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A Wireless Sensor Network Model for E-Metering and Fault Identification in Smart Water Distribution Systems
Author(s) -
Shruthi Venkat,
R. Ranjith,
Mohammed Shahanas,
Dr Bagavathi,
P Sivakumar,
William Cosgrove,
Daniel Loucks,
Eduardo Nogueira Cunha,
Carlos Eduardo,
Trabuco Drea,
Ali Sadeghioon,
Nicole Metje,
David Chapman,
Carl Anthony,
Albert Rosich,
Fatiha Nejjari,
Arindam Saravanan,
Vishakh Das,
Iyer,
Michael Allen,
Ami Preis,
Mudasser Iqbal,
Andrew Whittle,
Sarper Seung Won Lee,
Sarp,
Jin Dong,
Joon Jeon,
Kim Ha,
M Romano,
Z Kapelan,
D Savic,
Preeja Sreekanth Narendran,
Maneesha Pradeep,
Ramesh Vinodini
Publication year - 2019
Publication title -
international journal of innovative technology and exploring engineering
Language(s) - English
Resource type - Journals
ISSN - 2278-3075
DOI - 10.35940/ijitee.j1039.08810s19
Subject(s) - software deployment , wireless sensor network , computer science , real time computing , smart meter , data collection , metering mode , embedded system , computer network , engineering , smart grid , electrical engineering , statistics , operating system , mechanical engineering , mathematics
Water distribution system is a network that supplies water to all the consumers through different means. Proper means of providing water to houses without compromising in quantity and quality is always a challenge. As it is a huge network keeping track of the utilization is difficult for the utility. Hence through this project we come up with a solution to solve this issue. Current technologies like Low Power Wide Area Networks, LoRa and sensor deployment techniques have been in research and were also tested in few rural areas but issues due to hardware deployment and large scale real time implementation was a challenge hence through this system we aim to create and simulate a real time scenario to test a sensor network model that could be implemented in large scale further. This project aims in building a wireless sensor network model for a smart water distribution system. In this system there is bidirectional communication between the consumer and the utility. Each house has a meter through which the amount of water consumed is sent to the utility board. The data has two fields containing the house ID and the data (water consumed); it is being sent to the data collection unit (DCU) which in-turn sends it to the central server so that the consumption is monitored in real time. All this is simulated using NETSIM and MATLAB.

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