Smart Temperature Monitoring System with GPS Integration for Pharmaceutical Safety

Project Code :TEMBMA3749

Objective

The main objective is to develop a low-cost Arduino-based system for real-time temperature monitoring with GPS and mobile app support. It aims to ensure pharmaceutical safety by sending alerts when temperatures cross set limits.

Abstract

Maintaining proper environmental conditions is critical for ensuring the safety, effectiveness, and quality of pharmaceutical products during storage and transportation. This project presents a Smart Temperature Monitoring System with GPS Integration for Pharmaceutical Safety using Arduino as the main controller. The system integrates an LCD display, DHT11 temperature and humidity sensor, MQ135 air quality sensor, gas sensor, fire sensor, relay module, DC water pump, GSM module, and GPS module for continuous environmental monitoring and emergency response. The DHT11 sensor monitors temperature and humidity levels, while the MQ135 and gas sensors detect harmful gases and air quality variations. The fire sensor identifies fire hazards that may compromise pharmaceutical storage conditions. The monitored data is displayed on the LCD screen in real time. When abnormal temperature, gas leakage, or fire conditions are detected, the relay activates the DC water pump for protective action, while the GSM module sends alert messages to authorized personnel. The GPS module provides real-time location information, enabling rapid response and tracking of pharmaceutical assets. The proposed system offers a low-cost, intelligent, and reliable solution for pharmaceutical safety monitoring and management.

Keywords: Arduino, Pharmaceutical Safety, Temperature Monitoring, DHT11, GPS, GSM, Fire Detection, Gas Detection, Smart Monitoring System.

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
  • LCD
  • DHT11 Sensor
  • MQ135 Sensor
  • Gas Sensor
  • Fire Sensor
  • Relay
  • DC Water Pump
  • GSM Module
  • GPS Module
  • connectors-10

 Software requirements:

  • Arduino IDE
  • Embedded C

Learning Outcomes

  • Raspberry pi pin diagram and architecture
  • How to install Raspberrypi / setup software
  • Setting up and installation procedure for Raspberrypi
  • Introduction to Raspberrypi environment / development setup
  • Basic programming in Raspberrypi (Python)
  • Basics of Embedded programming using Raspberrypi
  • 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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