-plant Training)

Place: Satish dhawan space center shar (DEPARTMENT OF SPACE)

I got acquainted in the different types of transducers and signal conditioners.

Data Acquisition systems used for static testing of rocket motors.

Control systems used for environmental testing of sub-systems of launch vehicles and space crafts.

Hindustan Coca-Cola Beverages Private Limited June 2012 to July 2012

(In-plant Training)

Here, we have studied about AUTOMATION is used in CSD PET LINE in the Company which produce beverages.

Here, various steps involved in manufacturing of PET bottles, filling the bottles, labelling them and packing the final product and studied about how all the processes are automated is made.

CMX series plant is a state of art design for preparation of beverage with desired degree of accuracy on mixing of water and syrup.



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