Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM

Electrically excited synchronous motor (EESM) has the characteristics of high order, nonlinear and strong coupling, so it is difficult to be controlled. However, it has the advantages of adjustable power factor, high efficiency, and high precision torque control, so it is widely used in high-power a...

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Main Authors: Feng Cai, Ke Li, Xiaodong Sun, Minkai Wu
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/18/5874
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spelling doaj-ecdef368df0440b6b6566467a9822b022021-09-26T00:05:41ZengMDPI AGEnergies1996-10732021-09-01145874587410.3390/en14185874Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESMFeng Cai0Ke Li1Xiaodong Sun2Minkai Wu3Automotive Engineering Research Institute, Jiangsu University, Zhenjiang 212013, ChinaSchool of Electrical and Information Engineering, Jiangsu University, Zhenjiang 212013, ChinaAutomotive Engineering Research Institute, Jiangsu University, Zhenjiang 212013, ChinaAutomotive Engineering Research Institute, Jiangsu University, Zhenjiang 212013, ChinaElectrically excited synchronous motor (EESM) has the characteristics of high order, nonlinear and strong coupling, so it is difficult to be controlled. However, it has the advantages of adjustable power factor, high efficiency, and high precision torque control, so it is widely used in high-power applications. The accuracy of a flux observer influences the speed control system of EESM. Based on state observer in modern control theory and electrical excitation synchronous machine state equation, a reduced-order flux observer is designed. Using the first-order difference method and forward bilinear transformation method, the reduced-order flux observer is discrete, and the stability of the motor system is analyzed. The analysis shows that the stability of the system using the bilinear transformation method is better than that using the first order forward difference method. In motor operation, motor parameters will be affected by the factors of temperature, magnetic saturation, and motor frequency. In this paper, the influence of parameter variation on the motor system is studied by using the variation of the pole distribution. Finally, the speed regulation system using the reduced-order observer is simulated, which verifies the accuracy of the reduced-order flux observer observation.https://www.mdpi.com/1996-1073/14/18/5874electrically excited synchronous motorreduced order flux observerfirst-order difference methodparameter variation
collection DOAJ
language English
format Article
sources DOAJ
author Feng Cai
Ke Li
Xiaodong Sun
Minkai Wu
spellingShingle Feng Cai
Ke Li
Xiaodong Sun
Minkai Wu
Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
Energies
electrically excited synchronous motor
reduced order flux observer
first-order difference method
parameter variation
author_facet Feng Cai
Ke Li
Xiaodong Sun
Minkai Wu
author_sort Feng Cai
title Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
title_short Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
title_full Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
title_fullStr Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
title_full_unstemmed Air-Gap Flux Oriented Vector Control Based on Reduced-Order Flux Observer for EESM
title_sort air-gap flux oriented vector control based on reduced-order flux observer for eesm
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-09-01
description Electrically excited synchronous motor (EESM) has the characteristics of high order, nonlinear and strong coupling, so it is difficult to be controlled. However, it has the advantages of adjustable power factor, high efficiency, and high precision torque control, so it is widely used in high-power applications. The accuracy of a flux observer influences the speed control system of EESM. Based on state observer in modern control theory and electrical excitation synchronous machine state equation, a reduced-order flux observer is designed. Using the first-order difference method and forward bilinear transformation method, the reduced-order flux observer is discrete, and the stability of the motor system is analyzed. The analysis shows that the stability of the system using the bilinear transformation method is better than that using the first order forward difference method. In motor operation, motor parameters will be affected by the factors of temperature, magnetic saturation, and motor frequency. In this paper, the influence of parameter variation on the motor system is studied by using the variation of the pole distribution. Finally, the speed regulation system using the reduced-order observer is simulated, which verifies the accuracy of the reduced-order flux observer observation.
topic electrically excited synchronous motor
reduced order flux observer
first-order difference method
parameter variation
url https://www.mdpi.com/1996-1073/14/18/5874
work_keys_str_mv AT fengcai airgapfluxorientedvectorcontrolbasedonreducedorderfluxobserverforeesm
AT keli airgapfluxorientedvectorcontrolbasedonreducedorderfluxobserverforeesm
AT xiaodongsun airgapfluxorientedvectorcontrolbasedonreducedorderfluxobserverforeesm
AT minkaiwu airgapfluxorientedvectorcontrolbasedonreducedorderfluxobserverforeesm
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