Abstract

The crux of this paper is to aid the public transport system in deploying disaster response plans to contaminate, prevent and disinfect their vehicles and services. Transport agencies should explore possible ways of adopting this invention to meet their requirements and adhere to the GOIs rules and regulations. Exemplary aspects of the present disclosure are directed towards the Smart Public Transport Disinfection and Sterilization System. The disinfection and sterilisation process generally comprises Mist-spraying chemicals and illuminating with UV-Light. The paper presented here consists of Thermoelectric-Peltier modules 101, which act as pseudo cooling and heating elements. If motionsensor 107 detects no human presence, then microcontroller 103 turns on UV-Light 105 and opens the hot air outletl0la of Thermoelectric-Peltier modules 101 & Ozone Generator 101c. Simultaneously, Mist-sprayer device 106 sprays the chemical on the surface. Blowers 109 sucks the air from the passenger cabin and makes it flow through HEPA filter 109a and over Thermoelectric-Peltier modules 101. When moisture-sensor 107 detects the dry surface, The ESP32 microcontroller 103stops the hot air went 101a and opens the other side of Thermoelectric Peltier modules 101b. The cold air sent through the vent 101b of Thermoelectric Peltier modules 101 eventually cools the entire cabin in minutes, disinfecting the passenger cabin.

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