Torque Sensor Free Power Assisted Wheelchair

D. Petersson, J. Johansson, U. Holmberg, B. Åstrand
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引用次数: 3

Abstract

A power assisted wheelchair combines human power, which is delivered by the arms through the pushrims, with electrical motors, which are powered by a battery. Todays electric power assisted wheelchairs use force sensors to measure the torque exerted on the pushrims by the user. This leads to rather expensive and clumsy constructions. A new design, which only relies on velocity feedback, thus avoiding the use of expensive force sensors in the pushrims, is proposed in this paper. The control design is based on a simple PD-structure with only two design parameters easily tuned to fit a certain user; one parameter is used to adjust the amplification of the user's force and the other one is used to change the lasting time of the propulsion influence. Since the new assisting control system only relies on the velocity, the torque sensor free power assisted wheelchair will besides giving the user assisting power also give an assistant, which pushes the wheelchair, additional power. This is a big advantage compared to the pushrim activated one, where this benefit for the assistant is not possible.
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无扭矩传感器助力轮椅
动力辅助轮椅将手臂通过推杆传递的人力与由电池供电的电动机结合在一起。今天的电动辅助轮椅使用力传感器来测量使用者施加在推杆上的扭矩。这导致了相当昂贵和笨拙的结构。本文提出了一种新的设计,该设计仅依赖于速度反馈,从而避免了在推杆中使用昂贵的力传感器。控制设计基于简单的pd结构,只有两个设计参数易于调整以适应特定用户;其中一个参数用于调节用户力的放大,另一个参数用于改变推进影响的持续时间。由于新的辅助控制系统只依赖于速度,所以无扭矩传感器助力轮椅在给使用者提供辅助动力的同时,也会给推动轮椅的助手提供额外的动力。这是一个很大的优势,相比于推框激活的一个,这对助手的好处是不可能的。
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