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Improving wheelchair-driving using a sensor system to control wheelchair-veer and variable-switches as an alternative to digital-switches or joysticks

机译:使用传感器系统改善轮椅驾驶,控制轮椅转向和可变开关,作为数字开关或操纵杆的替代品

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摘要

Purpose – The purpose of this paper is to present powered-wheelchair transducers and systems that provide more control, reduced veer on slopes, and improved energy conservation, while reducing effort. They are especially significant for people with movement disorders who lack sufficient hand-grasp and release ability or sufficient targeting skill to use joysticks.Design/methodology/approach – Laboratory test rigs are created to test proportional switches and teach potential users. Then, trials are conducted with a rolling road and in real situations. Caster angle-measurement is selected to provide feedback to minimize drift away from a chosen course and an electronic solution was created to match driver control to caster-steering-position. A case study is described as an example.Findings – Results and advantages are presented from changing from using a set of digital-switches to a set of new variable-switches and then adding a sensor system to prevent veer on slopes. Systems have been tested for nearly two years and shown to assist powered-wheelchair-users with poor targeting skills.Research limitations/implications – The research used wheelchairs with caster-wheels but the systems could easily be used on other wheelchairs.Practical implications – Simple input-devices are presented that isolate gross motor function and are tolerant to involuntary movements (proportional-switches). A sensor system is presented that assists users in steering across sloping or uneven ground.Originality/value – Proportional-switches and sensors are shown to reduce veer and provide more control over turn and forward speed and turn radius while reducing frustration and improving energy conservation. The simple and affordable systems could be created and attached to many standard powered-wheelchairs in many organisations.
机译:目的–本文的目的是介绍电动轮椅传感器和系统,这些传感器和系统可以提供更多的控制,减少斜坡上的转向,并提高节能效果,同时减少工作量。对于缺乏足够的手握和释放能力或足够的瞄准技能来使用操纵杆的运动障碍患者而言,它们尤其重要。设计/方法/方法–创建了实验室测试台以测试比例开关并向潜在用户进行培训。然后,在崎rolling不平的道路和实际情况下进行试验。选择脚轮角度测量以提供反馈,以最大程度地减少偏离所选路线的漂移,并创建了一种电子解决方案,以将驾驶员控制与脚轮转向位置相匹配。以一个案例研究为例进行说明。发现–从使用一组数字开关更改为一组新的可变开关,然后增加一个传感器系统以防止在坡度上转向的效果和优势得到体现。该系统已进行了近两年的测试,并显示出可为定位技能较弱的电动轮椅使用者提供帮助。研究的局限/意义–该研究使用了带脚轮的轮椅,但该系统很容易用于其他轮椅。实际意义–简单提出了隔离大运动功能并能容忍非自愿运动的输入设备(比例开关)。提出了一个传感器系统,可以帮助用户在倾斜或不平坦的地面上行驶。原始性/价值–比例开关和传感器可以减少转向,并提供对转弯和前进速度以及转弯半径的更多控制,同时减少挫败感并改善节能效果。可以创建简单且价格合理的系统,并将其连接到许多组织的许多标准动力轮椅上。

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