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Universal Design of Auditory Graphs: A Comparison of Sonification Mappings for Visually Impaired and Sighted Listeners

机译:听觉图的通用设计:视障者和视听者的声音映射的比较

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Determining patterns in data is an important and often difficult task for scientists and students. Unfortunately, graphing and analysis software typically is largely inaccessible to users with vision impairment. Using sound to represent data (i.e., sonification or auditory graphs) can make data analysis more accessible; however, there are few guidelines for designing such displays for maximum effectiveness. One crucial yet understudied design issue is exactly how changes in data (e.g., temperature) are mapped onto changes in sound (e.g., pitch), and how this may depend on the specific user. In this study, magnitude estimation was used to determine preferred data-to-display mappings, polarities, and psychophysical scaling functions relating data values to underlying acoustic parameters (frequency, tempo, or modulation index) for blind and visually impaired listeners. The resulting polarities and scaling functions are compared to previous results with sighted participants. There was general agreement about polarities obtained with the two listener populations, with some notable exceptions. There was also evidence for strong similarities regarding the magnitudes of the slopes of the scaling functions, again with some notable differences. For maximum effectiveness, sonification software designers will need to consider carefully their intended users' vision abilities. Practical implications and limitations are discussed.
机译:对于科学家和学生来说,确定数据模式是一项重要且通常很困难的任务。不幸的是,有视力障碍的用户通常无法使用图形和分析软件。使用声音来表示数据(即超声波或听觉图)可以使数据分析更容易访问;但是,很少有指南设计此类显示器以实现最大的效果。一个关键但尚未深入研究的设计问题就是数据的变化(例如温度)如何准确地映射到声音的变化(例如音高)上,以及如何取决于特定用户。在这项研究中,幅度估计用于确定将数据值与潜在的听觉和视障听众的潜在声学参数(频率,速度或调制指数)相关的首选数据到显示的映射,极性和心理物理缩放函数。将结果极性和缩放函数与以前有视力的参与者的结果进行比较。关于两个听众群体获得的极性存在普遍共识,但有一些明显的例外。也有证据表明,缩放函数的斜率大小有很大相似性,但又有一些显着差异。为了获得最佳效果,超声波软件设计人员将需要仔细考虑目标用户的视觉能力。讨论了实际意义和局限性。

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