SlideShare a Scribd company logo
1 of 26
A SMART POLLUTED WATER OVERLOAD
DRAINAGE DETECTION AND ALERT SYSTEM:
BASED ON IOT
MALLA REDDY ENGINEERING COLLEGE(A)
Hyderabad
Department of Electronics and Communication Engineering
Under the guidance of:
Dr. Vasudeva Bevara
Assistant Professor
Department of ECE
Student Names and Roll Numbers:
Mohd Wajid 19j41a0438
Chinta Naga Varshitha 19j41a0416
Gandla Akash Varma 19j41a0424
Dasari Saketh 20j45a0404
CONTENTS
•Introduction
•Abstract
•Problem statement
•Proposed method
•Block diagram
•Components
•Arduino Uno
•Features of Arduino Uno
•Working and Principle
•Advantages
•Applications
•Conclusion
•Future scope
•References
The main objective behind this project is to develop smart cities by implementing
new Internet of Things(IoT) methods in ourbday ro day life. We can provide
Cleaner cities by using an automated device which can monitor the turbidity of
water and detect the overflow of drainage water . Cleaner cities and intelligent
management of drainage in the city. The prior information regarding the overflow is
sent to the respective authorities. This methods helps in detection of drainage water
level and blockages in the drainage.Checking water flow rate continuously, as well
as sending to monitor if the water level is outside of an expected normal range.We
can obtain an effective low-cost and flexible solution for condition monitoring and
infrastructure management in the city.
Introduction
ABSTRACT
The new Internet of Things (IoT) applications are enabling Smart City initiatives
worldwide. It provides the ability to remotely monitor, manage and control
devices and to create a new insights and actionable information from massive
stream of real time data. In our project, we have designed an advanced and
automated device that can identify overloaded polluted drainage, which is
responsible for water-borne disease and unexpected floods. We are using smart
ultrasonic and turbidity sensors with an Ethernet shield integrated Arduino UNO.
ABSTRACT
This proposed model’s most vital side is the remote data access system using IP
address and the webserver. This research is adequate for city corporations to
advance and develop their city to be more delighter, and reduce their fund used
for extra resources of city corporation’s cleaner . For data access methods, we are
using the city Wi-Fi router for monitoring report. Materials used here are very
uncomplicated and inexpensive but adequate to make an advanced automation
intelligence system. In this modern scientific era, to lead a comfortable life, an
automation system can help to develop a city more than the old system.
PROBLEM STATEMENT
The Underground Drainage Systems are maintained by Cleaning offices in India
to make clean healthy surroundings and hence environment.
But often due to poor maintenance of the underground drainage system, the
water in the drainage system gets mixed up with the pure water and consumption
of this polluted water leads to water borne diseases.
The sudden changes in the atmosphere and variations in the climate during
different seasons the drainage gets blocked or water logged, making environment
unhealthy and disturbs the healthy routine of common people.
PROPOSED METHOD
To overcome all these issues in the underground drainage system we have
designed the smart drainage system that will have:
 Sensors to detect Turbidity of water, blockage and Overflow.
 The intelligence of sensors and system can clogging the impeding within the
system and will offer the details of the location and different data for further
actions.
These entire data packet will be jointly sent by the gateway node and stored at
the cloud all the system, we are able to simply monitor, modify and rectify the
issues in real time.
BLOCK DIAGRAM
P.S.U
Turbidity
Sensor
ARDUINO
UNO
Ultrasonic
sensor
Lcd display
WIFI module
Web server
Components
HARDWARE
Arduino IDE
Proteus
SOFTWARE
Power supply unit(P.S.U)
Arduino uno
Ultrasonic sensor
Turbidity sensor
Lcd display
WIFI module
Arduino Uno
•Arduino UNO is a low-cost, flexible, and easy-to-use programmable open-source
microcontroller board that can be integrated into variety of electronic projects .
•This board can be interfaced with other Arduino boards, Arduino shields,
Raspberry Pi boards and can control relays, LEDs, servos, and motors as an
output
•Arduino Uno is a microcontroller board based on the ATmega328P (datasheet).
• It has 14 digital input/output pins (of which 6 can be used as PWM outputs), 6
analog inputs, a 16 MHz ceramic resonator (CSTCE16M0V53-R0), a USB
connection, a power jack, an ICSP header and a reset button.
ARDUINO UNO
Features of Arduino Uno
•Microcontroller: ATmega328
•Operating Voltage: 5V
•Input Voltage (recommended): 7-12V
•Input Voltage (limits): 6-20V
•Digital I/O Pins: 14 (of which 6 provide PWM output)
•Analog Input Pins: 6
•DC Current per I/O Pin: 40 mA
Features of Arduino Uno
•DC Current for 3.3V Pin: 50 mA
•Flash Memory: 32 KB of which 0.5 KB used by bootloader
•SRAM: 2 KB (ATmega328)
•EEPROM: 1 KB (ATmega328)
•Clock Speed: 16 MHz
WORKING
ULTRASONIC SENSOR
 This ultrasonic sensor is IP65 and is made in PVC.
 Ultrasonic Sensors use high frequency ultrasonic
waves to detect the levels of any medium liquid or solid.
This sensor/transmitter is mounted at the top of a tank or
manhole aimed downward
 It transmits waves and measures the time it takes to
receive the return signal back from the water to the
sensor.
 The measured time is then used to output a level in
terms of a precise voltage from 0-10 volts.
WORKING
The Ultrasonic sensor in this project can help to detect the overflow of water .It
is a proximity sensor.
It has a Transmitter and a Receiver. The transmitter transmits the waves ,the
transmitted waves are reflected back as echoes whenever there is any target or
we can say if there is any obstacle present before it.
The received echoes can be used to measure the time taken by the signal to
return back. By calculating the time we can also measure the distance between
the sensor and the obstacle or water. This process is continuously done to monitor
the flow of water.
WORKING
TURBIDITY SENSOR
In case of turbidity sensing, initially we need to set a threshold value for
detecting the quality of pure water.
Whenever the turbidity sensor is used it collects the data regarding the
quality of water now the actual threshold value which we have set is
compared with the current value.
If the threshold value of water is less than the threshold value of pure
water it indicates the water is polluted and immediately the alert message
is sent to the management for taking the immediate action.
TURBIDITY SENSOR
WORKING
WIFI MODULE
The ESP8266 Wi-Fi module is a complete Wi-Fi network where you can easily
connect as a serving Wi-Fi adapter, wireless internet access interface to any
microcontroller based design on its simple connectivity through Serial
Communication or UART interface.
TX is connected to RX which means whatever we want to transmit in ESP8266
will receive by Arduino UNO and vice versa for RX to TX.
WORKING
LCD DISPLAY
The LCD (Liquid Crystal Display)
is a type of display that uses the liquid
crystals for its operation.
Here, we will accept the serial input
from the computer and upload the
sketch to the Arduino. The characters
will be displayed on the LCD.
ADVANTAGES
 A preventative system prevents or eliminates sewage overflow on roads, which is
a major concern in many communities.
 The ultrasonic sensors are effectively used, and the system is designed with a
socially relevant concept in mind, resulting in an impact on hygiene and
cleanliness by simply avoiding the problem of overflowing on streets, as well as
ensuring mandatory cleaning of blockages that cause the sewage level to rise by
registering repeated complaints to random departments unless action is taken.
Low cost and long-lasting device.
ADVANTAGES
We can remotely access the data which is an effective way to save time.
It can help the government to take immediate actions prior the incident happens.
It can reduce 30-40% of extra monitoring funds released by the authority.
There is no necessity for any manpower to recruit.
It prevents stagnation of water , which is the breeding place for several
mosquitoes ,flies which are the carriers of many diseases such as dengue and
malaria .Thereby overcome the health issues.
Applications
CONCLUSION
Integrating features of all hardware components used have been developed in it.
This method contributed to the best working of the unit .Secondly, using the
highly advanced Arduino with the help of growing technology IoT , the project
has been successfully implemented.
Thus the project has been successfully designed and tested by using this we can
build smart and cleaner cities.
FUTURE SCOPE
In the present situation world was driven by the technology. Efficiency and
effectiveness in terms of time and cost are the major aspects leading the todays
technology . Smart devices i.e smart device for detecting the overflow of water
can be widely used which are cost effective. They are flexible and cheaper
devices so they can be used in the future too .This devices can replace the
humans. We just don’t require and human resources for monitoring the flow of
water in the drainage systems we further save the time. This will also overcome
the health issues by providing the clean cities to the citizens
References
Thank You !!!

More Related Content

What's hot

Ashu kumar ppt
Ashu kumar pptAshu kumar ppt
Ashu kumar pptAshu Kumar
 
Automatic water level monitoring and control system using IoT
Automatic water level monitoring and control system using IoTAutomatic water level monitoring and control system using IoT
Automatic water level monitoring and control system using IoTDanish Mehraj
 
Puneet Gaonkar Project
Puneet Gaonkar ProjectPuneet Gaonkar Project
Puneet Gaonkar ProjectPuneet Gaonkar
 
micro electronic capsule
micro electronic capsulemicro electronic capsule
micro electronic capsuleMuhammedAslam77
 
Sewage treatment-system-8
Sewage treatment-system-8Sewage treatment-system-8
Sewage treatment-system-8cheeweishan
 
Automatic Irrigation System Project Report
Automatic Irrigation System Project ReportAutomatic Irrigation System Project Report
Automatic Irrigation System Project ReportEr Gupta
 
Water Level Indicator.pdf
Water Level Indicator.pdfWater Level Indicator.pdf
Water Level Indicator.pdfMDSAZZADULALAM2
 
Thesis - Voice Control Home Automation
Thesis - Voice Control Home AutomationThesis - Voice Control Home Automation
Thesis - Voice Control Home AutomationAbhishek Neb
 
LED WATER LEVEL INDICATOR WITH ALARM
LED WATER LEVEL INDICATOR WITH ALARM LED WATER LEVEL INDICATOR WITH ALARM
LED WATER LEVEL INDICATOR WITH ALARM Aditya Sharma
 
Internet of Things for Underground Drainage and Manhole monitoring System for...
Internet of Things for Underground Drainage and Manhole monitoring System for...Internet of Things for Underground Drainage and Manhole monitoring System for...
Internet of Things for Underground Drainage and Manhole monitoring System for...Muragesh Kabbinakantimath
 
The use of reed beds for the treatment of sewage and wastewater.
The use of reed beds for the treatment of sewage and wastewater.The use of reed beds for the treatment of sewage and wastewater.
The use of reed beds for the treatment of sewage and wastewater.Faisal Ahmed Bappi
 
Mini-Project-1 Report
Mini-Project-1 ReportMini-Project-1 Report
Mini-Project-1 ReportVASAV SHETHNA
 
Water level indicator abstract
Water level indicator abstractWater level indicator abstract
Water level indicator abstractKamesh Mtec
 
Floating solar pv
Floating solar pvFloating solar pv
Floating solar pvvikaspanch
 

What's hot (20)

Automatic water pump controller
Automatic water pump controllerAutomatic water pump controller
Automatic water pump controller
 
Ashu kumar ppt
Ashu kumar pptAshu kumar ppt
Ashu kumar ppt
 
Automatic water level monitoring and control system using IoT
Automatic water level monitoring and control system using IoTAutomatic water level monitoring and control system using IoT
Automatic water level monitoring and control system using IoT
 
09 chlorination
09 chlorination09 chlorination
09 chlorination
 
Puneet Gaonkar Project
Puneet Gaonkar ProjectPuneet Gaonkar Project
Puneet Gaonkar Project
 
micro electronic capsule
micro electronic capsulemicro electronic capsule
micro electronic capsule
 
Sewage treatment-system-8
Sewage treatment-system-8Sewage treatment-system-8
Sewage treatment-system-8
 
Residential Water Heating
Residential Water HeatingResidential Water Heating
Residential Water Heating
 
Automatic Irrigation System Project Report
Automatic Irrigation System Project ReportAutomatic Irrigation System Project Report
Automatic Irrigation System Project Report
 
Home automation using blynk
Home automation using blynkHome automation using blynk
Home automation using blynk
 
Water Level Indicator.pdf
Water Level Indicator.pdfWater Level Indicator.pdf
Water Level Indicator.pdf
 
Thesis - Voice Control Home Automation
Thesis - Voice Control Home AutomationThesis - Voice Control Home Automation
Thesis - Voice Control Home Automation
 
LED WATER LEVEL INDICATOR WITH ALARM
LED WATER LEVEL INDICATOR WITH ALARM LED WATER LEVEL INDICATOR WITH ALARM
LED WATER LEVEL INDICATOR WITH ALARM
 
Water pump automation system
Water pump automation systemWater pump automation system
Water pump automation system
 
Internet of Things for Underground Drainage and Manhole monitoring System for...
Internet of Things for Underground Drainage and Manhole monitoring System for...Internet of Things for Underground Drainage and Manhole monitoring System for...
Internet of Things for Underground Drainage and Manhole monitoring System for...
 
The use of reed beds for the treatment of sewage and wastewater.
The use of reed beds for the treatment of sewage and wastewater.The use of reed beds for the treatment of sewage and wastewater.
The use of reed beds for the treatment of sewage and wastewater.
 
Water level indicator alarm
Water level indicator alarmWater level indicator alarm
Water level indicator alarm
 
Mini-Project-1 Report
Mini-Project-1 ReportMini-Project-1 Report
Mini-Project-1 Report
 
Water level indicator abstract
Water level indicator abstractWater level indicator abstract
Water level indicator abstract
 
Floating solar pv
Floating solar pvFloating solar pv
Floating solar pv
 

Similar to PROJECT PPT (1).pptx

Literature Review on Turbidity Sensor and Arduino for Water Quality Measurement
Literature Review on Turbidity Sensor and Arduino for Water Quality MeasurementLiterature Review on Turbidity Sensor and Arduino for Water Quality Measurement
Literature Review on Turbidity Sensor and Arduino for Water Quality MeasurementIRJET Journal
 
IRJET - Water Monitoring System – IoT
IRJET -  	  Water Monitoring System – IoTIRJET -  	  Water Monitoring System – IoT
IRJET - Water Monitoring System – IoTIRJET Journal
 
IRJET- Robot to Unclog Sewage Channels
IRJET-  	  Robot to Unclog Sewage ChannelsIRJET-  	  Robot to Unclog Sewage Channels
IRJET- Robot to Unclog Sewage ChannelsIRJET Journal
 
IRJET- Design and Implementation of Smart Dustbin using IoT Notifications
IRJET- Design and Implementation of Smart Dustbin using IoT NotificationsIRJET- Design and Implementation of Smart Dustbin using IoT Notifications
IRJET- Design and Implementation of Smart Dustbin using IoT NotificationsIRJET Journal
 
IRJET- Smart Water Monitoring System using IoT
IRJET- Smart Water Monitoring System using IoTIRJET- Smart Water Monitoring System using IoT
IRJET- Smart Water Monitoring System using IoTIRJET Journal
 
IRJET - Smart Drainage Management System
IRJET - Smart Drainage Management SystemIRJET - Smart Drainage Management System
IRJET - Smart Drainage Management SystemIRJET Journal
 
IRJET- IoT based Smart Water Manangement System
IRJET- IoT based Smart Water Manangement SystemIRJET- IoT based Smart Water Manangement System
IRJET- IoT based Smart Water Manangement SystemIRJET Journal
 
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...IRJET Journal
 
Intelligent Farmer Friendly System
Intelligent Farmer Friendly SystemIntelligent Farmer Friendly System
Intelligent Farmer Friendly SystemIJMTST Journal
 
Automation of irrigatioonitoring using tcp server app
Automation of irrigatioonitoring using tcp server appAutomation of irrigatioonitoring using tcp server app
Automation of irrigatioonitoring using tcp server appSandeepMaurya88
 
IoT Based Water Level Meter for Alerting Population about Floods
IoT Based Water Level Meter for Alerting Population about FloodsIoT Based Water Level Meter for Alerting Population about Floods
IoT Based Water Level Meter for Alerting Population about Floodsijtsrd
 
IRJET - Smart Garbage Monitoring System using NodeMCU
IRJET - Smart Garbage Monitoring System using NodeMCUIRJET - Smart Garbage Monitoring System using NodeMCU
IRJET - Smart Garbage Monitoring System using NodeMCUIRJET Journal
 
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...IRJET Journal
 
A Smart Stick For Assisting Blind Peoples
A Smart Stick For Assisting Blind PeoplesA Smart Stick For Assisting Blind Peoples
A Smart Stick For Assisting Blind PeoplesAsia Smith
 
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...IRJET Journal
 
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...IRJET Journal
 
Water Level Monitoring System using IOT
Water Level Monitoring System using IOTWater Level Monitoring System using IOT
Water Level Monitoring System using IOTIRJET Journal
 
Implementation of Internet of Things for Water Quality Monitoring
Implementation of Internet of Things for Water Quality MonitoringImplementation of Internet of Things for Water Quality Monitoring
Implementation of Internet of Things for Water Quality Monitoringijtsrd
 

Similar to PROJECT PPT (1).pptx (20)

Literature Review on Turbidity Sensor and Arduino for Water Quality Measurement
Literature Review on Turbidity Sensor and Arduino for Water Quality MeasurementLiterature Review on Turbidity Sensor and Arduino for Water Quality Measurement
Literature Review on Turbidity Sensor and Arduino for Water Quality Measurement
 
IRJET - Water Monitoring System – IoT
IRJET -  	  Water Monitoring System – IoTIRJET -  	  Water Monitoring System – IoT
IRJET - Water Monitoring System – IoT
 
IRJET- Robot to Unclog Sewage Channels
IRJET-  	  Robot to Unclog Sewage ChannelsIRJET-  	  Robot to Unclog Sewage Channels
IRJET- Robot to Unclog Sewage Channels
 
IRJET- Design and Implementation of Smart Dustbin using IoT Notifications
IRJET- Design and Implementation of Smart Dustbin using IoT NotificationsIRJET- Design and Implementation of Smart Dustbin using IoT Notifications
IRJET- Design and Implementation of Smart Dustbin using IoT Notifications
 
IRJET- Smart Water Monitoring System using IoT
IRJET- Smart Water Monitoring System using IoTIRJET- Smart Water Monitoring System using IoT
IRJET- Smart Water Monitoring System using IoT
 
IRJET - Smart Drainage Management System
IRJET - Smart Drainage Management SystemIRJET - Smart Drainage Management System
IRJET - Smart Drainage Management System
 
IOT PPT.pptx
IOT PPT.pptxIOT PPT.pptx
IOT PPT.pptx
 
DAM SHUTTER 2.pptx
DAM SHUTTER 2.pptxDAM SHUTTER 2.pptx
DAM SHUTTER 2.pptx
 
IRJET- IoT based Smart Water Manangement System
IRJET- IoT based Smart Water Manangement SystemIRJET- IoT based Smart Water Manangement System
IRJET- IoT based Smart Water Manangement System
 
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...
IRJET- Design and Implementation of Wireless based Water Level Monitoring Sys...
 
Intelligent Farmer Friendly System
Intelligent Farmer Friendly SystemIntelligent Farmer Friendly System
Intelligent Farmer Friendly System
 
Automation of irrigatioonitoring using tcp server app
Automation of irrigatioonitoring using tcp server appAutomation of irrigatioonitoring using tcp server app
Automation of irrigatioonitoring using tcp server app
 
IoT Based Water Level Meter for Alerting Population about Floods
IoT Based Water Level Meter for Alerting Population about FloodsIoT Based Water Level Meter for Alerting Population about Floods
IoT Based Water Level Meter for Alerting Population about Floods
 
IRJET - Smart Garbage Monitoring System using NodeMCU
IRJET - Smart Garbage Monitoring System using NodeMCUIRJET - Smart Garbage Monitoring System using NodeMCU
IRJET - Smart Garbage Monitoring System using NodeMCU
 
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...
IRJET - Design of Automated Monitoring Robot for Drainage Systems using IoT P...
 
A Smart Stick For Assisting Blind Peoples
A Smart Stick For Assisting Blind PeoplesA Smart Stick For Assisting Blind Peoples
A Smart Stick For Assisting Blind Peoples
 
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...
Detection of Water Level, Quality and Leakage using Raspberry Pi with Interne...
 
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...
Internet of Things (IoT) based Smart Water Tank Level Monitoring and Motor Pu...
 
Water Level Monitoring System using IOT
Water Level Monitoring System using IOTWater Level Monitoring System using IOT
Water Level Monitoring System using IOT
 
Implementation of Internet of Things for Water Quality Monitoring
Implementation of Internet of Things for Water Quality MonitoringImplementation of Internet of Things for Water Quality Monitoring
Implementation of Internet of Things for Water Quality Monitoring
 

More from 8885684828

vlsi-unit-3-ppt.pptx
vlsi-unit-3-ppt.pptxvlsi-unit-3-ppt.pptx
vlsi-unit-3-ppt.pptx8885684828
 
mosfet ppt.pptx
mosfet ppt.pptxmosfet ppt.pptx
mosfet ppt.pptx8885684828
 
denoising.pptx
denoising.pptxdenoising.pptx
denoising.pptx8885684828
 
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptx
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptxUNIT-1 VLSID-MREC-ECE-Dr.TM.pptx
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptx8885684828
 
verilog basics.ppt
verilog basics.pptverilog basics.ppt
verilog basics.ppt8885684828
 
Basic VLSI.ppt
Basic VLSI.pptBasic VLSI.ppt
Basic VLSI.ppt8885684828
 
literature.pptx
literature.pptxliterature.pptx
literature.pptx8885684828
 
water verflow.pdf
water verflow.pdfwater verflow.pdf
water verflow.pdf8885684828
 

More from 8885684828 (13)

ASCIC.ppt
ASCIC.pptASCIC.ppt
ASCIC.ppt
 
Module-1.pptx
Module-1.pptxModule-1.pptx
Module-1.pptx
 
Module-4.pdf
Module-4.pdfModule-4.pdf
Module-4.pdf
 
vlsi-unit-3-ppt.pptx
vlsi-unit-3-ppt.pptxvlsi-unit-3-ppt.pptx
vlsi-unit-3-ppt.pptx
 
mosfet ppt.pptx
mosfet ppt.pptxmosfet ppt.pptx
mosfet ppt.pptx
 
denoising.pptx
denoising.pptxdenoising.pptx
denoising.pptx
 
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptx
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptxUNIT-1 VLSID-MREC-ECE-Dr.TM.pptx
UNIT-1 VLSID-MREC-ECE-Dr.TM.pptx
 
verilog basics.ppt
verilog basics.pptverilog basics.ppt
verilog basics.ppt
 
Basic VLSI.ppt
Basic VLSI.pptBasic VLSI.ppt
Basic VLSI.ppt
 
literature.pptx
literature.pptxliterature.pptx
literature.pptx
 
Module-5A.pdf
Module-5A.pdfModule-5A.pdf
Module-5A.pdf
 
LPVLSI.ppt
LPVLSI.pptLPVLSI.ppt
LPVLSI.ppt
 
water verflow.pdf
water verflow.pdfwater verflow.pdf
water verflow.pdf
 

Recently uploaded

Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptSAURABHKUMAR892774
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsSachinPawar510423
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitterShivangiSharma879191
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the weldingMuhammadUzairLiaqat
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - GuideGOPINATHS437943
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfAsst.prof M.Gokilavani
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHC Sai Kiran
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptMadan Karki
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxsomshekarkn64
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catcherssdickerson1
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)Dr SOUNDIRARAJ N
 
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgUnit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgsaravananr517913
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxk795866
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx959SahilShah
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 

Recently uploaded (20)

POWER SYSTEMS-1 Complete notes examples
POWER SYSTEMS-1 Complete notes  examplesPOWER SYSTEMS-1 Complete notes  examples
POWER SYSTEMS-1 Complete notes examples
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.ppt
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documents
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter
 
welding defects observed during the welding
welding defects observed during the weldingwelding defects observed during the welding
welding defects observed during the welding
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - Guide
 
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdfCCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
CCS355 Neural Network & Deep Learning UNIT III notes and Question bank .pdf
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
Introduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECHIntroduction to Machine Learning Unit-3 for II MECH
Introduction to Machine Learning Unit-3 for II MECH
 
Indian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.pptIndian Dairy Industry Present Status and.ppt
Indian Dairy Industry Present Status and.ppt
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptx
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
 
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
UNIT III ANALOG ELECTRONICS (BASIC ELECTRONICS)
 
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfgUnit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
Unit7-DC_Motors nkkjnsdkfnfcdfknfdgfggfg
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptx
 
young call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Serviceyoung call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Service
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 

PROJECT PPT (1).pptx

  • 1. A SMART POLLUTED WATER OVERLOAD DRAINAGE DETECTION AND ALERT SYSTEM: BASED ON IOT MALLA REDDY ENGINEERING COLLEGE(A) Hyderabad Department of Electronics and Communication Engineering Under the guidance of: Dr. Vasudeva Bevara Assistant Professor Department of ECE Student Names and Roll Numbers: Mohd Wajid 19j41a0438 Chinta Naga Varshitha 19j41a0416 Gandla Akash Varma 19j41a0424 Dasari Saketh 20j45a0404
  • 2. CONTENTS •Introduction •Abstract •Problem statement •Proposed method •Block diagram •Components •Arduino Uno •Features of Arduino Uno •Working and Principle •Advantages •Applications •Conclusion •Future scope •References
  • 3. The main objective behind this project is to develop smart cities by implementing new Internet of Things(IoT) methods in ourbday ro day life. We can provide Cleaner cities by using an automated device which can monitor the turbidity of water and detect the overflow of drainage water . Cleaner cities and intelligent management of drainage in the city. The prior information regarding the overflow is sent to the respective authorities. This methods helps in detection of drainage water level and blockages in the drainage.Checking water flow rate continuously, as well as sending to monitor if the water level is outside of an expected normal range.We can obtain an effective low-cost and flexible solution for condition monitoring and infrastructure management in the city. Introduction
  • 4. ABSTRACT The new Internet of Things (IoT) applications are enabling Smart City initiatives worldwide. It provides the ability to remotely monitor, manage and control devices and to create a new insights and actionable information from massive stream of real time data. In our project, we have designed an advanced and automated device that can identify overloaded polluted drainage, which is responsible for water-borne disease and unexpected floods. We are using smart ultrasonic and turbidity sensors with an Ethernet shield integrated Arduino UNO.
  • 5. ABSTRACT This proposed model’s most vital side is the remote data access system using IP address and the webserver. This research is adequate for city corporations to advance and develop their city to be more delighter, and reduce their fund used for extra resources of city corporation’s cleaner . For data access methods, we are using the city Wi-Fi router for monitoring report. Materials used here are very uncomplicated and inexpensive but adequate to make an advanced automation intelligence system. In this modern scientific era, to lead a comfortable life, an automation system can help to develop a city more than the old system.
  • 6. PROBLEM STATEMENT The Underground Drainage Systems are maintained by Cleaning offices in India to make clean healthy surroundings and hence environment. But often due to poor maintenance of the underground drainage system, the water in the drainage system gets mixed up with the pure water and consumption of this polluted water leads to water borne diseases. The sudden changes in the atmosphere and variations in the climate during different seasons the drainage gets blocked or water logged, making environment unhealthy and disturbs the healthy routine of common people.
  • 7. PROPOSED METHOD To overcome all these issues in the underground drainage system we have designed the smart drainage system that will have:  Sensors to detect Turbidity of water, blockage and Overflow.  The intelligence of sensors and system can clogging the impeding within the system and will offer the details of the location and different data for further actions. These entire data packet will be jointly sent by the gateway node and stored at the cloud all the system, we are able to simply monitor, modify and rectify the issues in real time.
  • 9. Components HARDWARE Arduino IDE Proteus SOFTWARE Power supply unit(P.S.U) Arduino uno Ultrasonic sensor Turbidity sensor Lcd display WIFI module
  • 10. Arduino Uno •Arduino UNO is a low-cost, flexible, and easy-to-use programmable open-source microcontroller board that can be integrated into variety of electronic projects . •This board can be interfaced with other Arduino boards, Arduino shields, Raspberry Pi boards and can control relays, LEDs, servos, and motors as an output •Arduino Uno is a microcontroller board based on the ATmega328P (datasheet). • It has 14 digital input/output pins (of which 6 can be used as PWM outputs), 6 analog inputs, a 16 MHz ceramic resonator (CSTCE16M0V53-R0), a USB connection, a power jack, an ICSP header and a reset button.
  • 12. Features of Arduino Uno •Microcontroller: ATmega328 •Operating Voltage: 5V •Input Voltage (recommended): 7-12V •Input Voltage (limits): 6-20V •Digital I/O Pins: 14 (of which 6 provide PWM output) •Analog Input Pins: 6 •DC Current per I/O Pin: 40 mA
  • 13. Features of Arduino Uno •DC Current for 3.3V Pin: 50 mA •Flash Memory: 32 KB of which 0.5 KB used by bootloader •SRAM: 2 KB (ATmega328) •EEPROM: 1 KB (ATmega328) •Clock Speed: 16 MHz
  • 14. WORKING ULTRASONIC SENSOR  This ultrasonic sensor is IP65 and is made in PVC.  Ultrasonic Sensors use high frequency ultrasonic waves to detect the levels of any medium liquid or solid. This sensor/transmitter is mounted at the top of a tank or manhole aimed downward  It transmits waves and measures the time it takes to receive the return signal back from the water to the sensor.  The measured time is then used to output a level in terms of a precise voltage from 0-10 volts.
  • 15. WORKING The Ultrasonic sensor in this project can help to detect the overflow of water .It is a proximity sensor. It has a Transmitter and a Receiver. The transmitter transmits the waves ,the transmitted waves are reflected back as echoes whenever there is any target or we can say if there is any obstacle present before it. The received echoes can be used to measure the time taken by the signal to return back. By calculating the time we can also measure the distance between the sensor and the obstacle or water. This process is continuously done to monitor the flow of water.
  • 16. WORKING TURBIDITY SENSOR In case of turbidity sensing, initially we need to set a threshold value for detecting the quality of pure water. Whenever the turbidity sensor is used it collects the data regarding the quality of water now the actual threshold value which we have set is compared with the current value. If the threshold value of water is less than the threshold value of pure water it indicates the water is polluted and immediately the alert message is sent to the management for taking the immediate action.
  • 18. WORKING WIFI MODULE The ESP8266 Wi-Fi module is a complete Wi-Fi network where you can easily connect as a serving Wi-Fi adapter, wireless internet access interface to any microcontroller based design on its simple connectivity through Serial Communication or UART interface. TX is connected to RX which means whatever we want to transmit in ESP8266 will receive by Arduino UNO and vice versa for RX to TX.
  • 19. WORKING LCD DISPLAY The LCD (Liquid Crystal Display) is a type of display that uses the liquid crystals for its operation. Here, we will accept the serial input from the computer and upload the sketch to the Arduino. The characters will be displayed on the LCD.
  • 20. ADVANTAGES  A preventative system prevents or eliminates sewage overflow on roads, which is a major concern in many communities.  The ultrasonic sensors are effectively used, and the system is designed with a socially relevant concept in mind, resulting in an impact on hygiene and cleanliness by simply avoiding the problem of overflowing on streets, as well as ensuring mandatory cleaning of blockages that cause the sewage level to rise by registering repeated complaints to random departments unless action is taken. Low cost and long-lasting device.
  • 21. ADVANTAGES We can remotely access the data which is an effective way to save time. It can help the government to take immediate actions prior the incident happens. It can reduce 30-40% of extra monitoring funds released by the authority. There is no necessity for any manpower to recruit. It prevents stagnation of water , which is the breeding place for several mosquitoes ,flies which are the carriers of many diseases such as dengue and malaria .Thereby overcome the health issues.
  • 23. CONCLUSION Integrating features of all hardware components used have been developed in it. This method contributed to the best working of the unit .Secondly, using the highly advanced Arduino with the help of growing technology IoT , the project has been successfully implemented. Thus the project has been successfully designed and tested by using this we can build smart and cleaner cities.
  • 24. FUTURE SCOPE In the present situation world was driven by the technology. Efficiency and effectiveness in terms of time and cost are the major aspects leading the todays technology . Smart devices i.e smart device for detecting the overflow of water can be widely used which are cost effective. They are flexible and cheaper devices so they can be used in the future too .This devices can replace the humans. We just don’t require and human resources for monitoring the flow of water in the drainage systems we further save the time. This will also overcome the health issues by providing the clean cities to the citizens