Control augmentation design of UAVs based on deviation modification of aerodynamic focus

Based on the analysis of force and action points of an UAV (unmanned aerial vehicle), we propose a concept called static stability degree deviation (SSDD) factor, which is related to the focus position, and can be used to modify the data for control law design. Furthermore, a SSDD-based method is pr...

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Main Authors: Shi, Y., Li, R., Xu, Honglei
Format: Journal Article
Published: 2015
Online Access:http://hdl.handle.net/20.500.11937/8397
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author Shi, Y.
Li, R.
Xu, Honglei
author_facet Shi, Y.
Li, R.
Xu, Honglei
author_sort Shi, Y.
building Curtin Institutional Repository
collection Online Access
description Based on the analysis of force and action points of an UAV (unmanned aerial vehicle), we propose a concept called static stability degree deviation (SSDD) factor, which is related to the focus position, and can be used to modify the data for control law design. Furthermore, a SSDD-based method is presented to avoid the fight oscillation caused by the data deviation of aerodynamic focus. By using the attitude angle difference between real fight data and simulation data as an optimization index, the identification of SSDD factor and the data reproduction of the real fight data are achieved. The identification results are then used to modify aerodynamic blowing data. Based on the modified model, the augmentation control is designed by applying the altitude angle rate feedback to improve the equivalent damping ratio and frequency; thus the iteration design of the control law is performed.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T06:20:40Z
publishDate 2015
recordtype eprints
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spelling curtin-20.500.11937-83972017-09-13T14:35:05Z Control augmentation design of UAVs based on deviation modification of aerodynamic focus Shi, Y. Li, R. Xu, Honglei Based on the analysis of force and action points of an UAV (unmanned aerial vehicle), we propose a concept called static stability degree deviation (SSDD) factor, which is related to the focus position, and can be used to modify the data for control law design. Furthermore, a SSDD-based method is presented to avoid the fight oscillation caused by the data deviation of aerodynamic focus. By using the attitude angle difference between real fight data and simulation data as an optimization index, the identification of SSDD factor and the data reproduction of the real fight data are achieved. The identification results are then used to modify aerodynamic blowing data. Based on the modified model, the augmentation control is designed by applying the altitude angle rate feedback to improve the equivalent damping ratio and frequency; thus the iteration design of the control law is performed. 2015 Journal Article http://hdl.handle.net/20.500.11937/8397 10.3934/jimo.2015.11.231 unknown
spellingShingle Shi, Y.
Li, R.
Xu, Honglei
Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title_full Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title_fullStr Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title_full_unstemmed Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title_short Control augmentation design of UAVs based on deviation modification of aerodynamic focus
title_sort control augmentation design of uavs based on deviation modification of aerodynamic focus
url http://hdl.handle.net/20.500.11937/8397