Biodrone: A bionic drone-based single object tracking benchmark for robust vision

X Zhao, S Hu, Y Wang, J Zhang, Y Hu, R Liu… - International Journal of …, 2024 - Springer
Single object tracking (SOT) is a fundamental problem in computer vision, with a wide range
of applications, including autonomous driving, augmented reality, and robot navigation. The …

Research progress on visual perception system of bionic flap**-wing aerial vehicles

Q Fu, XY Chen, ZL Zheng, Q Li, W He - Chinese Journal of …, 2019 - cje.ustb.edu.cn
The bionic flap**-wing aerial vehicle (FWAV) is a kind of aerial vehicle that imitates birds
and insects and generates lift and thrust forces using active wing movement. Given its …

Propulsion characteristics of self-pitching flap** foil

L Mei, W Yan, J Zhou, B Guo, L Cong, W Shi - Ocean Engineering, 2023 - Elsevier
As a promising form of oscillating hydrofoil propulsion, self-pitching flap** foil (SPFF) has
been widely used in ocean engineering applications such as ships, underwater vehicles …

[HTML][HTML] Quasi three-dimensional deformable blade element and unsteady vortex lattice reduced-order modeling of fluid–structure interaction in flap** wings

R Schwab, J Reade, M Jankauski - Physics of Fluids, 2022 - pubs.aip.org
Flap**, flexible insect wings deform under inertial and fluid loading. Deformation
influences aerodynamic force generation and sensorimotor control, and is thus important to …

Effects of flap** deviation on the hovering performance of tandem pitching-plunging foils

L Chen, W Sun, YQ Wang - Computers & Fluids, 2023 - Elsevier
Dragonfly-like flap** wings and foils take an in-line arrangement and their performance is
strongly affected by the wing–wing interaction. In this study of tandem pitching-plunging foils …

The spatial-temporal effects of wing flexibility on aerodynamic performance of the flap** wing

L Peng, T Pan, M Zheng, G Su, Q Li - Physics of Fluids, 2023 - pubs.aip.org
In this paper, three-dimensional fluid–structure interaction simulation of flap** of a flexible
wing is carried out. The aerodynamic effect of the flexible wing can be explained by …

Recent progress in flexibility effects on wing aerodynamics and acoustics

P Prapamonthon, B Yin, G Yang… - Proceedings of the …, 2021 - journals.sagepub.com
Since the theoretical aeroelasticity for flap**-wing aerodynamics was introduced in the
1920s, the effects of flexibility on aeroelasticity have been paid more attention to …

Experimental and computational investigations of flexible membrane nano rotors in hover

Z Liu, H Du, S Li, Z Kang, T Dang - Aerospace Science and Technology, 2024 - Elsevier
With reduced size, the flight Reynolds number of the nano rotor decreases, leading to a
sharp drop in the aerodynamic efficiency of the nano rotor. Therefore, improving the …

仿生扑翼飞行器的视觉感知系统研究进展

付**, 陈向阳, 郑子亮, **擎, 贺威 - 工程科学学报, 2019 - cje.ustb.edu.cn
仿生扑翼飞行器是一类模仿鸟及昆虫通过机翼主动运动产生升力和推力的飞行器.
因具有飞行效率高, 机动性**, 隐蔽性好等优点, 扑翼飞行器**年来受到越来越多的关注和研究 …

Effect of wing membrane material on the aerodynamic performance of flexible flap** wing

X Lang, B Song, W Yang, X Yang - Applied Sciences, 2022 - mdpi.com
Flexible deformation of the insect wing has been proven to be beneficial to lift generation
and power consumption. There is great potential for shared research between natural …