Multi-sensor Integrated System For Wireless Monitoring Of Greenhouse Environment

Also Available Domains WSN|ARM7

Project Code :TEMBRE19_333

Abstract

A green house is where plants such as flowers and vegetables are grown. Greenhouses warm-up during the day when sun-rays penetrates through it, which heats the plant, soil and structure. Green houses help to protect crops from many diseases, particularly those that are soil borne and splash onto plants in the rain. Greenhouse effect is a natural phenomenon and beneficial to human being. Numerous farmers fail to get good profits from the greenhouse crops for the reason that they can’t manage two essential factors, which determines plant growth as well as productivity. Green house temperature should not go below a certain degree, High humidity can result to crop transpiration, condensation of water vapor on various greenhouse surfaces, and water evaporation from the humid soil. To overcome such challenges, this greenhouse monitoring and control system comes to rescue. This project demonstrates the design and implementation of a wireless sensor networks for greenhouse environment monitoring and controlling. This greenhouse control system is powered by Arduino it consists of temperature sensor, light sensor, soil moisture sensor, LDR sensor, LCD display module, 12v DC fan, Light (LED’s) and pump. Temperature sensor, senses the level of temperature. If it goes high DC fans gets on and when the temperature goes low the fan gets off. Soil moisture sensor, senses the water level as the level decreases the pumps gets on. In the absence of light, the LDR sensor senses and the light starts glowing. By this way it will become easy to monitor and control the system.

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

Block Diagram

Arduino, WSN, IOT, Green House Monitoring

Specifications

Arduino, Temperature sensor, LDR sensor, Soil Moisture sensor, Relay, GSM/GPRS Module, DC fan, Lights(LED’S), LCD, Pumping Motor, Power Supply, Arduino IDE, Embedded C

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 pumping  motor
  • Working of CPU fan
  • How to interface LDR Sensor with Arduino
  • How to interface Soil moisture sensor with Arduino?
  • Working of Relay
  • 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

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