论文标题

多臂系统远程注射的共享自主性可重构控制框架

A Shared Autonomy Reconfigurable Control Framework for Telemanipulation of Multi-arm Systems

论文作者

Ozdamar, Idil, Laghi, Marco, Grioli, Giorgio, Ajoudani, Arash, Catalano, Manuel G., Bicchi, Antonio

论文摘要

Teleceration是一项广泛采用的策略,用于控制需要高度灵巧运动和关键高级智能的复杂任务的机器人操纵器。经典的远程操作方案基于操纵杆的控制,或基于更直观的接口,这些界面将用户臂运动直接映射到一个机器人臂的运动中。当执行给定任务需要可重新配置的多个机器人ARM系统时,这些方法会限制。实际上,两个或多个机器人臂的同时进行近距离可以扩展操纵单元的工作空间,或增加其总有效载荷或提供其他优势。在可重新配置的多臂系统的不同阶段中,每个机器人可以充当独立的手臂,也可以充当一对合作的手臂之一,也可以用作虚拟大型机器人手的手指之一。该手稿提出了一个新型的远程注射框架,可以使任何数量的机器人臂的个人和联合控制。多亏了设计的控制体系结构,人类操作员可以直观地选择提出的控制方式和操纵器,以使任务方便地通过用户界面执行。此外,通过Tele-Tele-Inverance范式,该系统可以通过让机器人模仿人类操作员的手臂阻抗和位置参考来解决需要物理互动的复杂任务。拟议的框架已通过8个主题控制了4个弗兰卡·埃米卡熊猫机器人,并用7大脚架执行远程触发任务。实验的定性结果向我们展示了我们框架的有希望的适用性。

Teleoperation is a widely adopted strategy to control robotic manipulators executing complex tasks that require highly dexterous movements and critical high-level intelligence. Classical teleoperation schemes are based on either joystick control, or on more intuitive interfaces which map directly the user arm motions into one robot arm's motions. These approaches have limits when the execution of a given task requires reconfigurable multiple robotic arm systems. Indeed, the simultaneous teleoperation of two or more robot arms could extend the workspace of the manipulation cell, or increase its total payload, or afford other advantages. In different phases of a reconfigurable multi-arm system, each robot could act as an independent arm, or as one of a pair of cooperating arms, or as one of the fingers of a virtual, large robot hand. This manuscript proposes a novel telemanipulation framework that enables both the individual and combined control of any number of robotic arms. Thanks to the designed control architecture, the human operator can intuitively choose the proposed control modalities and the manipulators that make the task convenient to execute through the user interface. Moreover, through the tele-impedance paradigm, the system can address complex tasks that require physical interaction by letting the robot mimic the arm impedance and position references of the human operator. The proposed framework is validated with 8 subjects controlling 4 Franka Emika Panda robots with 7-DoFs to execute a telemanipulation task. Qualitative results of the experiments show us the promising applicability of our framework.

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