Collision Warning With Auto Brake & Complete High Voltage Disconnect During Crash

Also Available Domains WSN|Embedded applications

Project Code :TEMBRE19_75

Abstract

A safety system in electric vehicle (EV) activates to protect the occupant during the vehicle accident. It consists of crash sensors to detect the impact of the vehicle accident. Crash sensor activates the switch present in the high voltage battery box. The switch controls the high voltage (HV) battery main contactors and disconnects the HV battery supply. Crash zones to be defined and crash sensor to be calibrated for unintentional activation of the crash sensor. Response time should be fast enough to cut off the High voltage battery supply before the high voltage components like PDB and high voltage cable gets crushed. This paper will brief about possible collision warning with auto brake & high voltage components crash zones, vehicle safety system architecture in EV. Collision warning with auto brake, where the area in front of the vehicle is continuously monitored with the help of long-range radar and a forward- sensing wide-angle camera can fit on the cabin. In addition to monitoring front of the vehicle, system monitors 360 degree of the vehicle by using impact/crash sensor. A warning and brake support will be provided for collisions with other vehicles, both moving and stationary. Additionally, if the driver does not intervene inspite of the warning and the possible collision is judged to be unavoidable, intervention braking will be automatically applied to slow down the vehicle. The entire system will be controlled and monitored by EV controller. This aims at reducing impact speeds and thus the risk for consequences. Apart from the above safety, incase if the crash happened unavoidably, the complete HV systems will be disconnected automatically to protect the harm for the driver & passenger. EV controller monitors the high voltage, in case of any leakage, HV supply from the battery is shut down

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

Block Diagram

arduino microcontroller,crash sensor,lcd

Specifications

Arduino microcontroller,Motor ,Crash sensor,Power supply,Switch ,LCD,Arduino IDE,Embedded C.

Learning Outcomes

  • Learning outcomes:
  • Arduino Pin diagram and Architecture
  • How to install Arduino IDE Software
  • Setting up and Installation procedures for Arduino IDE
  • Introduction to Arduino IDE
  • Commands in Embedded C
  • How to install Libraries?
  • Basic coding in Embedded C
  • Working of DC motor
  • Working of Crash  Sensor
  • How to interface Switch with Arduino
  • Working of LCD
  • How to interface LCD with Arduino?
  • About Project Development Life Cycle:
    • Planning and Requirement Gathering (software’s, 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.
  • Project development Skills
    • Problem analyzing skills
    • Problem solving skills
    • Creativity and imaginary skills
    • Programming skills
    • Deployment
    • Testing skills
    • Debugging skills
    • Project presentation skills
    • Thesis writing skills 

Demo Video

mail-banner
call-banner
contact-banner
Request Video