PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.

The pH neutralization process is a highly non-linear process and time delay system that is difficult to control and to accurately model mathematically. Therefore, the empirical method, which needs reliable experimental data to represent the process dynamics, is often used. In this paper, the perform...

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Main Authors: Zainal, Azavitra, Abdul Wahab, Norhaliza, Yusof, Mohd. Ismail
Format: Article
Language:English
Published: International Islamic University Malaysia-IIUM 2023
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Online Access:http://eprints.utm.my/104959/1/AzavitraZainal2023_PLCBasedPIDControllerforRealTimePHNeutralization.pdf
http://eprints.utm.my/104959/
http://dx.doi.org/10.31436/iiumej.v24i1.2366
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.1049592024-04-01T06:28:47Z http://eprints.utm.my/104959/ PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent. Zainal, Azavitra Abdul Wahab, Norhaliza Yusof, Mohd. Ismail TK Electrical engineering. Electronics Nuclear engineering The pH neutralization process is a highly non-linear process and time delay system that is difficult to control and to accurately model mathematically. Therefore, the empirical method, which needs reliable experimental data to represent the process dynamics, is often used. In this paper, the performance of the PLC-based PID controller was studied using a different adjustment of the acid dosing pump stroke rate in the pH neutralization process. The pH neutralization process is a single-input, single-output system where the manipulated variable is the alkali dosing pump stroke rate, the controlled variable is pH, and the acid dosing pump stroke rate is set as a constant. The acid dosing pump stroke rate was adjusted to 10%, 15% and 25%. The results showed that the best performance of the PID controller was based on setpoint tracking when the setting of the acid dosing pump stroke rate was set at 10%, which could be used as experimental data in the empirical method. In addition, the real-time control system was integrated between PLC and MATLAB using National Instruments OPC server to access the experimental data in real-time, conduct simulation, and to develop the advanced control in the future. International Islamic University Malaysia-IIUM 2023 Article PeerReviewed application/pdf en http://eprints.utm.my/104959/1/AzavitraZainal2023_PLCBasedPIDControllerforRealTimePHNeutralization.pdf Zainal, Azavitra and Abdul Wahab, Norhaliza and Yusof, Mohd. Ismail (2023) PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent. IIUM Engineering Journal, 24 (1). pp. 244-255. ISSN 1511-788X http://dx.doi.org/10.31436/iiumej.v24i1.2366 DOI: 10.31436/iiumej.v24i1.2366
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Zainal, Azavitra
Abdul Wahab, Norhaliza
Yusof, Mohd. Ismail
PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
description The pH neutralization process is a highly non-linear process and time delay system that is difficult to control and to accurately model mathematically. Therefore, the empirical method, which needs reliable experimental data to represent the process dynamics, is often used. In this paper, the performance of the PLC-based PID controller was studied using a different adjustment of the acid dosing pump stroke rate in the pH neutralization process. The pH neutralization process is a single-input, single-output system where the manipulated variable is the alkali dosing pump stroke rate, the controlled variable is pH, and the acid dosing pump stroke rate is set as a constant. The acid dosing pump stroke rate was adjusted to 10%, 15% and 25%. The results showed that the best performance of the PID controller was based on setpoint tracking when the setting of the acid dosing pump stroke rate was set at 10%, which could be used as experimental data in the empirical method. In addition, the real-time control system was integrated between PLC and MATLAB using National Instruments OPC server to access the experimental data in real-time, conduct simulation, and to develop the advanced control in the future.
format Article
author Zainal, Azavitra
Abdul Wahab, Norhaliza
Yusof, Mohd. Ismail
author_facet Zainal, Azavitra
Abdul Wahab, Norhaliza
Yusof, Mohd. Ismail
author_sort Zainal, Azavitra
title PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
title_short PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
title_full PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
title_fullStr PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
title_full_unstemmed PLC-based PID controller for real-time pH neutralization process using palm oil mill effluent.
title_sort plc-based pid controller for real-time ph neutralization process using palm oil mill effluent.
publisher International Islamic University Malaysia-IIUM
publishDate 2023
url http://eprints.utm.my/104959/1/AzavitraZainal2023_PLCBasedPIDControllerforRealTimePHNeutralization.pdf
http://eprints.utm.my/104959/
http://dx.doi.org/10.31436/iiumej.v24i1.2366
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