Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion
A robust nonlinear dynamic inversion (RNDI) technique is proposed in order to synchronize the behavior of chaotic gyros subjected to uncertainties such as model mismatches and disturbances. Gyro is a crucial device that measures and maintains the orientation of a vehicle. By Leipnik and Newton in 19...
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Online Access: | http://dx.doi.org/10.1155/2013/519796 |
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doaj-2e4c59770a8740e4b363de8a71caafb72020-11-24T21:47:51ZengHindawi LimitedJournal of Applied Mathematics1110-757X1687-00422013-01-01201310.1155/2013/519796519796Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic InversionInseok Yang0Dongik Lee1School of Electronics Engineering, Kyungpook National University, Daegu 702-701, Republic of KoreaSchool of Electronics Engineering, Kyungpook National University, Daegu 702-701, Republic of KoreaA robust nonlinear dynamic inversion (RNDI) technique is proposed in order to synchronize the behavior of chaotic gyros subjected to uncertainties such as model mismatches and disturbances. Gyro is a crucial device that measures and maintains the orientation of a vehicle. By Leipnik and Newton in 1981, chaotic behavior of a gyro under specific conditions was established. Hence, controlling and synchronizing a gyro that shows irregular (chaotic) motion are very important. The proposed synchronization method is based on nonlinear dynamic inversion (NDI) control. NDI is a nonlinear control technique that removes the original system dynamics into the user-defined desired dynamics. Since NDI removes the original dynamics directly, it does not need linearizing and designing gain-scheduled controllers for each equilibrium point. However, achieving perfect cancellation of the original nonlinear dynamics is impossible in real applications due to model uncertainties and disturbances. This paper proposes the robustness assurance method of NDI based on sliding mode control (SMC). Firstly, similarities of the conventional NDI control and SMC are provided. And then the RNDI control technique is proposed. The feasibility and effectiveness of the proposed method are demonstrated by numerical simulations.http://dx.doi.org/10.1155/2013/519796 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Inseok Yang Dongik Lee |
spellingShingle |
Inseok Yang Dongik Lee Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion Journal of Applied Mathematics |
author_facet |
Inseok Yang Dongik Lee |
author_sort |
Inseok Yang |
title |
Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion |
title_short |
Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion |
title_full |
Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion |
title_fullStr |
Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion |
title_full_unstemmed |
Synchronization of Chaotic Gyros Based on Robust Nonlinear Dynamic Inversion |
title_sort |
synchronization of chaotic gyros based on robust nonlinear dynamic inversion |
publisher |
Hindawi Limited |
series |
Journal of Applied Mathematics |
issn |
1110-757X 1687-0042 |
publishDate |
2013-01-01 |
description |
A robust nonlinear dynamic inversion (RNDI) technique is proposed in order to synchronize the behavior
of chaotic gyros subjected to uncertainties such as model mismatches and disturbances. Gyro is a crucial device that
measures and maintains the orientation of a vehicle. By Leipnik and Newton in 1981, chaotic behavior of a gyro under specific
conditions was established. Hence, controlling and synchronizing a gyro that shows irregular (chaotic) motion are
very important. The proposed synchronization method is based on nonlinear dynamic inversion (NDI) control. NDI
is a nonlinear control technique that removes the original system dynamics into the user-defined desired dynamics.
Since NDI removes the original dynamics directly, it does not need linearizing and designing gain-scheduled
controllers for each equilibrium point. However, achieving perfect cancellation of the original nonlinear dynamics
is impossible in real applications due to model uncertainties and disturbances. This paper proposes the robustness
assurance method of NDI based on sliding mode control (SMC). Firstly, similarities of the conventional NDI control
and SMC are provided. And then the RNDI control technique is proposed. The feasibility and effectiveness of the
proposed method are demonstrated by numerical simulations. |
url |
http://dx.doi.org/10.1155/2013/519796 |
work_keys_str_mv |
AT inseokyang synchronizationofchaoticgyrosbasedonrobustnonlineardynamicinversion AT dongiklee synchronizationofchaoticgyrosbasedonrobustnonlineardynamicinversion |
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1725895124566671360 |