Hagengruber Annette, Quere Gabriel, Iskandar Maged, Bustamante Samuel, Feng Jianxiang, Leidner Daniel, Albu-Schäffer Alin, Stulp Freek, Vogel Jörn
Institute of Robotics and Mechatronics, German Aerospace Center (DLR), Oberpfaffenhofen, Wessling, 82234, Germany.
Sci Rep. 2025 Mar 11;15(1):8426. doi: 10.1038/s41598-025-89405-2.
Mobile manipulation aids aim at enabling people with motor impairments to physically interact with their environment. To facilitate the operation of such systems, a variety of components, such as suitable user interfaces and intuitive control of the system, play a crucial role. In this article, we validate our highly integrated assistive robot EDAN, operated by an interface based on bioelectrical signals, combined with shared control and a whole-body coordination of the entire system, through a case study involving people with motor impairments to accomplish real-world activities. Three individuals with amyotrophia were able to perform a range of everyday tasks, including pouring a drink, opening and driving through a door, and opening a drawer. Rather than considering these tasks in isolation, our study focuses on the continuous execution of long sequences of realistic everyday tasks.
移动操作辅助设备旨在使行动不便的人能够与周围环境进行身体互动。为了便于此类系统的操作,各种组件,如合适的用户界面和系统的直观控制,起着至关重要的作用。在本文中,我们通过一项涉及行动不便者完成现实世界活动的案例研究,验证了我们高度集成的辅助机器人EDAN,该机器人由基于生物电信号的界面操作,并结合了共享控制和整个系统的全身协调。三名患有肌萎缩症的患者能够执行一系列日常任务,包括倒饮料、开门并穿过门以及打开抽屉。我们的研究并非孤立地考虑这些任务,而是专注于现实日常任务长序列的连续执行。