INTELLIGENT
AUTOMATIC PLANT IRRIGATION SYSTEM
The paper presented proposed an embedded system for
automatic control of irrigation. You can water your plants regularly when you
are out for vacation. The system has wireless sensor network for real-time
sensing and control of an irrigation system. This system provides uniform and
required level of water for the garden and it avoids water wastage. This system
is intended to create an automated irrigation mechanism which turns the pumping
motor ON and OFF on detecting the dampness content of the earth. In this
embedded system we are interfacing Arduino board ATmega328 microcontroller
through temperature sensor, soil moisture sensor and also interfacing to GSM.
This paper of “Intelligent Automatic Plant Irrigation System” is implemented
using the “ARDUINO” software and hardware using “Embedded C” along with the
“ANDROID” for sending users command to the Ardunio for controlling the motor.
This proposed technique is designed to operate a
water pump automatically based on the soil moisture sensor detection of sufficient
water to the plant or in fields and also temperature sensor based fan speed
control. The switching mechanism can be done automatically with the help of
microcontroller using relays. The proposed controller eliminates the manual
switching mechanism used by the farmers to ON/OFF the irrigation system. The
system is also designed for temperature sensor based fan speed control.
Integrating features of all the hardware components used have been developed in
it. Presence of every module has been reasoned out and placed carefully, thus
contributing to the best working of the unit. Secondly, using highly advanced
IC’s with the help of growing technology, the paper has been successfully
implemented.
AUTOMATIC
IRRIGATION SYSTEM BASED ON RF MODULE
In this paper, the automatic irrigation system is
based on ARMs and RF module. All the system will be setup using ARM and RF
module. The most important factor of this system is RF module which is used to
send and receiving the message to the controller. This system used three nodes
which communicate each other and irrigate paddy field automatically. The aim of
this project is to modernizing agriculture technology by programming components
and built the necessary component for the system. The system is real time based
and extracts the exact condition of paddy field. There is one central node used
which to control other node. The main function of RF module is to pass the
message to the node and operate the system.
This proposed model used ARM-LPC2148 which is fully
based on RF Module. This project developed agriculture field and increase the
growth of food production. This can also useful for increasing the economy and
demand of food necessity.
AUTOMATIC
CONTROL OF DRIP IRRIGATION SYSTEM & MONITORING OF SOIL BY WIRELESS
This paper reviews different monitoring systems and
proposes an automatic monitoring system model using Wireless Sensor Network
(WSN). Utilization of proper method of irrigation by drip is very reasonable
and proficient. A various drip irrigation methods have been proposed, but they
have been found to be very luxurious and dense to use. The farmer has to
maintain watch on irrigation schedule in the conventional drip irrigation
system, which is different for different types of crops. In remotely monitored
embedded system for irrigation purposes have become a new essential for farmer
to accumulate his energy, time and money and will take place only when there
will be requirement of water. In this approach, the soil test for chemical
constituents, water content, and salinity and fertilizer requirement data
collected by wireless and processed for better drip irrigation plan. ZigBee or
Hotspot based remote control and monitoring system with automatic irrigation
management is proposed in this project.
The modern use of electronic, electrical, chemical
and mechanical systems will be very advantages for better agricultural output.
Preservation of water sources and minimizing the use of inorganic fertilizer
are possible with these methods. Use of bio-fertilizer in appropriate manner
will find better guiding parameters through the various sensing methods. In
this age of population explosion the huge demand of food can be met with this
state of the art process.
No comments:
Post a Comment