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https://github.com/dilipraman/ev_intern

Intern Project&learning @APSIS SOLUTIONS
https://github.com/dilipraman/ev_intern

electric-vehicles matlab-script simulink

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Intern Project&learning @APSIS SOLUTIONS

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# ⚡ Internship Project @ Apsis Solutions (EV Domain)

This repository showcases the work completed during my **Internship at Apsis Solutions** from **April 1 to May 31, 2023**. The internship focused on the **Electric Vehicle (EV) domain**, where I gained hands-on experience in:

- Electric vehicle architecture & modeling
- MATLAB & Simulink simulation
- Hybrid Electric Vehicles (HEVs)
- EV acceleration analysis
- DC motor modeling and control

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## 🧠 Skills Gained

- Fundamentals of EV working modules
- MATLAB programming & Simulink block modeling
- Dynamic vehicle simulation & torque-speed analysis
- Control systems and motor modeling
- Practical implementation of theoretical models

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## 📂 Projects Completed

### 1️⃣ **GM EV1 – Acceleration Modelling Using MATLAB**

📄 [`REPORTGMEV1.pdf`](./REPORTGMEV1.pdf)

**Overview:**
Developed a dynamic simulation model of the historic **GM EV1 electric vehicle**, analyzing acceleration based on torque, vehicle dynamics, and motor characteristics.

**Key Aspects:**
- Modeled rolling resistance, aerodynamic drag, hill climbing force, and motor torque
- Developed and simulated MATLAB code for acceleration phases
- Validated performance with known GM EV1 real-world data
- Velocity-time graph and simulation plotted in MATLAB

> **Tools Used**: MATLAB (Script-Based Modelling)

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### 2️⃣ **DC Motor Modeling using MATLAB/Simulink**

📄 [`REPORTP2.pdf`](./REPORTP2.pdf)

**Overview:**
Created an open-loop control simulation model for a DC motor using both MATLAB and Simulink. Modeled transient response and analyzed torque-speed behavior.

**Key Aspects:**
- Used motor equations to derive system transfer function
- Built and simulated the model in Simulink using standard library blocks
- Performed step-response analysis and linear system identification
- Observed performance through dynamic plots and scopes

> **Tools Used**: MATLAB, Simulink (Graphical Modelling)

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## 📌 Learnings & Outcomes

- Gained real-world exposure to **electric drivetrain simulation**
- Strengthened core concepts of **vehicle dynamics and motor control**
- Understood modeling of **EV systems using MATLAB/Simulink**
- Improved documentation and technical writing skills
- Practiced problem-solving using simulation and mathematical modelling

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## 📜 License

This repository is for educational and non-commercial purposes only.