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Effort reduction and collision avoidance for powered wheelchairs : SCAD assistive mobility system

机译:动力轮椅的努力减少和防撞:sCaD辅助移动系统

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摘要

The new research described in this dissertation created systems and methods to assist wheelchair users and provide them with new realistic and interesting driving opportunities. The work also created and applied novel effort reduction and collision avoidance systems and some new electronic interactive devices. A Scanning Collision Avoidance Device (SCAD) was created that attached to standard powered wheelchairs to help prevent children from driving into things. Initially, mechanical bumpers were used but they made many wheelchairs unwieldy, so a novel system that rotated a single ultra-sonic transducer was created. The SCAD provided wheelchair guidance and assisted with steering. Optical side object detectors were included to cover blind spots and also assist with doorway navigation. A steering lockout mode was also included for training, which stopped the wheelchair from driving towards a detected object. Some drivers did not have sufficient manual dexterity to operate a reverse control. A reverse turn manoeuvring mode was added that applied a sequential reverse and turn function, enabling a driver to escape from a confined situation by operating a single turn control. A new generation of Proportional SCAD was created that operated with proportional control inputs rather than switches and new systems were created to reduce veer, including effort reduction systems. New variable switches were created that provided variable speed control in place of standard digital switches and all that research reduced the number of control actions required by a driver. Finally, some new systems were created to motivate individuals to try new activities. These included a track guided train and an adventure playground that including new interactive systems. The research was initially inspired by the needs of young people at Chailey Heritage, the novel systems provided new and more autonomous driving opportunities for many powered wheelchair users in less structured environments.
机译:本文所描述的新研究创造了系统和方法来协助轮椅使用者,并为他们提供新的现实和有趣的驾驶机会。这项工作还创建并应用了新颖的减少工作量和避免碰撞的系统以及一些新的电子交互设备。创建了扫描防撞装置(SCAD),该装置连接到标准电动轮椅上,以帮助防止儿童开车撞入物体。最初使用机械缓冲器,但是它们使许多轮椅变得笨拙,因此创建了一个可旋转单个超声换能器的新型系统。 SCAD提供轮椅指导并协助转向。包括了光学侧物体检测器,以覆盖盲区并协助门口导航。还包括用于训练的转向锁定模式,该模式阻止了轮椅驶向被检测物体。一些驾驶员没有足够的手动灵巧性来操作反向控制。增加了倒车操纵模式,该模式应用了顺序倒车和转弯功能,使驾驶员可以通过操作单个转弯控制装置来逃脱受限的情况。创建了新一代的比例SCAD,它使用比例控制输入而不是开关进行操作,并且创建了新的系统以减少转向,包括省力系统。新的可变开关被创造出来,它提供了变速控制来代替标准的数字开关,所有的研究都减少了驾驶员要求的控制动作的数量。最后,创建了一些新系统来激励个人尝试新活动。其中包括履带列车和包括新的互动系统的冒险乐园。这项研究最初是受Chailey Heritage的年轻人的需求启发的,这种新颖的系统为结构简单的环境中的许多电动轮椅使用者提供了新的,更多的自动驾驶机会。

著录项

  • 作者

    Langner Martin;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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