Current aerial robots demonstrate limited interaction capabilities in unstructured environments when compared with their biological counterparts. Some examples include their inability to tolerate collisions and to successfully land or perch on objects of unknown shapes, sizes, and texture. Efforts to include compliance have introduced designs that incorporate external mechanical impact protection at the cost of reduced agility and flight time due to the added weight. In this work, we propose and develop a light-weight, inflatable, soft-bodied aerial robot (SoBAR) that can pneumatically vary its body stiffness to achieve intrinsic collision resilience. Unlike the conventional rigid aerial robots, SoBAR successfully demonstrates its ability to repeatedly endure and recover from collisions in various directions, not only limited to in-plane ones. Furthermore, we exploit its capabilities to demonstrate perching where the 3D collision resilience helps in improving the perching success rates. We also augment SoBAR with a novel hybrid fabric-based, bistable (HFB) grasper that can utilize impact energies to perform contact-reactive grasping through rapid shape conforming abilities. We exhaustively study and offer insights into the collision resilience, impact absorption, and manipulation capabilities of SoBAR with the HFB grasper. Finally, we compare the performance of conventional aerial robots with the SoBAR through collision characterizations, grasping identifications, and experimental validations of collision resilience and perching in various scenarios and on differently shaped objects.
翻译:与生物机器人相比,当前空中机器人在非结构化环境中的互动能力有限,与生物机器人相比,这些机器人无法容忍碰撞,也无法成功地在不明形状、大小和纹理的物体上成功着陆或潜入地表或潜入地表,在努力纳入遵守情况时采用了各种设计,以降低灵活性和飞行时间为代价,采用外部机械撞击保护,而增加重量则降低灵活性和飞行时间。在这项工作中,我们提议并开发一个轻巧、可膨胀、软体积的空中机器人(SoBAR),该机器人能够以空气方式改变其身体的坚韧性,以达到内在的碰撞复原力。与传统的僵硬空中机器人不同,SoBAR成功地展示其反复承受力和从不同方向从碰撞中恢复的能力,不仅仅限于机体内物体。此外,我们还利用它的能力,在3D碰撞复原力有助于提高升升成功率的地方展示机力。 我们还用一种新型混合结构、软体(HFB)的捕捉摸器来利用影响能量,通过快速的形状适应能力来进行接触-反应。我们进行了彻底的研究,并深入了解碰撞的弹性弹性弹性反应、影响弹性反应能力,并了解碰撞复原能力、影响弹性感应力、影响、影响、影响、影响、撞击的校验定结果,最后,以及机的机能的校正的机能的校正的校正的校正的校正。