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Nakkaraju Abhilash

Electric Vehicle Engineer • a****************@gmail.com • +91*******557 • linkedin.com/••••• • drivetube.ai/•••••

Professional Summary

Electric Vehicle Engineer with 0-1 years of experience designing and prototyping battery monitoring systems and power-electronics models for EV applications. Hands-on with ESP32-based IoT telemetry, MATLAB/Simulink simulation, circuit design, and BMS concepts. Seeking an entry-level role in EV systems, battery engineering, or embedded/automation teams to apply simulation and embedded prototyping skills toward reliable EV powertrain and battery solutions.

Technical Skills

Programming Language: MATLAB,Simulink,Simulation Software,Sensor Interfacing,Wi-Fi Communication,IoT,Circuit Design,Electrical Measurements,Power Electronics,Battery Management Systems,Electric Vehicle Technology,DC-DC Converters,V2G,G2V
Data Analysis & Visualization: Data Analysis
Project Management & Collaboration: MS Office
Microcontrollers & Processors: ESP32,Arduino
Pharmaceutical Manufacturing & Operations: Equipment Maintenance

Work Experience

MATLAB & Simulink Internship
MATLAB & Simulink Intern
June 2023 – January 2024
Internship focused on electrical machine and control-system simulation using MATLAB and Simulink for academic and lab-scale projects.
Tech Stack: MATLAB, Simulink, Simulation Software, Data Analysis
  • Developed and validated Simulink models for electrical machines and control systems to verify control strategies and accelerate lab prototype iteration using MATLAB/Simulink.
  • Built simulation testbenches and executed parameter sweeps in MATLAB to evaluate motor performance and controller stability across operating conditions.
  • Created reusable Simulink block libraries for DC-DC converters and power-electronics components, improving model reuse for subsequent projects.
  • Performed data processing and visualization of simulation outputs to extract performance metrics and present technical findings to supervisors.
  • Prepared simulation model handoff documentation and model configuration files to support future hardware integration and bench testing.
  • Contributed to technical reports and presentations summarizing modeling assumptions, results, and recommended next steps for control refinement.
Electric Vehicle Internship
Electric Vehicle Intern
May 2024 – June 2024
Short-term EV-focused internship covering EV components, battery models, and power electronic topologies to support design and prototyping activities.
Tech Stack: Circuit Design, Battery Management Systems, Power Electronics, Electrical Measurements
  • Studied EV powertrain architectures and battery module configurations to map component functions and interface requirements across vehicle types.
  • Assisted in designing basic DC-DC converter and bidirectional power-transfer topologies using power-electronics principles and schematic drafting.
  • Analyzed trade-offs between battery chemistries and module designs to support component selection guidance for different EV use-cases.
  • Prepared schematic diagrams, component lists, and test procedure drafts to support bench validation of battery subsystems and converter prototypes.
  • Collaborated with engineering mentors to document topology options, safety considerations, and expected performance characteristics for review.
  • Summarized findings in concise technical notes to inform subsequent prototype development and integration activities.

Projects

IoT-Based Battery Monitoring System for Electric Vehicle
Tools Used: ESP32, Sensor Interfacing, Voltage Sensing, Current Sensing, Temperature Sensing, Wi-Fi Communication, IoT, Data Analysis
  • Designed and implemented an ESP32-based telemetry system to capture real-time battery voltage, current, and temperature for EV battery packs.
  • Integrated voltage, current, and temperature sensors with the microcontroller, implementing calibration routines and signal conditioning.
  • Implemented Wi‑Fi-based data transmission and a lightweight telemetry protocol to enable remote monitoring of battery parameters.
  • Developed threshold-based alerts for abnormal battery conditions to support safety monitoring and preventive maintenance.
  • Analyzed collected telemetry data to assess battery health indicators and inform maintenance recommendations.
Bidirectional Power Transfer in Electric Vehicle
Tools Used: MATLAB, Simulink, Bidirectional Power Converters, Buck, Boost Converter Design, Data Analysis
  • Modeled bidirectional power transfer between vehicle and grid (V2G/G2V) using Simulink to evaluate converter topologies and control approaches.
  • Designed and simulated buck/boost and bidirectional converter configurations to study power flow, efficiency, and battery interaction under different modes.
  • Analyzed simulation results to quantify effects of converter switching strategies on battery charging/discharging behavior and system stability.
  • Visualized power transfer and operational states across scenarios to communicate trade-offs and topology performance to peers.

Education

R.V.R & J. C College of Engineering
Bachelor of Technology, Electrical & Electronics Engineering • June 2022 – May 2026
Sri Chaitanya Junior College
Intermediate (MPC) • June 2020 – March 2022
ZP High School
Secondary School Certificate (SSC) • June 2019 – April 2020

Certifications

Introduction to Internet of Things
Smart Grid Technologies

Achievements

  • Participated and volunteered in Innovation, Design, and Entrepreneurship (IDE) Bootcamp — 2024
  • Excellency Award for conducting a national-level technical quiz — 2023

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