PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator
Due to the uncertainties caused by high non-linearity, friction, leakage and other external factors existing in the flight simulator with continuous rotary electro-hydraulic servo motor and the traditional control strategies discontenting with the high-performance requirements, the mathematical mode...
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doaj-add9d4e3c1344ba6958c558fd07316cc2021-04-02T05:35:57ZengWileyThe Journal of Engineering2051-33052018-10-0110.1049/joe.2018.8984JOE.2018.8984PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulatorWang X. Jing0Liu M. Zhen1Chen Shuai2Liu Hao3Xin Wang4School of Mechanical and Power Engineering, Harbin University of Science and TechnologySchool of Mechanical and Power Engineering, Harbin University of Science and TechnologySchool of Mechanical and Power Engineering, Harbin University of Science and TechnologySchool of Mechanical and Power Engineering, Harbin University of Science and TechnologySchool of Mechanical and Aerospace Engineering, Jilin UniversityDue to the uncertainties caused by high non-linearity, friction, leakage and other external factors existing in the flight simulator with continuous rotary electro-hydraulic servo motor and the traditional control strategies discontenting with the high-performance requirements, the mathematical model of continuous rotary electro-hydraulic position servo system is established and the compound control theory combining proportional-integral-derivative (PID) and the predictive function control (PFC) method is proposed. In order to enable the servo system to estimate the influence of uncertainties and correct it by repeating online optimisation continuously, PID–PFC compound controller basing on the structure of internal model control is designed and then applied to continuous rotary electro hydraulic servo system. The simulation results show that compared with the traditional PID, PFC controller, PID–PFC compound control can effectively inhibit the interferences of the electro-hydraulic servo system, and greatly improve the response speed and tracking performances and expanding the system frequency band width. The accurate control of motor's position can be realised by applying PID–PFC compound control, which can make the servo system has stronger robustness.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8984three-term controlservomotorsposition controlpredictive controlelectrohydraulic control equipmentaircraft controluncertain systemsoptimisationmotor position controlresponse trackingsystem frequency band widthresponse speedonline optimisationproportional-integral-derivative methodcontinuous rotary electrohydraulic position servo systemcontinuous rotary electrohydraulic servo motortraditional control strategiesleakageflight simulatorinternal model controlPID–PFC compound controllerpredictive function control methodcompound control theory |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wang X. Jing Liu M. Zhen Chen Shuai Liu Hao Xin Wang |
spellingShingle |
Wang X. Jing Liu M. Zhen Chen Shuai Liu Hao Xin Wang PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator The Journal of Engineering three-term control servomotors position control predictive control electrohydraulic control equipment aircraft control uncertain systems optimisation motor position control response tracking system frequency band width response speed online optimisation proportional-integral-derivative method continuous rotary electrohydraulic position servo system continuous rotary electrohydraulic servo motor traditional control strategies leakage flight simulator internal model control PID–PFC compound controller predictive function control method compound control theory |
author_facet |
Wang X. Jing Liu M. Zhen Chen Shuai Liu Hao Xin Wang |
author_sort |
Wang X. Jing |
title |
PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
title_short |
PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
title_full |
PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
title_fullStr |
PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
title_full_unstemmed |
PID–PFC control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
title_sort |
pid–pfc control of continuous rotary electro-hydraulic servo motor applied to flight simulator |
publisher |
Wiley |
series |
The Journal of Engineering |
issn |
2051-3305 |
publishDate |
2018-10-01 |
description |
Due to the uncertainties caused by high non-linearity, friction, leakage and other external factors existing in the flight simulator with continuous rotary electro-hydraulic servo motor and the traditional control strategies discontenting with the high-performance requirements, the mathematical model of continuous rotary electro-hydraulic position servo system is established and the compound control theory combining proportional-integral-derivative (PID) and the predictive function control (PFC) method is proposed. In order to enable the servo system to estimate the influence of uncertainties and correct it by repeating online optimisation continuously, PID–PFC compound controller basing on the structure of internal model control is designed and then applied to continuous rotary electro hydraulic servo system. The simulation results show that compared with the traditional PID, PFC controller, PID–PFC compound control can effectively inhibit the interferences of the electro-hydraulic servo system, and greatly improve the response speed and tracking performances and expanding the system frequency band width. The accurate control of motor's position can be realised by applying PID–PFC compound control, which can make the servo system has stronger robustness. |
topic |
three-term control servomotors position control predictive control electrohydraulic control equipment aircraft control uncertain systems optimisation motor position control response tracking system frequency band width response speed online optimisation proportional-integral-derivative method continuous rotary electrohydraulic position servo system continuous rotary electrohydraulic servo motor traditional control strategies leakage flight simulator internal model control PID–PFC compound controller predictive function control method compound control theory |
url |
https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8984 |
work_keys_str_mv |
AT wangxjing pidpfccontrolofcontinuousrotaryelectrohydraulicservomotorappliedtoflightsimulator AT liumzhen pidpfccontrolofcontinuousrotaryelectrohydraulicservomotorappliedtoflightsimulator AT chenshuai pidpfccontrolofcontinuousrotaryelectrohydraulicservomotorappliedtoflightsimulator AT liuhao pidpfccontrolofcontinuousrotaryelectrohydraulicservomotorappliedtoflightsimulator AT xinwang pidpfccontrolofcontinuousrotaryelectrohydraulicservomotorappliedtoflightsimulator |
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