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Multiple spatial sounds in hierarchical menu navigation for visually impaired computer users

机译:分层菜单导航中的多种空间声音,适用于视觉障碍的计算机用户

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This paper describes a user study on the benefits and drawbacks of simultaneous spatial sounds in auditory interfaces for visually impaired and blind computer users. Two different auditory interfaces in spatial and non-spatial condition were proposed to represent the hierarchical menu structure of a simple word processing application. In the horizontal interface, the sound sources or the menu items were located in the horizontal plane on a virtual ring surrounding the user's head, while the sound sources in the vertical interface were aligned one above the other in front of the user. In the vertical interface, the central pitch of the sound sources at different elevations was changed in order to improve the otherwise relatively low localization performance in the vertical dimension. The interaction with the interfaces was based on a standard computer keyboard for input and a pair of studio headphones for output. Twelve blind or visually impaired test subjects were asked to perform ten different word processing tasks within four experiment conditions. Task completion times, navigation performance, overall satisfaction and cognitive workload were evaluated. The initial hypothesis, i.e. that the spatial auditory interfaces with multiple simultaneous sounds should prove to be faster and more efficient than non-spatial ones, was not confirmed. On the contraryspatial auditory interfaces proved to be significantly slower due to the high cognitive workload and temporal demand. The majority of users did in fact finish tasks with less navigation and key pressing; however, they required much more time. They reported the spatial auditory interfaces to be hard to use for a longer period of time due to the high temporal and mental demand, especially with regards to the comprehension of multiple simultaneous sounds. The comparison between the horizontal and vertical interface showed no significant differences between the two. It is important to point out that all participants were novice users of the system; therefore it is possible that the overall performance could change with a more extensive use of the interfaces and an increased number of trials or experiments sets. Our interviews with visually impaired and blind computer users showed that they are used to sharing their auditory channel in order to perform multiple simultaneous tasks such as listening to the radio, talking to somebody, using the computer, etc. As the perception of multiple simultaneous sounds requires the entire capacity of the auditory channel and total concentration of the listener, it does therefore not enable such multitasking.
机译:本文描述了针对视障人士和盲人用户在听觉界面中同时进行空间声音的利弊的用户研究。在空间和非空间条件下,提出了两种不同的听觉界面来表示简单文字处理应用程序的分层菜单结构。在水平界面中,声源或菜单项位于围绕用户头部的虚拟环上的水平面中,而垂直界面中的声源则在用户面前彼此对齐。在垂直界面中,更改了不同高度处的声源的中心音高,以改善垂直方向上相对较低的定位性能。与接口的交互基于用于输入的标准计算机键盘和用于输出的一对录音室耳机。要求十二个盲人或视觉障碍的测试对象在四个实验条件下执行十个不同的文字处理任务。评估任务完成时间,导航性能,总体满意度和认知工作量。没有证实最初的假设,即具有多个同时声音的空间听觉界面应比非空间声音更快,更有效。相反,由于较高的认知工作量和时间需求,空间听觉界面被证明明显较慢。实际上,大多数用户以较少的导航和按键操作来完成任务。但是,他们需要更多时间。他们报告说,由于较高的时间和心理需求,尤其是在理解多种同时发声方面,空间听觉界面很难长时间使用。水平和垂直界面之间的比较表明两者之间没有显着差异。需要指出的是,所有参与者都是系统的新手。因此,有可能随着接口的更广泛使用以及更多的试验或实验集而改变整体性能。我们对视障人士和盲人计算机用户的采访表明,他们习惯于共享自己的听觉通道,以执行多个同时执行的任务,例如收听广播,与某人交谈,使用计算机等。需要听觉通道的全部容量和听众的全部注意力,因此不能进行这种多任务处理。

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