DESIGN AND IMPLEMENTATION OF CORONAVIRUS TRACKING SYSTEM FOR INFECTED PATIENCE
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DESIGN AND IMPLEMENTATION OF CORONAVIRUS TRACKING SYSTEM FOR INFECTED PATIENCE
Chapter One: Introduction and Background to the Study.
A tracking system is highly significant in today’s society; it can be used for navigation, monitoring, and tracking of people with COVID-19.
However, with the rapid advancement of technology, automated tracking systems are now being employed in a number of ways to track and display the whereabouts of humans and non-objects in real time.
A coronavirus tracking system based on GPS/GSM/GPRS technology and a Smartphone application provides a more efficient and cost-effective option in the fight against the coronavirus pandemic in Nigeria and around the world.
The current work focuses on the design and development of a coronavirus tracking and monitoring system for afflicted individuals. The system primarily measures movement parameters such as position and speed.
The ability to reliably detect the location and status of a covid-19 patient is the primary purpose of automotive trajectory monitoring systems, which is why this project exists.
The objective of this project is to design and implement a coronavirus tracking system for infected patients.
The project’s objectives are:
To receive the real-time covid-19 tracker via smart
To establish interfaces with peripherals for collecting data (location and speed) and implementing data connections to convey that data to the MCS.
To access data from the COVI-19 patience tracker, use the MCS app on an Android device.
The GPS Module will be utilised to receive the children’s coordinates from satellites, among other crucial information, and then transmit their location and speed to the LinkIt-ONE board. The speed will be estimated using GPS coordinates for two points.
The Link-It ONE development board will be used to process and send data from the GPS module to the GSM modem. The GSM/GPRS module or Wi-Fi antenna will be utilised to transfer the updated device database to the server
and the user will access it via the MCS application on their smart phone. The Android application (MCS) on a smartphone will reveal the precise location and speed of the target.
Organisation of the Study
Chapter two provides a theoretical backdrop and related works in the realm of tracking systems utilising Android.
Chapter 3 discusses the hardware design process and how to visualise it in a software programme.
The fourth chapter details the project’s simulation and implementation findings.
Chapter Five describes the conclusion and future possibilities.
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