Automated Urban Drinking Water Supply Control and Water Theft Identification System

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Automated urban drinking water supply control and water theft identification system Synopsis:  Thi s water pl ant moni tori ng and control system by impl ementi ng Supervisory Control and Data Acquisition is mainly to collect the real time parameters and to control if it exceeds they consume excess amount of water. Implementation of this project in a domestic area is to monitor and control the real time water flow to houses, and intimation system along with safe and secure operations. This project is one of the major applications of the water distribution.  The proposed model has a supervisor (PC) which Communicates with the remote terminal unit, processing the variable parameters and controlling the sy stems. The RTU is a lo cal contro ll er in di st ri buted pr ocesses environmental which acquires the data from sensors, process the collected data puts the required data together, forming the frame for transmitting to the SUPERVISORY CONTROLS (S.C). RTU also receives and processes Control commands from S.C. and executes them accordingly. The communication utilizes a full duplex communication for data transmission between S.C. and RTU the communication through wireless by using Zigbee. Existing System Remote measurement and control by using wired communication Distance of the RTU and SC unit is minimum Each unit have own monitoring section Highly expensive It consume more power Less reliability

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Automated urban drinking water supply control and watertheft identification system

Synopsis:

  This water plant monitoring and control system by implementing

Supervisory Control and Data Acquisition is mainly to collect the real time

parameters and to control if it exceeds they consume excess amount of 

water. Implementation of this project in a domestic area is to monitor and

control the real time water flow to houses, and intimation system along with

safe and secure operations. This project is one of the major applications of 

the water distribution.

 The proposed model has a supervisor (PC) which Communicates with

the remote terminal unit, processing the variable parameters and controlling

the systems. The RTU is a local controller in distributed processes

environmental which acquires the data from sensors, process the collected

data puts the required data together, forming the frame for transmitting to

the SUPERVISORY CONTROLS (S.C). RTU also receives and processes Control

commands from S.C. and executes them accordingly. The communication

utilizes a full duplex communication for data transmission between S.C. and

RTU the communication through wireless by using Zigbee.

Existing System

Remote measurement and control by using wired communication

Distance of the RTU and SC unit is minimum

Each unit have own monitoring section

Highly expensive

It consume more power

Less reliability

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Proposed System:

Remote measurement and control by using wireless communication

One monitoring section is enough to monitor whole unit

It consume less power

Low expensive

High reliability

Block Diagram:

Remote Terminal Unit:

Water Flow

Sensor

Embedded

Platform

Communicatio

n Module

 Touch Sensor

Zigbee Module

Driver Module

Valve Control

Motor Control

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System Control Unit:

Hardware Modules:

Microcontroller Module

Zigbee Module

Serial Communication

 Touch Sensor

Water Flow sensor

Driver Unit

Software Modules:

MPLAB IDE

PICKIT2

ORCAD

Visual Basic6

Applications:

Automation

Security systems

Remote control

Computer peripherals

Zigbee ModuleCommunicatio

n Module

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personal health care