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Comparative study on the effect of Parameter Mapping Sonification on perceived instabilities, efficiency, and accuracy in real-time interactive exploration of noisy data streams

机译:在嘈杂数据流的实时交互式探索中,参数映射声处理对感知的不稳定性,效率和准确性的影响的比较研究

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摘要

This paper presents a comparative study on common Parameter Mapping Sonifications (PMSons) designed to reduce the perception of instabilities during the real-time interactive exploration of noisy data streams. The objective of this study is to evaluate the capacity of these PMSons in reducing the perceived fluctuations while preserving both efficiency and accuracy of participants' estimations during the exploration task. Based on the real application of beacon localization for rescue operations, an abstraction of the task was developed which simulates the basic concepts involved, i.e. the estimation of local maxima during the exploration of a 1D data topography. Three different PMSons were selected, based on pitch, pitch averaged over time, and tempo, evaluated for three different noise levels applied to the data. Subjects explored the auditory graph using a pen tablet to define their auditory viewpoint (i.e. position) on the topography. Evaluations were based on subjects' ability to quickly appraise the underlying data topography along with aesthetic considerations regarding the impact of noise on the exploration task. Results showed that both tempo and pitch averaged PMSon reduced the perceived instabilities compared to pitch, while tempo preserved the response time of the sonification feedback.
机译:本文提出了对公共参数映射声化(PMSons)的比较研究,旨在减少对嘈杂数据流进行实时交互式探索期间的不稳定性。这项研究的目的是评估这些PMSon在减少感知波动方面的能力,同时在探索任务期间保持参与者估计的效率和准确性。基于信标定位在救援行动中的实际应用,开发了一项任务的抽象,该任务模拟了所涉及的基本概念,即在一维数据拓扑结构探索过程中对局部最大值的估计。基于音高,随时间变化的平均音高和速度选择了三个不同的PMSon,针对应用于数据的三个不同的噪声水平进行了评估。受试者使用数位板探索了听觉图,以定义其在地形上的听觉视点(即位置)。评估基于受试者快速评估基础数据地形的能力以及有关噪声对勘探任务影响的美学考虑。结果表明,与音高相比,速度和音高平均PMSon均降低了感知的不稳定性,而速度则保留了超声反馈的响应时间。

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