Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning

The purpose of the research is tracking control to follow the input reference signal such as step, ramp, parabolic, and high order reference stably. The challenge is rising when high order input references, such as parabolic or polynomial, are used in the advanced system. Like in satellite and missi...

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Main Authors: Alfian Ma'Arif, Adha Imam Cahyadi, Samiadji Herdjunanto, Oyas Wahyunggoro
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9214820/
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spelling doaj-5f352b228dde46adb603620c4ad215142021-03-30T04:25:22ZengIEEEIEEE Access2169-35362020-01-01818273118274110.1109/ACCESS.2020.30291159214820Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method TuningAlfian Ma'Arif0https://orcid.org/0000-0002-3482-971XAdha Imam Cahyadi1Samiadji Herdjunanto2Oyas Wahyunggoro3Department of Electrical Engineering, Universitas Ahmad Dahlan, Yogyakarta, IndonesiaDepartment of Electrical Engineering, Universitas Gadjah Mada, Yogyakarta, IndonesiaDepartment of Electrical Engineering, Universitas Gadjah Mada, Yogyakarta, IndonesiaDepartment of Electrical Engineering, Universitas Gadjah Mada, Yogyakarta, IndonesiaThe purpose of the research is tracking control to follow the input reference signal such as step, ramp, parabolic, and high order reference stably. The challenge is rising when high order input references, such as parabolic or polynomial, are used in the advanced system. Like in satellite and missile launcher systems, the triple integrator systems have to follow parabolic or polynomial trajectory with high stability required. The research proposed an integrals state feedback controller to combine simple state feedback control with cascade-layered integral control. The order of the input reference defines the structure and number of integrals used. Along with Coefficient Diagram Method in its tuning process, the proposed controller is guaranteed to have good stability and zero steady-state error. Simulation results and mathematical proofs of stability and zero steady-state error are provided on the paper. The proposed method can follow various input references such as the ramp, parabolic, polynomial, and higher-order reference based on the simulation and mathematical proofs. The stability using the pole location also shown the negative poles that give a stable system.https://ieeexplore.ieee.org/document/9214820/Integrals controlstate feedbacktracking controlinput referencecoefficient diagram
collection DOAJ
language English
format Article
sources DOAJ
author Alfian Ma'Arif
Adha Imam Cahyadi
Samiadji Herdjunanto
Oyas Wahyunggoro
spellingShingle Alfian Ma'Arif
Adha Imam Cahyadi
Samiadji Herdjunanto
Oyas Wahyunggoro
Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
IEEE Access
Integrals control
state feedback
tracking control
input reference
coefficient diagram
author_facet Alfian Ma'Arif
Adha Imam Cahyadi
Samiadji Herdjunanto
Oyas Wahyunggoro
author_sort Alfian Ma'Arif
title Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
title_short Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
title_full Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
title_fullStr Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
title_full_unstemmed Tracking Control of High Order Input Reference Using Integrals State Feedback and Coefficient Diagram Method Tuning
title_sort tracking control of high order input reference using integrals state feedback and coefficient diagram method tuning
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description The purpose of the research is tracking control to follow the input reference signal such as step, ramp, parabolic, and high order reference stably. The challenge is rising when high order input references, such as parabolic or polynomial, are used in the advanced system. Like in satellite and missile launcher systems, the triple integrator systems have to follow parabolic or polynomial trajectory with high stability required. The research proposed an integrals state feedback controller to combine simple state feedback control with cascade-layered integral control. The order of the input reference defines the structure and number of integrals used. Along with Coefficient Diagram Method in its tuning process, the proposed controller is guaranteed to have good stability and zero steady-state error. Simulation results and mathematical proofs of stability and zero steady-state error are provided on the paper. The proposed method can follow various input references such as the ramp, parabolic, polynomial, and higher-order reference based on the simulation and mathematical proofs. The stability using the pole location also shown the negative poles that give a stable system.
topic Integrals control
state feedback
tracking control
input reference
coefficient diagram
url https://ieeexplore.ieee.org/document/9214820/
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AT adhaimamcahyadi trackingcontrolofhighorderinputreferenceusingintegralsstatefeedbackandcoefficientdiagrammethodtuning
AT samiadjiherdjunanto trackingcontrolofhighorderinputreferenceusingintegralsstatefeedbackandcoefficientdiagrammethodtuning
AT oyaswahyunggoro trackingcontrolofhighorderinputreferenceusingintegralsstatefeedbackandcoefficientdiagrammethodtuning
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