A reconfigurable holonomic omnidirectional mobile bed with unified seating (RHOMBUS) for bedridden patients

S. Mascaro, J. Spano, Haruhiko H. Asada
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引用次数: 57

Abstract

A hybrid wheelchair/bed system for bedridden persons is developed and tested. A powered wheelchair can be docked to a bed portion and reconfigured to a flat stationary bed so that the bedridden person does not have to change seating when transferring between the chair and bed. Moreover the wheelchair can also be docked to a toilet directly and automatically. A holonomic omnidirectional vehicle with a ball wheel mechanism is used for the wheelchair. The high maneuverability and holonomic nature of the vehicle allow the chair to be docked easily and precisely against a fixture. The wheelchair is equipped with teleconferencing facility so that the bedridden patient may communicate face-to-face with a distal caregiver, friends and relatives. This paper describes the basic concept of the reconfigurable holonomic omnidirectional mobile bed with unified seating (RHOMBUS). Issues on the mechanical design of the vehicle, chair, and bed are addressed, followed by control issues. A force-guided docking control method using force sensors embedded in the bumper of the vehicle is developed. A prototype system is designed and tested.
一种可重新配置的完整全向移动床,为卧床病人提供统一的座位(RHOMBUS)
为卧床不起的人开发和测试了混合轮椅/床系统。电动轮椅可以停靠在床上,重新配置成一张固定的床,这样卧床的人在椅子和床之间移动时就不必改变座位了。此外,轮椅还可以直接自动连接到厕所。采用球轮机构的完整全向车作为轮椅。车辆的高机动性和整体性使椅子可以轻松准确地与固定装置对接。轮椅配备了远程会议设施,以便卧床病人可以与远端护理人员、朋友和亲戚面对面交流。介绍了可重构统一座椅完整全向移动床(RHOMBUS)的基本概念。解决了车辆、座椅和床的机械设计问题,然后是控制问题。提出了一种将力传感器嵌入车辆保险杠的力导向对接控制方法。设计并测试了原型系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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