首页|Observer-based robust high-order fully actuated attitude autopilot design for spinning glide-guided projectiles

Observer-based robust high-order fully actuated attitude autopilot design for spinning glide-guided projectiles

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This paper investigates the design of an attitude autopilot for a dual-channel controlled spinning glide-guided projectile(SGGP),addressing model uncertainties and external disturbances.Based on fixed-time stable theory,a disturbance observer with integral sliding mode and adaptive techniques is proposed to mitigate total disturbance effects,irrespective of initial conditions.By introducing an error integral signal,the dynamics of the SGGP are transformed into two separate second-order fully actuated systems.Subsequently,employing the high-order fully actuated approach and a parametric approach,the nonlinear dynamics of the SGGP are recast into a constant linear closed-loop system,ensuring that the projectile's attitude asymptotically tracks the given goal with the desired eigenstructure.Under the proposed composite control framework,the ultimately uniformly bounded stability of the closed-loop system is rigorously demonstrated via the Lyapunov method.Validation of the effectiveness of the proposed attitude autopilot design is provided through extensive numerical simulations.

Spinning glide-guided projectileAttitude controlSliding mode disturbance observerFixed-time stable theoryHigh-order fully actuated approach

Wei Wang、Yuchen Wang、Shiwei Chen、Yongcang Guo、Zhongjiao Shi

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School of Aerospace Engineering,Beijing Institute of Technology,Beijing 10081,China

Northwest Industries Group CO.,Ltd.,Xi'an 710043,China

国家自然科学基金国家自然科学基金

5227235862103052

2024

防务技术
中国兵工学会

防务技术

CSTPCD
影响因子:0.358
ISSN:2214-9147
年,卷(期):2024.34(4)