SurfAAV可水下、水面、空中三模切换,无需浮力调节系统。
SurfAAV: Design and Implementation of a Novel Multimodal Surfing Aquatic-Aerial Vehicle
- 创新设计差动推力矢量水翼,实现水面滑行与水下航行
- 最大水面滑行速度7.96米/秒,水下最高速度3.1米/秒
- 适合水陆空多任务监测,尤其适用于跨水域快速部署
尽管水空机器人研究取得显著进展,现有构型仍难以高效完成水下、水面和空中运动。本文提出一种新型多模态冲浪式水空机器人SurfAAV,集成水下导航、水面滑行和空中飞行能力。得益于新型差动推力矢量水翼设计,SurfAAV无需浮力调节系统即可实现高效水面滑行与水下航行,具备灵活的水面和水下作业能力,可快速执行水下监测任务。当需转移至另一水域时,可通过滑跃起飞转入空中模式,飞往目标水域执行任务。本文主要贡献在于提出水下-水面-空中一体化新方案,设计新型混合原型,开发相应控制律,并验证其成功实现水面滑行与滑跃起飞。SurfAAV最大水面滑行速度达7.96米/秒,最大水下速度为3.1米/秒,其水面机动性与水下巡航机动性均优于现有水空机器人。
原文摘要 · Abstract (English)
Despite significant advancements in the research of aquatic-aerial robots, existing configurations struggle to efficiently perform underwater, surface, and aerial movement simultaneously. In this paper, we propose a novel multimodal surfing aquatic-aerial vehicle, SurfAAV, which efficiently integrates underwater navigation, surface gliding, and aerial flying capabilities. Thanks to the design of the novel differential thrust vectoring hydrofoil, SurfAAV can achieve efficient surface gliding and underwater navigation without the need for a buoyancy adjustment system. This design provides flexible operational capabilities for both surface and underwater tasks, enabling the robot to quickly carry out underwater monitoring activities. Additionally, when it is necessary to reach another water body, SurfAAV can switch to aerial mode through a gliding takeoff, flying to the target water area to perform corresponding tasks. The main contribution of this letter lies in proposing a new solution for underwater, surface, and aerial movement, designing a novel hybrid prototype concept, developing the required control laws, and validating the robot's ability to successfully perform surface gliding and gliding takeoff. SurfAAV achieves a maximum surface gliding speed of 7.96 m/s and a maximum underwater speed of 3.1 m/s. The prototype's surface gliding maneuverability and underwater cruising maneuverability both exceed those of existing aquatic-aerial vehicles.
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