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SonifEye: Sonification of Visual Information Using Physical Modeling Sound Synthesis

机译:SonifEye:使用物理建模声音合成对视觉信息进行声音处理

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摘要

Sonic interaction as a technique for conveying information has advantages over conventional visual augmented reality methods specially when augmenting the visual field with extra information brings distraction. Sonification of knowledge extracted by applying computational methods to sensory data is a well-established concept. However, some aspects of sonic interaction design such as aesthetics, the cognitive effort required for perceiving information, and avoiding alarm fatigue are not well studied in literature. In this work, we present a sonification scheme based on employment of physical modeling sound synthesis which targets focus demanding tasks requiring extreme precision. Proposed mapping techniques are designed to require minimum training for users to adapt to and minimum mental effort to interpret the conveyed information. Two experiments are conducted to assess the feasibility of the proposed method and compare it against visual augmented reality in high precision tasks. The observed quantitative results suggest that utilizing sound patches generated by physical modeling achieve the desired goal of improving the user experience and general task performance with minimal training.
机译:声波交互作为一种传达信息的技术具有优于常规视觉增强现实方法的优势,特别是在使用额外信息来增强视野时会分散注意力。通过将计算方法应用于感官数据而提取的知识的超声化是一个公认的概念。但是,声音交互设计的某些方面,例如美学,感知信息所需的认知努力以及避免警报疲劳,在文献中并未得到很好的研究。在这项工作中,我们提出了一个基于物理建模声音合成技术的超音波方案,该方案针对需要极高精确度的重点任务。提议的地图绘制技术旨在要求用户进行最少的培训以适应和以最小的精力来解释所传达的信息。进行了两个实验,以评估该方法的可行性,并将其与高精度任务中的视觉增强现实进行比较。观察到的定量结果表明,利用由物理模型生成的声音补丁,可以通过最少的培训来达到改善用户体验和一般任务性能的预期目标。

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