Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft
Structural damage induces extensive parameter changes of an aircraft, which leads to the mismatch problem between the offline model and a flying aircraft. Due to extensive parameter changes, motion of a damaged aircraft is difficultly described with a mathematical model. This article uses disturbanc...
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doaj-c25be1c9c9204755a3ab4a8d9ceeb6122021-05-19T23:02:38ZengIEEEIEEE Access2169-35362020-01-01819993119994310.1109/ACCESS.2020.30354369247109Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged AircraftQizhi He0https://orcid.org/0000-0002-1492-8948Yi Tan1https://orcid.org/0000-0002-9436-6307Xiaoxiong Liu2https://orcid.org/0000-0002-8061-5974Qianlei Jia3https://orcid.org/0000-0003-3827-3832Jinglong Liu4https://orcid.org/0000-0003-4189-4162Department of Automatic Control, Northwestern Polytechnical University, Xi’an, ChinaDepartment of Automatic Control, Northwestern Polytechnical University, Xi’an, ChinaDepartment of Automatic Control, Northwestern Polytechnical University, Xi’an, ChinaDepartment of Automatic Control, Northwestern Polytechnical University, Xi’an, ChinaShanghai Institute of Aerospace System Engineering, Shanghai, ChinaStructural damage induces extensive parameter changes of an aircraft, which leads to the mismatch problem between the offline model and a flying aircraft. Due to extensive parameter changes, motion of a damaged aircraft is difficultly described with a mathematical model. This article uses disturbances in accelerations and angular accelerations to quantify the effects of extensive parameter changes, and derives a mathematical model for a damaged aircraft. Provided that the flight controller of a damaged aircraft has a fixed structure, the mismatch problem may cause the aircraft unstable. Based on the proposed mathematical model, this article proposed a reconfigurable nonlinear dynamic inversion (RNDI) controller for attitude control of a structurally damaged aircraft, which synthesizes a nonlinear disturbance observer (NDO) with a modified nonlinear dynamic inversion (NDI) controller. The NDO is explored to estimate the disturbances in angular accelerations. Afterwards, the estimations are fed into the modified NDI controller realizes control structure reconfiguration. Conventional NDI control law and model reference adaptive control (MRAC) law are compared, and simulation results demonstrate that the proposed RNDI control law is robust to structural damage and possesses satisfactory control performance.https://ieeexplore.ieee.org/document/9247109/Active fault-tolerant controlnonlinear dynamic inversionnonlinear disturbance observerreconfigurable controllerattitude controladaptive control |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Qizhi He Yi Tan Xiaoxiong Liu Qianlei Jia Jinglong Liu |
spellingShingle |
Qizhi He Yi Tan Xiaoxiong Liu Qianlei Jia Jinglong Liu Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft IEEE Access Active fault-tolerant control nonlinear dynamic inversion nonlinear disturbance observer reconfigurable controller attitude control adaptive control |
author_facet |
Qizhi He Yi Tan Xiaoxiong Liu Qianlei Jia Jinglong Liu |
author_sort |
Qizhi He |
title |
Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft |
title_short |
Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft |
title_full |
Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft |
title_fullStr |
Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft |
title_full_unstemmed |
Reconfigurable Nonlinear Dynamic Inversion for Attitude Control of a Structurally Damaged Aircraft |
title_sort |
reconfigurable nonlinear dynamic inversion for attitude control of a structurally damaged aircraft |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
Structural damage induces extensive parameter changes of an aircraft, which leads to the mismatch problem between the offline model and a flying aircraft. Due to extensive parameter changes, motion of a damaged aircraft is difficultly described with a mathematical model. This article uses disturbances in accelerations and angular accelerations to quantify the effects of extensive parameter changes, and derives a mathematical model for a damaged aircraft. Provided that the flight controller of a damaged aircraft has a fixed structure, the mismatch problem may cause the aircraft unstable. Based on the proposed mathematical model, this article proposed a reconfigurable nonlinear dynamic inversion (RNDI) controller for attitude control of a structurally damaged aircraft, which synthesizes a nonlinear disturbance observer (NDO) with a modified nonlinear dynamic inversion (NDI) controller. The NDO is explored to estimate the disturbances in angular accelerations. Afterwards, the estimations are fed into the modified NDI controller realizes control structure reconfiguration. Conventional NDI control law and model reference adaptive control (MRAC) law are compared, and simulation results demonstrate that the proposed RNDI control law is robust to structural damage and possesses satisfactory control performance. |
topic |
Active fault-tolerant control nonlinear dynamic inversion nonlinear disturbance observer reconfigurable controller attitude control adaptive control |
url |
https://ieeexplore.ieee.org/document/9247109/ |
work_keys_str_mv |
AT qizhihe reconfigurablenonlineardynamicinversionforattitudecontrolofastructurallydamagedaircraft AT yitan reconfigurablenonlineardynamicinversionforattitudecontrolofastructurallydamagedaircraft AT xiaoxiongliu reconfigurablenonlineardynamicinversionforattitudecontrolofastructurallydamagedaircraft AT qianleijia reconfigurablenonlineardynamicinversionforattitudecontrolofastructurallydamagedaircraft AT jinglongliu reconfigurablenonlineardynamicinversionforattitudecontrolofastructurallydamagedaircraft |
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