Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control

The paper presents the improvement of precision control on pneumatic system pressure using Finite-time Prescribed Performance Control with the Fractional-Order Proportional, Integral, and Derivative (FOPID-FTPPC) control. The control strategy is proposed to overcome the nonlinearity produced by the...

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Main Authors: Mohd Iskandar Putra, Azahar, Addie Irawan, Hashim
Format: Conference or Workshop Item
Language:English
Published: 2022
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/36985/1/Improving%20pressure%20valve%20precision%20using%20finite-time%20prescribed%20performance%20with%20fractional-order%20proportional%2C%20integral%20and%20derivative%20control.pdf
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author Mohd Iskandar Putra, Azahar
Addie Irawan, Hashim
author_facet Mohd Iskandar Putra, Azahar
Addie Irawan, Hashim
author_sort Mohd Iskandar Putra, Azahar
collection UMP
description The paper presents the improvement of precision control on pneumatic system pressure using Finite-time Prescribed Performance Control with the Fractional-Order Proportional, Integral, and Derivative (FOPID-FTPPC) control. The control strategy is proposed to overcome the nonlinearity produced by the pneumatic system in regulating the pressure on positioning operation. The study was conducted through several experiments with a 5/3-way pneumatic proportional valve that configured with pressure transducers as feedback responses. The study was done with two different types of common input trajectories: step and sinusoidal inputs. The proposed FOPIDFTPPC controller outperforms the FOPID controller by 26% in terms of minimizing the overshoot of the step input trajectory. On the other hand, the proposed controller exhibits significant performance with a sine wave input trajectory, and the advantage of its integration with FTCPPC frameworks allows it to achieve steady state performance even more quickly. The findings demonstrate that the proposed the proposed FOPID-FTPPC controller can regulate the pneumatic systems pressures while eliminating steady-state errors, fast response as well as reducing the overshoot.
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spelling UMPir369852023-02-17T09:12:28Z http://umpir.ump.edu.my/id/eprint/36985/ Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control Mohd Iskandar Putra, Azahar Addie Irawan, Hashim T Technology (General) TA Engineering (General). Civil engineering (General) TK Electrical engineering. Electronics Nuclear engineering The paper presents the improvement of precision control on pneumatic system pressure using Finite-time Prescribed Performance Control with the Fractional-Order Proportional, Integral, and Derivative (FOPID-FTPPC) control. The control strategy is proposed to overcome the nonlinearity produced by the pneumatic system in regulating the pressure on positioning operation. The study was conducted through several experiments with a 5/3-way pneumatic proportional valve that configured with pressure transducers as feedback responses. The study was done with two different types of common input trajectories: step and sinusoidal inputs. The proposed FOPIDFTPPC controller outperforms the FOPID controller by 26% in terms of minimizing the overshoot of the step input trajectory. On the other hand, the proposed controller exhibits significant performance with a sine wave input trajectory, and the advantage of its integration with FTCPPC frameworks allows it to achieve steady state performance even more quickly. The findings demonstrate that the proposed the proposed FOPID-FTPPC controller can regulate the pneumatic systems pressures while eliminating steady-state errors, fast response as well as reducing the overshoot. 2022-11-15 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/36985/1/Improving%20pressure%20valve%20precision%20using%20finite-time%20prescribed%20performance%20with%20fractional-order%20proportional%2C%20integral%20and%20derivative%20control.pdf Mohd Iskandar Putra, Azahar and Addie Irawan, Hashim (2022) Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control. In: The 6th National Conference for Postgraduate Research (NCON-PGR 2022) , 15 November 2022 , Virtual Conference, Universiti Malaysia Pahang, Malaysia. p. 132.. https://ncon-pgr.ump.edu.my/index.php/en/?option=com_fileman&view=file&routed=1&name=E-BOOK%20NCON%202022%20.pdf&folder=E-BOOK%20NCON%202022&container=fileman-files
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
Mohd Iskandar Putra, Azahar
Addie Irawan, Hashim
Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title_full Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title_fullStr Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title_full_unstemmed Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title_short Improving pressure valve precision using finite-time prescribed performance with fractional-order proportional, integral and derivative control
title_sort improving pressure valve precision using finite time prescribed performance with fractional order proportional integral and derivative control
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
url http://umpir.ump.edu.my/id/eprint/36985/1/Improving%20pressure%20valve%20precision%20using%20finite-time%20prescribed%20performance%20with%20fractional-order%20proportional%2C%20integral%20and%20derivative%20control.pdf
work_keys_str_mv AT mohdiskandarputraazahar improvingpressurevalveprecisionusingfinitetimeprescribedperformancewithfractionalorderproportionalintegralandderivativecontrol
AT addieirawanhashim improvingpressurevalveprecisionusingfinitetimeprescribedperformancewithfractionalorderproportionalintegralandderivativecontrol