Development of assistive technologies for safe operation of electric wheelchairs on sloping sidewalks and grade height differences

T. Takei, Yusuke Suzuki, O. Matsumoto, Y. Adachi, Y. Sasaki, Mitsuhiro Kamo
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引用次数: 12

Abstract

Accidents involving electric wheelchairs in Japan have increased as the nation's population ages. About half of all accidents are caused when the chair tips over sideways or backwards on a sidewalk. The authors have developed two kinds of safe technology intending to prevent such accidents. The first prevents the wheelchair from falling sideways on a sidewalk when the wheelchair is moving across the slope of a sidewalk. On a slope, the wheelchair easily swerves from the desired direction and goes down the slope because of gravity. The second measure prevents a large backward tipping angle when the wheelchair is moving up over grade height differences and slopes. The authors have configured a wheelchair which has a posture sensor, magnetic brake bar and small control board. Results of indoor experiments on not only simulated slopes and grade height differences but also in real outdoor environments have confirmed the effectiveness of the authors' support technology.
开发电动轮椅在倾斜人行道和坡度高差上安全操作的辅助技术
随着日本人口老龄化,涉及电动轮椅的事故有所增加。大约一半的事故是由于椅子在人行道上倾斜或向后倾斜造成的。作者已经开发了两种旨在防止此类事故的安全技术。首先,当轮椅在人行道的斜坡上移动时,它可以防止轮椅在人行道上侧身摔倒。在斜坡上,由于重力的作用,轮椅很容易从预期的方向转向并滑下斜坡。第二项措施是防止轮椅在坡度和坡度上移动时产生较大的向后倾斜角。设计了一种具有姿态传感器、磁性制动杆和小型控制板的轮椅。室内模拟坡度、坡度高差和室外真实环境的试验结果均证实了该支撑技术的有效性。
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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