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This article is cited in 1 scientific paper (total in 1 paper)
Analysis and synthesis of control systems
Stability analysis of airplane with MIMO control system based on frequency methods
S. G. Bazhenov, A. N. Kozyaychev, V. S. Korolyov Central Aerohydrodynamic Institute, Moscow, Russia
Abstract:
In the framework of frequency analysis various methods of stability analysis of airplane with MIMO control system are considered. They assume that control system is open for selected signal with other loops closed, or that system is open for all signals of selected loops and allow solving stability equation and calculating transfer functions matrix eigenvalues. It is shown that all methods deal with different forms of the same equation, and thus the equivalence of methods considered for calculating closed loop stability domains is proved. The application of methods is demonstrated for calculation of stability domains for airplane equipped with MIMO stability and control augmentation system in lateral motion that uses ailerons and rudder as control surfaces. It is shown that in case of MIMO system open loop transfer function that defines closed loop stability is nonlinear function of control system gains. It introduces uncertainty to concept of amplitude and phase margins.
Keywords:
MIMO system, open loop transfer function, transfer functions matrix, stability margins, airliner, stability and control augmentation system.
Received: 18.06.2019 Revised: 06.12.2019 Accepted: 09.12.2019
Citation:
S. G. Bazhenov, A. N. Kozyaychev, V. S. Korolyov, “Stability analysis of airplane with MIMO control system based on frequency methods”, Probl. Upr., 2020, no. 2, 20–27; Automation and Remote Control, 82:7 (2021), 1271–1280
Linking options:
https://www.mathnet.ru/eng/pu1179 https://www.mathnet.ru/eng/pu/v2/p20
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