Research on first order delays system automation

Many of industrial plant require high performance and linear operation; higher density position and/or incremental PID can be used to integrate large amounts of control methodology in a single methodology. This work, proposes a developed method to design PID controller (PID) with optimal-tunable gai...

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Main Authors: Avazpour, Mohammad Reza, Piltan, Farzin, Mazloom, Mohammad Hadi, Sahamijoo, Amirzubir, Ghiasi, Hootan, Sulaiman, Nasri
Format: Article
Language:English
Published: NADIA 2015
Online Access:http://psasir.upm.edu.my/id/eprint/46153/1/Research%20on%20first%20order%20delays%20system%20automation.pdf
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author Avazpour, Mohammad Reza
Piltan, Farzin
Mazloom, Mohammad Hadi
Sahamijoo, Amirzubir
Ghiasi, Hootan
Sulaiman, Nasri
author_facet Avazpour, Mohammad Reza
Piltan, Farzin
Mazloom, Mohammad Hadi
Sahamijoo, Amirzubir
Ghiasi, Hootan
Sulaiman, Nasri
author_sort Avazpour, Mohammad Reza
collection UPM
description Many of industrial plant require high performance and linear operation; higher density position and/or incremental PID can be used to integrate large amounts of control methodology in a single methodology. This work, proposes a developed method to design PID controller (PID) with optimal-tunable gains method using PC-based method. Many industrial processes can be represented by a first order model. The time delay occurs when a sensor or an actuator are used with a physical separation. The method used to design a PID is to design it as Proportional – derivative controller (PDC) and proportional – integral controller (PIC) connected in parallel through a summer. PIC is designed by accumulating the output of PDC. This method contributes to avoid writing a huge number of fuzzy rules and to reduce the memory considerations in digital design.
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spelling upm.eprints-461532022-03-22T08:21:58Z http://psasir.upm.edu.my/id/eprint/46153/ Research on first order delays system automation Avazpour, Mohammad Reza Piltan, Farzin Mazloom, Mohammad Hadi Sahamijoo, Amirzubir Ghiasi, Hootan Sulaiman, Nasri Many of industrial plant require high performance and linear operation; higher density position and/or incremental PID can be used to integrate large amounts of control methodology in a single methodology. This work, proposes a developed method to design PID controller (PID) with optimal-tunable gains method using PC-based method. Many industrial processes can be represented by a first order model. The time delay occurs when a sensor or an actuator are used with a physical separation. The method used to design a PID is to design it as Proportional – derivative controller (PDC) and proportional – integral controller (PIC) connected in parallel through a summer. PIC is designed by accumulating the output of PDC. This method contributes to avoid writing a huge number of fuzzy rules and to reduce the memory considerations in digital design. NADIA 2015 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/46153/1/Research%20on%20first%20order%20delays%20system%20automation.pdf Avazpour, Mohammad Reza and Piltan, Farzin and Mazloom, Mohammad Hadi and Sahamijoo, Amirzubir and Ghiasi, Hootan and Sulaiman, Nasri (2015) Research on first order delays system automation. International Journal of Grid Distribution Computing, 8 (4). pp. 211-224. ISSN 2005-4262; ESSN: 2207-6379 https://nadiapub.com/journals/ijgdc/ijgdc-contents/ijgdc-vol-8-no-4-2015/ 10.14257/ijgdc.2015.8.4.20
spellingShingle Avazpour, Mohammad Reza
Piltan, Farzin
Mazloom, Mohammad Hadi
Sahamijoo, Amirzubir
Ghiasi, Hootan
Sulaiman, Nasri
Research on first order delays system automation
title Research on first order delays system automation
title_full Research on first order delays system automation
title_fullStr Research on first order delays system automation
title_full_unstemmed Research on first order delays system automation
title_short Research on first order delays system automation
title_sort research on first order delays system automation
url http://psasir.upm.edu.my/id/eprint/46153/1/Research%20on%20first%20order%20delays%20system%20automation.pdf
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AT ghiasihootan researchonfirstorderdelayssystemautomation
AT sulaimannasri researchonfirstorderdelayssystemautomation