Grow It Your Self-AIBOT

Project Code :TEMBMA3106

Objective

The main objective of this project is to conserve energy and water resources, handles the system manually and automatically, detects the level of water.

Abstract

India is the crop growing based country. Our ancient publics entirely depended on the farming. Agriculture is a cause of living of mainstream Indians and has great control on the economy of the country. In dry zones or in situation of lacking rainfall, irrigation comes to be difficult. So, it wants to be involuntary for correct produce and measured at all for farmer protection. Increasing energy costs and decreasing water supplies point out the need for healthier water management. Irrigation management is a hard decision making progression to control when and how much water to relate to a growing crop to meet exact management objectives. If the farmer is far away from the agricultural land he will not be noticed of current environments. So, capable aquatic association plays a vital role in the irrigated agricultural harvesting structures.


A small cost another key for well-organized aquatic checking presently in use is drip irrigation structures that contain of an automatic processor to turn on & off the control values, which in turn helps the farmers by management the water supply to the crop fields and supplementary keeps the humidity levels of soil that helps in better crop production. This project probes into the design of the mindless irrigation system based on Arduino technology. This Embedded development is to intention and growth a low cost feature which is established on inserted stage for aquatic irrigation system. This mission uses DHT11 and soil moisture sensors to sense the water amount present in farming. The project uses Arduino that processes the information and acts according to the data. The goal of the operation was to prove that the programmed irrigation can be used to decrease aquatic use.    

 

Keywords: Arduino Uno, Soil moisture sensor, DHT11 sensor, GSM/GPRS, Relay, LED, LCD, power supply

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:
  • Arduino
  • DHT11 sensor
  • Soil moisture sensor
  • Relay
  • LED
  • GSM/GPRS
  • LCD
  • Power supply 
Software Requirements:
  • Arduino IDE
  • Embedded C
  • Fritzing

Learning Outcomes


  • Arduino pin diagram and architecture
  • How to install Arduino IDE  software
  • Setting up and installation procedure for Arduino
  • Introduction to Arduino IDE
  • Basic coding in Arduino IDE
  • Working of DHT11 sensor
  • Interface DHT11 sensor with Arduino?
  • Working of Soil moisture sensor
  • Interface Soil moisture sensor with Arduino?
  • Working of LCD
  • Interface LCD with Arduino?
  • Working of GSM/GPRS
  • Interface GSM/GPRS with Arduino?
  • Working of relay
  • Interface relay with Arduino?
  • Working of LED
  • Interface LED with Arduino?
  • Working of Power supply
  • 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

Demo Video

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