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Controller Based Irrigation
System
Presented By:-
BT4060195
BT4060199
BT4060208
BT4060209
B.Tech (ECE)
4th Year
โ€ข INTRODUCTION
โ€ข TYPES OF IRRIGATIONS
โ€ข BLOCK DIAGRAM
โ€ข SOIL MOISTURE SENSOR
โ€ข COMPARATOR
โ€ข MICROCONTROLLER
โ€ข CONTROL UNIT
โ€ข ADVANTAGES
โ€ข CONCLUSION
CONTENTS
The project is designed to develop an automatic irrigation system which switches the pump
motor ON/OFF on sensing the moisture content of the soil. In the field of agriculture, use of
proper method of irrigation is important. The advantage of using this method is to reduce
human intervention and still ensure proper irrigation.
The project uses an 8051 series microcontroller which is programmed to receive the input
signal of varying moisture condition of the soil through the sensing arrangement. This is
achieved by using an op-amp as comparator which acts as interface between the sensing
arrangement and the microcontroller.
Irrigation is the artificial application of water to the land or soil.
It is used to assist in the growing of agricultural crops, maintenance of landscapes, and
vegetation of disturbed soils in dry areas and during periods of inadequate rainfall.
irrigation also has a few other uses in crop production, which include protecting plants against
frost
INTRODUCTION
TYPES OF IRRIGATIONS
โ€ข Surface Irrigation
โ€ข Drip Irrigation
โ€ข Sprinkler Irrigation
PROBLEMS
โ€ข OverIrrigation.
โ€ข UnderIrrigation
โ€ข Farm Lands & Fields situated miles away from your home. Extensive
travel required, sometimes several times in a day to start & stop the
irrigation water pumps.
โ€ข Land is more, we need more manpower.
BLOCK DIAGRAM
MOISTURE SENSOR
๏‚— For conversion of change in resistance to change in voltage, the sensor is
connected with a 200 kฮฉ resistor in series to form a potential divider
Arrangement
๏‚— It gives a voltage output corresponding to the conductivity of the soil. The
conductivity of soil varies depending upon the amount of moisture present in
it. It increases with increase in the water content of the soil. The higher the
water content in the soil, the lower the electrical resistance.
๏‚— The voltage output is taken from the output terminal of this circuit. The
moisture sensor is immersed into the specimen soil whose moisture content is
under test.
COMPARATOR
๏‚— For the comparator circuit, we are using IC LM 358 which has two opamps.
๏‚— We have selected two thresholds: 5 V for logic high and 3 V for logic low.
These two levels are set at the positive terminal of each opamp.The output of the
potential divider is given to the negative terminals of the opamps.
๏‚— The two opamps are arranged such that when the output of the potential
divider circuit falls below the preset value of lower opamp the lower opamp gives
logic 0 and the upper opamp gives logic 1.
๏‚— When the output of potential divider circuit is in between range (5 V and 3V),
then both opamps give logic 1 and when output of potential divider circuit is
above the set value of upper opamp, then the upper opamp gives logic 0 and
lower opamp gives logic 1.
๏‚— The output of the comparator circuit is fed to SR Latch
SR LATCH
S.NO VOLTAGE
RANGE
SOIL
CONDITION
S R Q
1 >5V EXCESS
WET
1 o 0
2 >3V &<5V OPTIMUM 1
1
1
1
0
1
3 <3V DRY 0 1 1
89s52-CONTROLLER
๏ƒ˜ 8K Bytes of In-System Programmable (ISP) Flash Memory.
๏ƒ˜ 4.0V to 5.5V Operating Range.
๏ƒ˜ Fully Static Operation: 0 Hz to 33 MHz.
๏ƒ˜ 256 x 8-bit Internal RAM.
๏ƒ˜ 32 Programmable I/O Lines.
๏ƒ˜ Three 16-bit Timer/Counters.
๏ƒ˜ Eight Interrupt Sources.
๏ƒ˜ Full Duplex UART Serial Channel.
๏ƒ˜ Low-power Idle and Power-down Modes.
๏ƒ˜ Interrupt Recovery from Power-down Mode.
๏ƒ˜ Watchdog Timer.
๏ƒ˜ Power-off Flag.
๏ƒ˜ Fast Programming Time
CONTROL UNIT
๏‚— The basic operation of control unit is the
controlling solenoid by microcontroller which is
defined by particular program.
๏‚— solenoid is connected with an output pin of
microcontroller via a relay circuit which is
connected with a transistor.
SOLENOID
๏‚— Electromagnetic device which produces a magnetic field when electric
current passed through it.
๏‚— These are used mainly in opening and closing of valves.
๏‚— Operation of valves is done using a relay circuit
RELAY CIRCUIT
๏‚— A relay is an electrical switch
that uses an electromagnet to
move the switch from the off
to on position instead of a
person moving the switch .
ADVANTAGES
๏‚— This makes increase in productivity
๏‚— Reduces water consumption
๏‚— Reduces manpower
๏‚— Much land will be irrigated
CONCLUSION
โ€ข The Microcontroller based drip irrigation system proves to be a real
time feedback control system which monitors and controls all the
activities of drip irrigation system efficiently. The present proposal is
a model to modernize the agriculture industries at a mass scale with
optimum expenditure. Using this system, one can save manpower,
water to improve production and ultimately profit.
Automatic irrigation system by using 8051

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Automatic irrigation system by using 8051

  • 1. Controller Based Irrigation System Presented By:- BT4060195 BT4060199 BT4060208 BT4060209 B.Tech (ECE) 4th Year
  • 2. โ€ข INTRODUCTION โ€ข TYPES OF IRRIGATIONS โ€ข BLOCK DIAGRAM โ€ข SOIL MOISTURE SENSOR โ€ข COMPARATOR โ€ข MICROCONTROLLER โ€ข CONTROL UNIT โ€ข ADVANTAGES โ€ข CONCLUSION CONTENTS
  • 3. The project is designed to develop an automatic irrigation system which switches the pump motor ON/OFF on sensing the moisture content of the soil. In the field of agriculture, use of proper method of irrigation is important. The advantage of using this method is to reduce human intervention and still ensure proper irrigation. The project uses an 8051 series microcontroller which is programmed to receive the input signal of varying moisture condition of the soil through the sensing arrangement. This is achieved by using an op-amp as comparator which acts as interface between the sensing arrangement and the microcontroller. Irrigation is the artificial application of water to the land or soil. It is used to assist in the growing of agricultural crops, maintenance of landscapes, and vegetation of disturbed soils in dry areas and during periods of inadequate rainfall. irrigation also has a few other uses in crop production, which include protecting plants against frost INTRODUCTION
  • 4. TYPES OF IRRIGATIONS โ€ข Surface Irrigation โ€ข Drip Irrigation โ€ข Sprinkler Irrigation
  • 5. PROBLEMS โ€ข OverIrrigation. โ€ข UnderIrrigation โ€ข Farm Lands & Fields situated miles away from your home. Extensive travel required, sometimes several times in a day to start & stop the irrigation water pumps. โ€ข Land is more, we need more manpower.
  • 7. MOISTURE SENSOR ๏‚— For conversion of change in resistance to change in voltage, the sensor is connected with a 200 kฮฉ resistor in series to form a potential divider Arrangement ๏‚— It gives a voltage output corresponding to the conductivity of the soil. The conductivity of soil varies depending upon the amount of moisture present in it. It increases with increase in the water content of the soil. The higher the water content in the soil, the lower the electrical resistance. ๏‚— The voltage output is taken from the output terminal of this circuit. The moisture sensor is immersed into the specimen soil whose moisture content is under test.
  • 8. COMPARATOR ๏‚— For the comparator circuit, we are using IC LM 358 which has two opamps. ๏‚— We have selected two thresholds: 5 V for logic high and 3 V for logic low. These two levels are set at the positive terminal of each opamp.The output of the potential divider is given to the negative terminals of the opamps. ๏‚— The two opamps are arranged such that when the output of the potential divider circuit falls below the preset value of lower opamp the lower opamp gives logic 0 and the upper opamp gives logic 1. ๏‚— When the output of potential divider circuit is in between range (5 V and 3V), then both opamps give logic 1 and when output of potential divider circuit is above the set value of upper opamp, then the upper opamp gives logic 0 and lower opamp gives logic 1. ๏‚— The output of the comparator circuit is fed to SR Latch
  • 9. SR LATCH S.NO VOLTAGE RANGE SOIL CONDITION S R Q 1 >5V EXCESS WET 1 o 0 2 >3V &<5V OPTIMUM 1 1 1 1 0 1 3 <3V DRY 0 1 1
  • 10. 89s52-CONTROLLER ๏ƒ˜ 8K Bytes of In-System Programmable (ISP) Flash Memory. ๏ƒ˜ 4.0V to 5.5V Operating Range. ๏ƒ˜ Fully Static Operation: 0 Hz to 33 MHz. ๏ƒ˜ 256 x 8-bit Internal RAM. ๏ƒ˜ 32 Programmable I/O Lines. ๏ƒ˜ Three 16-bit Timer/Counters. ๏ƒ˜ Eight Interrupt Sources. ๏ƒ˜ Full Duplex UART Serial Channel. ๏ƒ˜ Low-power Idle and Power-down Modes. ๏ƒ˜ Interrupt Recovery from Power-down Mode. ๏ƒ˜ Watchdog Timer. ๏ƒ˜ Power-off Flag. ๏ƒ˜ Fast Programming Time
  • 11. CONTROL UNIT ๏‚— The basic operation of control unit is the controlling solenoid by microcontroller which is defined by particular program. ๏‚— solenoid is connected with an output pin of microcontroller via a relay circuit which is connected with a transistor.
  • 12. SOLENOID ๏‚— Electromagnetic device which produces a magnetic field when electric current passed through it. ๏‚— These are used mainly in opening and closing of valves. ๏‚— Operation of valves is done using a relay circuit
  • 13. RELAY CIRCUIT ๏‚— A relay is an electrical switch that uses an electromagnet to move the switch from the off to on position instead of a person moving the switch .
  • 14. ADVANTAGES ๏‚— This makes increase in productivity ๏‚— Reduces water consumption ๏‚— Reduces manpower ๏‚— Much land will be irrigated
  • 15. CONCLUSION โ€ข The Microcontroller based drip irrigation system proves to be a real time feedback control system which monitors and controls all the activities of drip irrigation system efficiently. The present proposal is a model to modernize the agriculture industries at a mass scale with optimum expenditure. Using this system, one can save manpower, water to improve production and ultimately profit.