Authorized Covid-19 Entry using Face Mask Detection & Automatic Sanitizer Dispenses & UV Sanitization

Also Available Domains Image Processing

Project Code :TEMBMA2866

Objective

The main objective of this project is to save the lives of people from sick or covid-19 infected patients and hence to reduce the spread of covid-19 by using this system.

Abstract

Efficient strategies to contain the coronavirus disease 2019 (COVID-19) pandemic are peremptory to relieve the negatively impacted public health and global economy, with the full scope yet to unfold. In the absence of highly effective drugs, vaccines, and abundant medical resources, many measures are used to manage the infection rate and avoid exhausting limited hospital resources. Wearing masks is among the non-pharmaceutical intervention (NPI) measures that could be effectively implemented at a minimum cost and without dramatically disrupting social practices. The mask-wearing guidelines vary significantly across countries. Regardless of the debates in the medical community and the global mask production shortage, more countries and regions are moving forward with recommendations or mandates to wear masks in public.

Our study combines mathematical modeling and existing scientific evidence to evaluate the potential impact of the utilization of normal medical masks in public to combat the COVID-19 pandemic. We consider three key factors that contribute to the effectiveness of wearing a quality mask in reducing the transmission risk, including the mask aerosol reduction rate, mask population coverage, and mask availability. We first simulate the impact of these three factors on the virus reproduction number and infection attack rate in a general population. Using the intervened viral transmission route by wearing a mask, we further model the impact of mask-wearing on the epidemic curve with increasing mask awareness and availability.

Our study indicates that wearing a face mask can be effectively combined with social distancing to flatten the epidemic curve. Wearing a mask presents a rational way to implement as an NPI to combat COVID-19. We recognize our study provides a projection based only on currently available data and estimates potential probabilities. As such, our model warrants further validation studies.

Keywords: face mask detection, AI, Raspberry Pi.

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 Requirements:

  • Raspberry Pi
  • Micro SD card
  • Camera
  • 5V Adapter
  • L293D Motor driver
  • Dc motor
  • Connecting wires

Software Requirements:

  • NOOBS Software
  • Python3 IDE
  • VNC Viewer
  • Fritzing

Learning Outcomes

  • Raspberry Pi Pin diagram and Architecture
  • How to install NOOBS Software
  • Setting up and Installation procedures for Raspberry Pi
  • How to connect Raspberry Pi through VNC viewer?
  • Introduction to Python3 IDE
  • Commands in Python
  • Basic coding in Python
  • How to install Libraries for camera interfacing with Raspberry Pi?
  • How to interface camera with Raspberry Pi?
  • How to interface dc motor and the L293D motor driver with Raspberry Pi?
  • 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

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