Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion

Decentralized treatment of wastewater has been identified as an area of growth for cyber-enabled sensing and control. One such system that would benefit from embedded cyber components is urine diversion. This research sought to create a cyber-physical system for wastewater collection and treatment....

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Main Authors: Daniella Saetta, Arsh Padda, Xiushuang Li, Carlos Leyva, Pitu B. Mirchandani, Dragan Boscovic, Treavor H. Boyer
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8933439/
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spelling doaj-33c5ca54966c49559adb022db442ac3b2021-03-30T00:39:59ZengIEEEIEEE Access2169-35362019-01-01718247718248810.1109/ACCESS.2019.29599928933439Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine DiversionDaniella Saetta0https://orcid.org/0000-0003-3107-1154Arsh Padda1Xiushuang Li2Carlos Leyva3Pitu B. Mirchandani4Dragan Boscovic5Treavor H. Boyer6School of Sustainable Engineering and the Built Environment (SSEBE), Arizona State University, Tempe, AZ, USASchool of Computer, Informatics and Decision Systems Engineering (CIDSE), Arizona State University, Tempe, AZ, USASchool of Computer, Informatics and Decision Systems Engineering (CIDSE), Arizona State University, Tempe, AZ, USAOffice of Knowledge Enterprise Development, Arizona State University, Tempe, AZ, USASchool of Computer, Informatics and Decision Systems Engineering (CIDSE), Arizona State University, Tempe, AZ, USASchool of Computer, Informatics and Decision Systems Engineering (CIDSE), Arizona State University, Tempe, AZ, USASchool of Sustainable Engineering and the Built Environment (SSEBE), Arizona State University, Tempe, AZ, USADecentralized treatment of wastewater has been identified as an area of growth for cyber-enabled sensing and control. One such system that would benefit from embedded cyber components is urine diversion. This research sought to create a cyber-physical system for wastewater collection and treatment. Two subsystems were integrated into the CPS: sensing and actuation. Real-time sensing using low-cost pH and conductivity sensors was used to monitor urine chemistry. Actuation was used to deliver urine to the system and to control urine chemistry. Once integrated, the system used the sensing data to determine when to actuate urine chemistry control pumps. By using urine diversion as a test case, two demonstrations were able to show the applicability of the system created. The first demonstration was able to characterize the flow characteristics of the physical system. The second demonstration was able to mimic and inhibit urea hydrolysis under realistic conditions. Ultimately, the use of this novel CPS approach was able to confirm the benefits of sensing and actuation in wastewater collection and treatment within buildings.https://ieeexplore.ieee.org/document/8933439/Cyber-physical systemsInternet of Thingsdata collectionwastewaterdecentralized wastewater treatmenturine diversion
collection DOAJ
language English
format Article
sources DOAJ
author Daniella Saetta
Arsh Padda
Xiushuang Li
Carlos Leyva
Pitu B. Mirchandani
Dragan Boscovic
Treavor H. Boyer
spellingShingle Daniella Saetta
Arsh Padda
Xiushuang Li
Carlos Leyva
Pitu B. Mirchandani
Dragan Boscovic
Treavor H. Boyer
Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
IEEE Access
Cyber-physical systems
Internet of Things
data collection
wastewater
decentralized wastewater treatment
urine diversion
author_facet Daniella Saetta
Arsh Padda
Xiushuang Li
Carlos Leyva
Pitu B. Mirchandani
Dragan Boscovic
Treavor H. Boyer
author_sort Daniella Saetta
title Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
title_short Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
title_full Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
title_fullStr Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
title_full_unstemmed Water and Wastewater Building CPS: Creation of Cyber-Physical Wastewater Collection System Centered on Urine Diversion
title_sort water and wastewater building cps: creation of cyber-physical wastewater collection system centered on urine diversion
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Decentralized treatment of wastewater has been identified as an area of growth for cyber-enabled sensing and control. One such system that would benefit from embedded cyber components is urine diversion. This research sought to create a cyber-physical system for wastewater collection and treatment. Two subsystems were integrated into the CPS: sensing and actuation. Real-time sensing using low-cost pH and conductivity sensors was used to monitor urine chemistry. Actuation was used to deliver urine to the system and to control urine chemistry. Once integrated, the system used the sensing data to determine when to actuate urine chemistry control pumps. By using urine diversion as a test case, two demonstrations were able to show the applicability of the system created. The first demonstration was able to characterize the flow characteristics of the physical system. The second demonstration was able to mimic and inhibit urea hydrolysis under realistic conditions. Ultimately, the use of this novel CPS approach was able to confirm the benefits of sensing and actuation in wastewater collection and treatment within buildings.
topic Cyber-physical systems
Internet of Things
data collection
wastewater
decentralized wastewater treatment
urine diversion
url https://ieeexplore.ieee.org/document/8933439/
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