北京理工大学学报(英文版)2024,Vol.33Issue(5) :450-464.DOI:10.15918/j.jbit1004-0579.2024.063

Parameterized Analysis of Aeroservoelastic Stability for Closed-Loop Aircraft

Jihang Lyu Fei Yang Rong Yang
北京理工大学学报(英文版)2024,Vol.33Issue(5) :450-464.DOI:10.15918/j.jbit1004-0579.2024.063

Parameterized Analysis of Aeroservoelastic Stability for Closed-Loop Aircraft

Jihang Lyu 1Fei Yang 2Rong Yang3
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作者信息

  • 1. Beijing ZhongHangZhi Technology Co.,Ltd.,Beijing 100176,China
  • 2. Shanghai Aircraft Design and Research Institute,Shanghai 201210,China
  • 3. AVIC General Huanan Aircraft Indus-try Co.Ltd.Zhuhai 519040,China
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Abstract

The closed-loop flight control system of fly by wire is generally adopted in modern air-craft.Based on the frequency-domain stability analysis,the aeroservoelastic model of closed-loop aircraft is established,and aeroservoelastic stability parameterized calculation of design improve-ment is conducted after the preliminary analysis.The design variables are mounted location of inte-grated sensors and damping coefficients ζ1,ζ2 of notch filter,with stability margin of the system as design objective.Results indicate that aeroservoelastic margin of the aircraft in certain states is insufficient.While the mounted location of integrated sensors is adjusted,the system stability can be improved to certain extent.It's more appropriate to mount the integrated sensors in the overlap-ping field between the nodal lines of vertical and lateral bending for the fuselage.The system stabil-ity is also significantly improved by adding notch filter,both gain margin and phase margin increase when the real number pair ζ1-ζ2 is located in the zone above the 45° diagonal of ζ1,ζ2 con-struction plane,and the farther the ζ1-ζ2 is from the 45° diagonal,the stronger the system stability.Also the decrease in the gain peak of frequency response and the enhancement of relative stability of the system are achieved by the appropriate ζ1-ζ2 of notch filter.

Key words

aeroservoelasticity/mounted location of sensors/notch filter/stability margin/response peak

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出版年

2024
北京理工大学学报(英文版)
北京理工大学

北京理工大学学报(英文版)

影响因子:0.168
ISSN:1004-0579
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