Robotic teleoperation will allow us to perform complex manipulation tasks in dangerous or remote environments, such as needed for planetary exploration or nuclear decommissioning. This work proposes a novel telemanipulation architecture using a passive Fractal Impedance Controller (FIC), which does not depend upon an active viscous component for stability guarantees. Compared to a traditional impedance controller in ideal conditions (no delays and maximum communication bandwidth), our proposed method yields higher transparency in interaction and demonstrates superior dexterity and capability in our telemanipulation test scenarios. We also validate its performance with extreme delays up to 1 s and communication bandwidths as low as 10 Hz. All results validate a consistent stability when using the proposed controller in challenging conditions, regardless of operator expertise.
翻译:机器人远程操作将使我们能够在危险或偏僻环境中执行复杂的操作任务,例如行星探索或核退役所需的操作。 这项工作提议使用一个新型的远程管理架构,使用一位被动分解障碍控制器(FIC),它并不依赖于稳定保障的活性粘度部分。 与理想条件下的传统阻力控制器(没有延迟和最大通信带宽)相比,我们提议的方法提高了互动的透明度,并在我们的远程操纵测试情景中展示出超强的灵敏度和能力。 我们还在极端延迟的情况下验证其性能,最高可达1秒,通信带宽可低至10赫。 在挑战条件下使用拟议的控制器时,所有结果都验证了稳定性,不管操作员是否有专长。