Study on asymmetric deflection control scheme of SDR for flying wing aircraft

Jingping Shi, Ziwei Shi, Yongxi Lyu, Xiaobo Qu

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Compared with conventional configuration aircraft, tailless flying wing configuration aircraft has a longer wing span than chord length. Aircraft with such aerodynamic characteristic has a shorter pitch arm and its pitch trim ability is insufficient when climbing at low speed and high angle of attack. Therefore, further exploring the aerodynamic efficiency of aircraft control surface and improving the pitch trim ability become a problem to be studied. The flying wing aircraft mostly adopts the split resistance rudder (SDR) symmetrical deflection to realize the stable control of the aircraft course; such an approach is simple and effective, but it reduces the control efficiency of the surface. So we want to explore the SDR asymmetric deflection control scheme to enhance the pitch control capability of the aircraft. In this paper, the dynamic modeling of SDR asymmetric deflection is studied and the mathematical model of over-drive system is established. The control effectiveness of SDR asymmetric deflection and symmetric deflection is compared by solving its attainable moment subset. The simulation results show that: Compared with symmetrical deflection, the pitch moment of asymmetric deflection control scheme increased by 47.5%. It can achieve greater pitch trim ability and control ability.

源语言英语
主期刊名Fuzzy Systems and Data Mining V - Proceedings of FSDM 2019
编辑Antonio J. Tallon-Ballesteros
出版商IOS Press BV
680-687
页数8
ISBN(电子版)9781643680187
DOI
出版状态已出版 - 2 10月 2019
活动5th International Conference on Fuzzy Systems and Data Mining, FSDM 2019 - Kitakyushu, 日本
期限: 18 10月 201921 10月 2019

出版系列

姓名Frontiers in Artificial Intelligence and Applications
320
ISSN(印刷版)0922-6389
ISSN(电子版)1879-8314

会议

会议5th International Conference on Fuzzy Systems and Data Mining, FSDM 2019
国家/地区日本
Kitakyushu
时期18/10/1921/10/19

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