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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2312
Automatic Water Pumping and Distribution to College Campus
Kuldeep T Naik1, Prasanna G Shet2, Naveen Sallu vaz3, Prof. Imamhusen M Patil4
1,2,3Anjuman Institute of Technology and Management (AITM), Bhatkal
4Professor, Department of Electrical and Electronics Engineering(AITM), Bhatkal
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract - Water is basic need of human being.
Automation provides optimized solution to all problems of
distribution of water system. This system has features of
AURDINO BOARD AND GSM system to control and monitor
the water supply and in case of power failures to maintain
continuity of power supply. Now-a-days water distribution
system faces some problems likeimproperwatersupplyand
water leakage. This leakage cause reduction in a pressure of
water flowing through the supply line. Due to this consumer
gets less amount of water. By considering abovescenario we
are trying to find solution for the above problem. It reduces
human efforts and improve the performance hence we have
implemented ARDUINO based water distribution system.
This project explores the ARDUINO and GSMtechnologyand
its use for developing automation for monitoring purpose of
water distribution for an entire college campus. Earlier the
monitoring of the process was done by human whichcaused
error. To reduce this error,automationisdevelopedbyusing
ARDUINO and 741 operational amplifiers.
Key Words: (ArduinoUno,741operational amplifier,L293D
Motor Driver, Liquid crystal display, DC motor)
1.INTRODUCTION
Automation plays an important role in reducing
human efforts and improves the performance. The main
objective behind selecting this project is to improve the
performance of thewaterdistributionsystemwithminimum
human efforts. Presently process control and monitoring
was done by human which is found to be inefficient. Due to
discontinuity of power supply the man has to turn ON the
motors again and again. In this project we are making use of
micro controller for advanced water distribution system to
our college campus. All the operations will be carried out by
micro controller which controls inflow and out flow. This
system is primarily focusedonefficientwaterdistribution by
reducing wastage of water and power. Also the same man
power can be utilized to other typeofworks.Thisproposal is
made by considering waterdistributionsystemadvancedfor
college campus, hostels and PG blocks etc. It reduces human
efforts and improve the performance hence we have
implemented ARDUINO based water distribution system.
This project explores the ARDUINO and GSMtechnologyand
its use for developing automation for monitoring purpose of
water distribution for an entire college campus. Earlier the
monitoring of the process was done by human whichcaused
error. To reduce this error,automationisdevelopedbyusing
ARDUINO and GSM.
1.1 PROBLEM IDENTIFICATION
The traditional water distribution had many disadvantages
such as;
• The traditional water distribution system is
inefficient.
• The traditional water distribution more laborious
work and carried out by human operators.
• The problem of manual control issometimespeople
in efficient.
• There are wastage of water resources and electric
energy due to negligence of human operators.
In existing system, water is supplied to college with
some manpower. The activity of opening the valve will be
performed by the person who is given the charge of it. The
person has to wait for a time period and again close the
valve. Time consumption is very high in this system. This
type of operation needs manpower. Also, if operator does
not perform the proposed task perfectly then the output of
the task will not be good. Also, the people may take excess
water for their personal use with help of motor or some
other equipment. Due to this many people will not receive
sufficient water for use. They are standalone instruments
and do not have any management over consumption of
water. Thus, it works on open loop system.
1.2 METHODOLOGY
The below figure shows the present water
distribution system to the college campus. It has Main Tank,
Masjid Tank, Filter Tank, Sump and Overhead Tanks of
hostel blocks. The filter tank gets the watersupplyfrombore
and well. They have used three 10 HP motor pumpstopump
the water from bore and well. Afterfilteringthewaterwill go
to the sump. There is a manually controllable valve to make
the flow of water from filter tank to sump. Again, the water
is distributed to main tank and masjid tank by the
submersible pump which is been placed in the sump tank.
The rating of suberized pump is 15 HP. To distribute the
water, they will open the masjid tank valvefirstandclosethe
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2313
main tank valve and vice-versa. After that the water will be
supplied to college campus and overhead tanks of hostel
blocks through pressure. With the continuous economic
growth, the water demand of enterprises is also increasing.
The monitoring of water resource for these enterprises can
prevent the occurrence of stealing water and leaking water
effectively. Therefore, the monitoring systemofurbanwater
supply has aroused extensive attention in recent years.
Urban water supply networks form the link between
drinking water supply and drinking waterconsumers.These
large-scale networks are vital for the survival of urban life,
for maintaining a healthy level of economic development,
and for the continuous operation of factories and hospitals.
Fig-1 Water distributtion system
2. BLOCK DIAGRAM
Fig-2 Block diagram
The above fig shows block diagram of water level
control system. Two inputs are taken from the sensor and
other two are taken from filter tank. When the water level
reaches the low level sensor micro controller sendssignal to
motor driver to make NC operation. When the water level
reaches the high level sensor microcontrollersendssignal to
motor driver to make NO operation. Taking advantageofthe
electrical conductivity propertyofwater, weusedthecopper
conductors as the water level sensor. When water touches
the copper sensor positioned at a particular level inthetank,
voltage is transferred to the copper which in turn is
transferred to the comparator circuit for further processing.
The L293D comparator wasusedtocomparetheinputsfrom
the electrodes in the tank and with a pre-set resistance and
output a HIGH or a LOW with respect to the result from the
comparison. This HIGH or LOW was fed into the
microcontroller which in turn uses this to control the water
pump and display the appropriate status on an LCD screen.
The programmable Atmel 89C52 microcontroller was
programmed in Assembly Language and was used as the
processor to control the functionalities of the entire system.
A Liquid Crystal Display (LCD) served as the output unit
which showed the status of the system on a screen. Motor
drivers were used in building a switching unit that simply
triggers the pump on or off, dependingonthesignal received
from the microcontroller.
2.1 FLOW CHART
Fig-3 Flow Chart
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2314
To make water distributions more efficiently by
reducing wastage of water and power. It monitors, controls
and protects all the water pumps used forwaterdistribution
purpose. It monitors all the storage tanks situated and
distributes the water equally toall theareasdependingupon
the amount of water in the tank. And mainly it reduces the
man power required to operate the motors and to supervise
the water distribution systemwhichbecomeseconomical.In
this work, the microcontroller for the automatic water level
monitor with feedback, having passed the necessary tests
with the other components interfaced to it, is hereby
presented. With this implemented system, it is possible to
monitor the water level in an over-head tank, switch on the
water pump when the tank is empty and switch off the same
pump when the tank is full without any need for human
intervention. By so doing, the incidence of water wastage is
eliminated and abrupt cut-off of water supply is equally also
eliminated. As already highlighted in the previous sections,
the microcontroller is the heart of this project work, as all
the control signals pass through and are processed by the
microcontroller.
3. OBJECTIVES
1)Optimization of existing water distribution system.
2)To develop controller using Micro controller as
programming.
3)Reduction of human risks.
4)To prevent over labour of the pumping Machine.
5)Reduction of the wastage of water and electric energy due
to negligence of operators.
6)Designing more efficient system.
ACKNOWLEDGEMENT
We consider it as a privilege to articulate a few words of
gratitude and respect to all those deserving individuals who
guided us in completing this project work.
First & foremost, we would like to extend my profound
gratitude and my sincere thanks to my guide Prof,
Department of Electrical and Electronics Engineering,AITM,
Bhatkal for his valuable inputs and support throughout this
project.
We are thankful to our project co-ordinator. Prof. Iqbal
ahhemmed A K Associate Professor in Department of
Electrical and Electronics Engineering, AITM, Bhatkal forhis
immense support throughout this project work.
We would also wish to express our gratitude and thanks to
Dr. Anil kadle, Professor and HOD, Department of Electrical
and Electronics Engineering, AITM, Bhatkal for his valuable
guidance and discussions throughout the project work.
We take this opportunity to thank Dr. M. A Bhavikatti,
Principal, AITM, Bhatkal for his encouragement and useful
suggestions to pursue this work.
We respectfully thank all the teachingand non-teachingstaff
of Electrical and Electronics EngineeringDepartment,AITM,
Bhatkal, for their impartial guidanceandsupportthroughout
our U.G course and our project work.
We would like to thank our parents for their unconditional
love and constant support throughout our studies; we owe
all our achievements to them.
REFERENCES
a) AT89C52 Datasheet; Atmel Corporation. Modified
May, 2000. www.microchip.com.
b) Hicks, F., Tyler, G.; & Edwards, T.W. (1971), ‘Pump
Application Engineering’. McGraw-Hill Book
Company, New York.
c) Khaled Reza, S.M., Shah Ahsanuzzaman Md. Tariq,
S.M. Mohsin Reza (2010), ‘Microcontroller Based
Automated Water Level Sensing and Controlling:
Design and Implementation Issue’. Proceedings of
the World Congress on Engineering and Computer
Science, pp 220224.
d) Venkata Naga Rohit Gunturi (2013), ‘Micro
Controller Based Automatic Plant Irrigation
System’, International Journal of Advancements in
Research & Technology, Vol. 2, Iss. 4, ISSN 2278-
7763.
e) Judy Hodgson, Trey Walters(2002), ‘Optimizing
Pumping Systems To Minimize First Or Life-Cycle
Cost’, Proceedings of the 19th international pump
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2315
users symposium. Pp 1-8. 6. Rojiha, C. (2013),
‘Sensor Network Based Automatic Control System
for Oil Pumping Unit Management’, International
Journal of Scientific and Research Publications, Vol.
3, Iss. 3. Pp 1-4.
f) Ramleela khare, Dr.Fillliperodrigues, &E.Mela
;”Automation of water distribution plant”,
international journal of Research in Engineering
and Advanced Technology.
g) Aunbhapanchal, Ketakee Dagade, Shubhangi
Tamane, Kiran Pawar, & Pradnya Ghadge;
“Automated Water Supply System And Water Theft
Identification Using PLC And SCADA”, international
Journal Of Engineering Research And Application.
h) Ayamal AlinhusseinandMomhammedAdedalati;“A
Supervisory Control And Data Acquisition (SCADA)
for water pumping station of GAZA”.
i) J.P.Shridharanyaa,Jagedeesan.A,&Lavnya.A;”Theft
Identification and Automated Water SupplySystem
using Embedded Technology”,International Journal
of Advanced Research in Electrical, Electronics and
Instrumentation Engineering.
j) Bhawarkr.N.B, Pande.D.P, Sonone .R.S, Pandit.P.A &
Patil.P.D, “Literature Review For Automated Water
Supply with Monitoring the Performance System”,
International Journal of Current Engineering and
Technology

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IRJET-Automatic Water Pumping and Distribution to College Campus

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2312 Automatic Water Pumping and Distribution to College Campus Kuldeep T Naik1, Prasanna G Shet2, Naveen Sallu vaz3, Prof. Imamhusen M Patil4 1,2,3Anjuman Institute of Technology and Management (AITM), Bhatkal 4Professor, Department of Electrical and Electronics Engineering(AITM), Bhatkal ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract - Water is basic need of human being. Automation provides optimized solution to all problems of distribution of water system. This system has features of AURDINO BOARD AND GSM system to control and monitor the water supply and in case of power failures to maintain continuity of power supply. Now-a-days water distribution system faces some problems likeimproperwatersupplyand water leakage. This leakage cause reduction in a pressure of water flowing through the supply line. Due to this consumer gets less amount of water. By considering abovescenario we are trying to find solution for the above problem. It reduces human efforts and improve the performance hence we have implemented ARDUINO based water distribution system. This project explores the ARDUINO and GSMtechnologyand its use for developing automation for monitoring purpose of water distribution for an entire college campus. Earlier the monitoring of the process was done by human whichcaused error. To reduce this error,automationisdevelopedbyusing ARDUINO and 741 operational amplifiers. Key Words: (ArduinoUno,741operational amplifier,L293D Motor Driver, Liquid crystal display, DC motor) 1.INTRODUCTION Automation plays an important role in reducing human efforts and improves the performance. The main objective behind selecting this project is to improve the performance of thewaterdistributionsystemwithminimum human efforts. Presently process control and monitoring was done by human which is found to be inefficient. Due to discontinuity of power supply the man has to turn ON the motors again and again. In this project we are making use of micro controller for advanced water distribution system to our college campus. All the operations will be carried out by micro controller which controls inflow and out flow. This system is primarily focusedonefficientwaterdistribution by reducing wastage of water and power. Also the same man power can be utilized to other typeofworks.Thisproposal is made by considering waterdistributionsystemadvancedfor college campus, hostels and PG blocks etc. It reduces human efforts and improve the performance hence we have implemented ARDUINO based water distribution system. This project explores the ARDUINO and GSMtechnologyand its use for developing automation for monitoring purpose of water distribution for an entire college campus. Earlier the monitoring of the process was done by human whichcaused error. To reduce this error,automationisdevelopedbyusing ARDUINO and GSM. 1.1 PROBLEM IDENTIFICATION The traditional water distribution had many disadvantages such as; • The traditional water distribution system is inefficient. • The traditional water distribution more laborious work and carried out by human operators. • The problem of manual control issometimespeople in efficient. • There are wastage of water resources and electric energy due to negligence of human operators. In existing system, water is supplied to college with some manpower. The activity of opening the valve will be performed by the person who is given the charge of it. The person has to wait for a time period and again close the valve. Time consumption is very high in this system. This type of operation needs manpower. Also, if operator does not perform the proposed task perfectly then the output of the task will not be good. Also, the people may take excess water for their personal use with help of motor or some other equipment. Due to this many people will not receive sufficient water for use. They are standalone instruments and do not have any management over consumption of water. Thus, it works on open loop system. 1.2 METHODOLOGY The below figure shows the present water distribution system to the college campus. It has Main Tank, Masjid Tank, Filter Tank, Sump and Overhead Tanks of hostel blocks. The filter tank gets the watersupplyfrombore and well. They have used three 10 HP motor pumpstopump the water from bore and well. Afterfilteringthewaterwill go to the sump. There is a manually controllable valve to make the flow of water from filter tank to sump. Again, the water is distributed to main tank and masjid tank by the submersible pump which is been placed in the sump tank. The rating of suberized pump is 15 HP. To distribute the water, they will open the masjid tank valvefirstandclosethe
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2313 main tank valve and vice-versa. After that the water will be supplied to college campus and overhead tanks of hostel blocks through pressure. With the continuous economic growth, the water demand of enterprises is also increasing. The monitoring of water resource for these enterprises can prevent the occurrence of stealing water and leaking water effectively. Therefore, the monitoring systemofurbanwater supply has aroused extensive attention in recent years. Urban water supply networks form the link between drinking water supply and drinking waterconsumers.These large-scale networks are vital for the survival of urban life, for maintaining a healthy level of economic development, and for the continuous operation of factories and hospitals. Fig-1 Water distributtion system 2. BLOCK DIAGRAM Fig-2 Block diagram The above fig shows block diagram of water level control system. Two inputs are taken from the sensor and other two are taken from filter tank. When the water level reaches the low level sensor micro controller sendssignal to motor driver to make NC operation. When the water level reaches the high level sensor microcontrollersendssignal to motor driver to make NO operation. Taking advantageofthe electrical conductivity propertyofwater, weusedthecopper conductors as the water level sensor. When water touches the copper sensor positioned at a particular level inthetank, voltage is transferred to the copper which in turn is transferred to the comparator circuit for further processing. The L293D comparator wasusedtocomparetheinputsfrom the electrodes in the tank and with a pre-set resistance and output a HIGH or a LOW with respect to the result from the comparison. This HIGH or LOW was fed into the microcontroller which in turn uses this to control the water pump and display the appropriate status on an LCD screen. The programmable Atmel 89C52 microcontroller was programmed in Assembly Language and was used as the processor to control the functionalities of the entire system. A Liquid Crystal Display (LCD) served as the output unit which showed the status of the system on a screen. Motor drivers were used in building a switching unit that simply triggers the pump on or off, dependingonthesignal received from the microcontroller. 2.1 FLOW CHART Fig-3 Flow Chart
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2314 To make water distributions more efficiently by reducing wastage of water and power. It monitors, controls and protects all the water pumps used forwaterdistribution purpose. It monitors all the storage tanks situated and distributes the water equally toall theareasdependingupon the amount of water in the tank. And mainly it reduces the man power required to operate the motors and to supervise the water distribution systemwhichbecomeseconomical.In this work, the microcontroller for the automatic water level monitor with feedback, having passed the necessary tests with the other components interfaced to it, is hereby presented. With this implemented system, it is possible to monitor the water level in an over-head tank, switch on the water pump when the tank is empty and switch off the same pump when the tank is full without any need for human intervention. By so doing, the incidence of water wastage is eliminated and abrupt cut-off of water supply is equally also eliminated. As already highlighted in the previous sections, the microcontroller is the heart of this project work, as all the control signals pass through and are processed by the microcontroller. 3. OBJECTIVES 1)Optimization of existing water distribution system. 2)To develop controller using Micro controller as programming. 3)Reduction of human risks. 4)To prevent over labour of the pumping Machine. 5)Reduction of the wastage of water and electric energy due to negligence of operators. 6)Designing more efficient system. ACKNOWLEDGEMENT We consider it as a privilege to articulate a few words of gratitude and respect to all those deserving individuals who guided us in completing this project work. First & foremost, we would like to extend my profound gratitude and my sincere thanks to my guide Prof, Department of Electrical and Electronics Engineering,AITM, Bhatkal for his valuable inputs and support throughout this project. We are thankful to our project co-ordinator. Prof. Iqbal ahhemmed A K Associate Professor in Department of Electrical and Electronics Engineering, AITM, Bhatkal forhis immense support throughout this project work. We would also wish to express our gratitude and thanks to Dr. Anil kadle, Professor and HOD, Department of Electrical and Electronics Engineering, AITM, Bhatkal for his valuable guidance and discussions throughout the project work. We take this opportunity to thank Dr. M. A Bhavikatti, Principal, AITM, Bhatkal for his encouragement and useful suggestions to pursue this work. We respectfully thank all the teachingand non-teachingstaff of Electrical and Electronics EngineeringDepartment,AITM, Bhatkal, for their impartial guidanceandsupportthroughout our U.G course and our project work. We would like to thank our parents for their unconditional love and constant support throughout our studies; we owe all our achievements to them. REFERENCES a) AT89C52 Datasheet; Atmel Corporation. Modified May, 2000. www.microchip.com. b) Hicks, F., Tyler, G.; & Edwards, T.W. (1971), ‘Pump Application Engineering’. McGraw-Hill Book Company, New York. c) Khaled Reza, S.M., Shah Ahsanuzzaman Md. Tariq, S.M. Mohsin Reza (2010), ‘Microcontroller Based Automated Water Level Sensing and Controlling: Design and Implementation Issue’. Proceedings of the World Congress on Engineering and Computer Science, pp 220224. d) Venkata Naga Rohit Gunturi (2013), ‘Micro Controller Based Automatic Plant Irrigation System’, International Journal of Advancements in Research & Technology, Vol. 2, Iss. 4, ISSN 2278- 7763. e) Judy Hodgson, Trey Walters(2002), ‘Optimizing Pumping Systems To Minimize First Or Life-Cycle Cost’, Proceedings of the 19th international pump
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 05 | May 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 2315 users symposium. Pp 1-8. 6. Rojiha, C. (2013), ‘Sensor Network Based Automatic Control System for Oil Pumping Unit Management’, International Journal of Scientific and Research Publications, Vol. 3, Iss. 3. Pp 1-4. f) Ramleela khare, Dr.Fillliperodrigues, &E.Mela ;”Automation of water distribution plant”, international journal of Research in Engineering and Advanced Technology. g) Aunbhapanchal, Ketakee Dagade, Shubhangi Tamane, Kiran Pawar, & Pradnya Ghadge; “Automated Water Supply System And Water Theft Identification Using PLC And SCADA”, international Journal Of Engineering Research And Application. h) Ayamal AlinhusseinandMomhammedAdedalati;“A Supervisory Control And Data Acquisition (SCADA) for water pumping station of GAZA”. i) J.P.Shridharanyaa,Jagedeesan.A,&Lavnya.A;”Theft Identification and Automated Water SupplySystem using Embedded Technology”,International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering. j) Bhawarkr.N.B, Pande.D.P, Sonone .R.S, Pandit.P.A & Patil.P.D, “Literature Review For Automated Water Supply with Monitoring the Performance System”, International Journal of Current Engineering and Technology