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Seat Adjustment Design of an Intelligent Robotic Wheelchair Based on the Stewart Platform

机译:基于Stewart平台的智能机器人轮椅座椅调节设计

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A wheelchair user makes direct contact with the wheelchair seat, which serves as the interface between the user and the wheelchair, for much of any given day. Seat adjustment design is of crucial importance in providing proper seating posture and comfort. This paper presents a multiple-DOF (degrees of freedom) seat adjustment mechanism, which is intended to increase the independence of the wheelchair user while maintaining a concise structure, light weight, and intuitive control interface. This four-axis Stewart platform is capable of heaving, pitching, and swaying to provide seat elevation, tilt-in-space, and sideways movement functions. The geometry and types of joints of this mechanism are carefully arranged so that only one actuator needs to be controlled, enabling the wheelchair user to adjust the seat by simply pressing a button. The seat is also equipped with soft pressure-sensing pads to provide pressure management by adjusting the seat mechanism once continuous and concentrated pressure is detect...
机译:轮椅使用者在任何一天的大部分时间内都直接接触轮椅座位,轮椅座位充当使用者和轮椅之间的接口。座椅调节设计对于提供正确的座椅姿势和舒适性至关重要。本文提出了一种多自由度(DOF)座椅调节机构,旨在提高轮椅使用者的独立性,同时保持简洁的结构,轻巧的重量以及直观的控制界面。这个四轴Stewart平台具有起伏,俯仰和摇摆的功能,以提供座椅升高,空间倾斜和侧向移动功能。该机构的关节的几何形状和类型经过精心布置,因此仅需控制一个执行器,从而使轮椅使用者只需按一下按钮即可调节座椅。座椅还配有柔软的压力感应垫,可在检测到连续且集中的压力时通过调节座椅机构来提供压力管理。

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