可变形四旋翼无人机实现超凡机动、操作与抗扰能力。
MorphQuad: Morphable Quadrotor for Superhuman Maneuverability, Manipulation, and Resiliency

- 通过双轴云台独立控制四个旋翼,实现任意方向推力矢量
- 可在任意方向抗风、自锁恢复,完成转阀、停靠等操作
- 适合巡检、救援等复杂场景,具全自主能力
基础设施维护、接触式检测和应急响应需要具备极端机动性、操作性和抗扰性的飞行机器人:机动性用于进入狭小或远端空间;操作性用于在任意姿态下对准传感器、开关阀门、按压工具;抗扰性则需在风、地面效应、摩擦等任意方向干扰下保持精确运动与力控。现有飞行器难以同时满足三大需求,受限于结构与控制对作动的约束。本文提出MorphQuad:一种可变形四旋翼,实现超凡的机动-操作-抗扰(MMR)能力。核心在于软硬件协同设计:硬件上,每个旋翼系统通过双轴云台独立驱动;控制上,采用全局稳定控制器与能量最优推力分配策略,仅在避免下洗干扰与云台锁定时允许旋翼间推力抵消。具备全机自主,可实现多圈旋转同时平移或悬停,用于管道巡检与目标跟踪(机动性);完成阀门转动、停靠、物体按压与推动,达到人手级力量(操作性);可抵御任意方向风力,包括单旋翼受力,且能实现推拉恢复(抗扰性)。
原文摘要 · Abstract (English)
Infrastructure maintenance, contact-based inspection, and emergency response can benefit from aerial vehicles that act as a flying human hand with extreme maneuverability, manipulation, and resiliency (MMR): maneuverability to fly in arbitrary orientations to reach remote and tight locations; manipulation to point sensors, turn valves, and press tools at arbitrary orientations; resiliency to maintain accurate motion and force control despite disturbances from arbitrary directions, such as wind, ground effects, and friction. Realizing MMR on aerial vehicles requires not only omnidirectional flight; it also requires (I) vectoring of maximum thrust in any direction, to maximize capacity for contact-force application and disturbance rejection, (II) global stability, to enable control over any orientation/position, and (III) compact, standard designs that build upon platforms such as quadrotors to inherit technological know-how. No current aerial vehicle simultaneously enables I--III, due to structural and control limitations that constrain actuation. We present MorphQuad: a morphable quadrotor that enjoys MMR. Key to our approach is a hardware and control co-design: on hardware, we independently articulate each of the four rotor systems via two-axis gimbals; on control, we introduce globally-stable control, and energy-optimal thrust allocation that permits inter-rotor thrust cancellations only to avoid downwash interference and gimbal lock. With fully-onboard autonomy, MorphQuad demonstrates multi-revolution rotation while translating or hovering, for pipe inspection and target tracking (maneuverability); valve turning, perching, and object pressing and pushing with human-level strengths (manipulation); and wind rejection from any direction, even directed to a single rotor, and push-pull recovery (resiliency).
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