Real-Time Parametric Analysis for Electric Vehicle Battery Swapping System

Project Code :TEMBMA4052

Objective

To implement a real-time analysis system for electric vehicle battery swapping operations. The system aims to improve battery management and swapping efficiency.

Abstract

The proposed system focuses on the real-time parametric analysis of an Electric Vehicle (EV) battery swapping system using Arduino UNO and IoT technology. The system is developed to monitor and analyze battery performance under different load conditions during operation. An EV/DC battery is connected with variable load conditions using 100W and 200W bulbs to represent normal load and overload scenarios. Voltage and current sensors are used to continuously measure electrical parameters, while a potentiometer is used for load variation and testing purposes. The Arduino UNO acts as the main processing unit to collect sensor data and identify battery operating conditions. A NodeMCU module provides IoT connectivity for remote monitoring of battery parameters. The measured values such as voltage, current, power consumption, and load status are displayed on an LCD display for real-time observation. Relay modules are integrated to control and disconnect loads during abnormal conditions, ensuring battery protection and improving system reliability. The proposed system provides an efficient and low-cost solution for monitoring battery health and performance in EV battery swapping applications.

NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Block Diagram

Specifications

Hardware components:

  • Arduino UNO
  • EV Battery
  • Voltage Sensor
  • Current Sensor
  • Potentiometer
  • NodeMCU
  • 100W Bulb
  • 200W Bulb
  • Relay Module (02)
  • LCD Display
  • Power Supply
  • Adapter
  • Connecting Wires

Software requirements:

  • Arduino IDE
  • Embedded C

Learning Outcomes

  • Arduino pin diagram and architecture
  • How to install Arduino IDE / setup software
  • Setting up and installation procedure for Arduino
  • Introduction to Arduino IDE / development environment
  • Basic programming in Arduino (Embedded C / C / C++)
  • Basics of Embedded C / Arduino programming
  • Basics of IoT platforms
  • Working of power supply
  • About Project Development Life Cycle:
    • Planning and Requirement Gathering (software, tools, hardware components, etc.)
    • Schematic preparation
    • Code development and debugging
    • Hardware development and debugging
    • Development of the project and output testing
  • Practical exposure to:
    • Hardware and software tools
    • Solution providing for real-time problems
    • Working with team/individual
    • Work on creative ideas
  • Skills developed:
    • Project development skills
    • Problem analyzing skills
    • Problem solving skills
    • Creativity and imaginative skills
    • Programming skills
    • Deployment
    • Testing skills
    • Debugging skills
    • Project presentation skills
    • Thesis writing skills

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