EXAMPLE OF AUTOMATIC PLANT WATERING SYSTEM CIRCUIT DIAGRAM.
Thursday, 14 September 2017
Saturday, 10 June 2017
Sunday, 4 June 2017
REFERENCES
- “Arduino Based Automatic Plant Watering System”, S. V. Devika, S.k.Khamuruddeen, Sk.Khamurunnisa, Jayanth Thota, Khalesha Shaikh, Associate Professor, Dept. of ECE, HITAM, Hyderabad, India, MSC 2nd Year, Department Of Electronics, HRD, Hyderabad, India. Websitewww.ijarcsse.com
- “Water saving irrigation automatic irrigation controller”, Pranita A. Bhosale, Prof. V. V. Dixit, and ISSN: 2277-8616.
- Joaquín Gutiérrez, Juan Francisco Villa-Medina, Alejandra NietoGaribay, and Miguel Ángel Porta- Gándara “Automated Irrigation System Using a Wireless Sensor Network and GPRS Module ” IEEE 2013
- Coates RW, Delwiche M, Brown P (2005). Precision Irrigation in Orchards: Development of a Spatially Variable Micro sprinkler System. Information and Technology for Sustainable Fruit and Vegetable Production (FRUTIC). pp. 611-624.
Sunday, 14 May 2017
DEVICE PROPOSED
SOIL
MOISTURE SENSOR
Soil moisture sensors
used to measure the volumetric water content in soil. Since the direct
gravimetric measurement of free soil moisture requires removing, drying, and
weighting of a sample, soil moisture sensors can measure the volumetric water
content indirectly by using some other property of the soil, such as electrical
resistance, dielectric constant, or interaction with neutrons, as a proxy for
the moisture content. The relation between the measured property and soil
moisture must be calibrated and may vary depending on environmental factors
such as soil type, temperature, or electric conductivity. Reflected microwave
radiation is affected by the soil moisture and is used for remote sensing in
hydrology and agriculture.
ARDUINO
UNO
Arduino is an
open-source electronics platform based on easy-to-use hardware and software.
Arduino boards are able to read inputs - light on a sensor, a finger on a
button, or a Twitter message - and turn it into an output - activating a motor,
turning on an LED, publishing something online. You can tell your board what to
do by sending a set of instructions to the microcontroller on the board. To do
so you use the Arduino programming language (based on Wiring), and the Arduino
Software (IDE), based on Processing.
LCD
A liquid crystal
display (LCD) is a thin, flat display device made up of any number of color or
monochrome pixels arrayed in front of a light source or reflector. Each pixel
consists of a column of liquid crystal molecules suspended between two
transparent electrodes, and two polarizing filters, the axes of polarity of
which are perpendicular to each other. Without the liquid crystals between
them, light passing through one would be blocked by the other.
The liquid crystal
twists the polarization of light entering one filter to allow it to pass
through the other. Digital4-Digital7 Pins are connected to Atmega328p digital
pins and read/write connected to ground.5V given to LCD and Enable, R/S
connected Atmega328p digital pins. Finally LCD display used to display whether
an obstacle is detected or not.
WATER
PUMP
The water pump is used
to artificially supply water for a particular task. It can be electronically
controlled by interfacing it to a microcontroller. It can be triggered ON/OFF
by sending signals as required. The process of artificially supplying water is known
as pumping. There are many varieties of water pumps used. The
pumping of water is a basic and practical technique, far more practical than
scooping it up with one's hands or lifting it in a hand-held bucket. This is
true whether the water is drawn from a fresh source, moved to a needed
location, purified, or used for irrigation, washing, or sewage treatment, or
for evacuating water from an undesirable location. Regardless of the outcome,
the energy required to pump water is an extremely demanding component of water
consumption. All other processes depend or benefit either from water descending
from a higher elevation or some pressurized plumbing system.
Sunday, 7 May 2017
METHODS USED IN IRRIGATION
- · Surface Irrigation -Surface Irrigation consists of a broad class of irrigation method in which water is distributed over the soil surface by gravity flow. The irrigation water is introduced into level or graded furrows or basins, using siphons, gated pipe, or turnout structures, and is allowed to advance across the field. Surface irrigation is best suited to flat land slopes, and medium to fine textured soil types which promote the lateral spread of water down the furrow row or across the basin.
- · Sprinkler Irrigation -Sprinkler Irrigation is a method of irrigation in which water is sprayed, or sprinkled through the air in rain like drops. The spray and sprinkling devices can be permanently set in place (Solid set), temporarily set and then moved after a given amount of water has been applied (portable set or intermittent mechanical move), or they can be mounted on booms and pipelines that continuously travel across the land surface (wheel roll, linear move, centre pivot).
- · Drip/Trickle Irrigation -Drib/Trickle Irrigation system are method of micro irrigation where in water is applied through emitters to the soil surface as drops or small streams. The discharge rate of the emitters is low so this irrigation method can be used on all soil types.
- · Subsurface Irrigation -Subsurface Irrigation consists of methods whereby irrigation water is applied below the soil surface. The specific type of irrigation method varies depending on the depth of the water table. When the water table is well below the surface, drip or trickle irrigation emission devices can be buried below the soil surface (usually within the plant root zone).
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