Control strategy of an active stabilized drogue for hose-drogue aerial refueling

In the hose-drogue aerial refueling,as the hose is a flexible body,there is a floating phenomenon under the disturbance of complex wind fields such as tanker wake,gust and atmospheric turbulence,which seriously affects the success rate of docking. In view of the high accuracy and real-time requireme...

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Bibliographic Details
Main Authors: LI Fei, ZHU Zhe, HUANG Jiangtao, WANG Chunyang, LIU Gang
Format: Article
Language:zho
Published: Editorial Department of Advances in Aeronautical Science and Engineering 2024-12-01
Series:Hangkong gongcheng jinzhan
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Online Access:http://hkgcjz.cnjournals.com/hkgcjz/article/abstract/2024056
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Summary:In the hose-drogue aerial refueling,as the hose is a flexible body,there is a floating phenomenon under the disturbance of complex wind fields such as tanker wake,gust and atmospheric turbulence,which seriously affects the success rate of docking. In view of the high accuracy and real-time requirements in the process of modeling the wake flow field of tanker and studying the influence of wake wind field disturbance,the method of combining neural network and CFD is adopted. Based on high-precision CFD method to generate flow field data,BP neural network is used to train the mapping between wind field coordinate parameters and velocity parameters,so as to establish the tanker wake wind field model. Aiming at the problems of poor anti-interference ability,strong dependence on model and difficulty in engineering realization,fuzzy PD control method is adopted to realize the swing suppression of wing-rudder active stabilization drogue under complex wind field interference. The simulation results show that the average floating amplitude in Y and Z directions is reduced by 86.49% and 79.04% respectively,and the flight test results show that the average speed intensity in Y and Z directions is reduced by 72.98% and 65.29% respectively,which effectively restrains the floating amplitude of drogue.
ISSN:1674-8190