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Head-mounted Sensory Augmentation System for Navigation in Low Visibility Environments

机译:头戴式感觉增强系统,用于低能见度环境中的导航

摘要

Sensory augmentation can be used to assist in some tasks where sensory information is limited or sparse. This thesis focuses on the design and investigation of a head-mounted vibrotactile sensory augmentation interface to assist navigation in low visibility environments such as firefighters’ navigation or travel aids for visually impaired people.udA novel head-mounted vibrotactile interface comprising a 1-by-7 vibrotactile display worn on the forehead is developed. A series of psychophysical studies is carried out with this display to (1) determine the vibrotactile absolute threshold, (2) investigate the accuracy of vibrotactile localization, and (3) evaluate the funneling illusion and apparent motion as sensory phenomena that could be used to communicate navigation signals. The results of these studies provide guidelines for the design of head-mounted interfaces.udA 2nd generation head-mounted sensory augmentation interface called the Mark-IIudTactile Helmet is developed for the application of firefighters’ navigation. It consists of a ring of ultrasound sensors mounted to the outside of a helmet, a microcontroller, two batteries and a refined vibrotactile display composed of seven vibration motors based on the results of the aforementioned psychophysical studies.udA ‘tactile language’, that is, a set of distinguishable vibrotactile patterns, is developed for communicating navigation commands to the Mark-II Tactile Helmet. Four possible combinations of two command presentation modes (continuous, discrete) and two command types (recurring, single) are evaluated for their effectiveness in guiding users along a virtual wall in a structured environment. Continuous and discrete presentation modes use spatiotemporal patterns that induce the experience of apparent movement and discrete movement on the forehead, respectively. The recurring command type presents the tactile command repeatedly with an interval between patterns of 500 ms while the single command type presents the tactile command just once when there is a change in the command. The effectiveness of this tactile language is evaluated according to the objective measures of the users’ walking speed and the smoothness of their trajectory parallel to the virtual wall and subjective measures of utility andudcomfort employing Likert-type rating scales. The Recurring Continuous (RC) commands that exploit the phenomena of apparent motion are most effective in generating efficient routes and fast travel, and are most preferred.udFinally, the optimal tactile language (RC) is compared with audio guidance usingudverbal instructions to investigate effectiveness in delivering navigation commands. The results show that haptic guidance leads to better performance as well as lower cognitive workload compared to auditory feedback. This research demonstrates that a head-mounted sensory augmentation interface can enhance spatial awareness in low visibility environments and could help firefighters’ navigation by providing them with supplementary sensory information.
机译:感觉增强可用于协助某些感觉信息受限或稀疏的任务。本文着重于设计和研究头戴式震动感应界面,以辅助低能见度环境中的导航,例如消防员的导航或视力障碍者的旅行辅助。开发了戴在额头上的-7触感显示器。使用此显示器进行了一系列的心理物理研究,以(1)确定触觉绝对阈值,(2)研究触觉本地化的准确性,以及(3)评估漏斗错觉和视在运动为感觉现象,可用于传达导航信号。这些研究的结果为头戴式界面的设计提供了指导。 ud第二代头戴式感觉增强界面,称为Mark-II udTactile Helmet,是为消防人员的导航应用而开发的。它由一个安装在头盔外部的超声波传感器环,一个微控制器,两个电池和一个精巧的触觉显示器组成,该显示器由七个振动电机组成,这些振动电机基于上述心理物理学研究的结果。 udA触觉语言,即开发了一套可区分的触觉模式,用于将导航命令传达给Mark-II触觉头盔。评估了两种命令呈现方式(连续,离散)和两种命令类型(循环,单次)的四种可能组合,以指导用户在结构化环境中沿着虚拟墙的有效性。连续和离散的演示模式使用时空模式,分别引起额头上的明显运动和离散运动的经历。重复命令类型以500 ms的模式之间的间隔重复显示触觉命令,而单个命令类型在命令发生更改时仅显示一次触觉命令。该触觉语言的有效性是根据用户的步行速度及其与虚拟墙平行的轨迹的平滑度的客观度量以及采用李克特型评分量表的效用和不适感的主观度量来评估的。利用视在运动现象的连续连续(RC)命令在生成有效路线和快速行驶时最有效,并且是最可取的。 ud最后,将最佳触觉语言(RC)与使用 udverbal指令的语音指导进行比较,调查交付导航命令的有效性。结果表明,与听觉反馈相比,触觉指导可带来更好的性能以及更低的认知工作量。这项研究表明,头戴式感觉增强接口可以增强低能见度环境中的空间意识,并可以通过向消防员提供补充的感觉信息来帮助消防员导航。

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    Kerdegari Hamideh;

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