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Localization in Elevation with Non-Individual Head-Related Transfer Functions: Comparing Predictions of Two Auditory Models

机译:具有非个人头部相关传递函数的高程本地化:两种听觉模型的预测比较

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This paper explores the limits of human localization of sound sources when listening with non-individual Head-Related Transfer Functions (HRTFs), by simulating performances of a localization task in the mid-sagittal plane. Computational simulations are performed with the CIPIC HRTF database using two different auditory models which mimic human hearing processing from a functional point of view. Our methodology investigates the opportunity of using virtual experiments instead of time- and resource- demanding psychoacoustic tests, which could also lead to potentially unreliable results. Four different perceptual metrics were implemented in order to identify relevant differences between auditory models in a selection problem of best-available non-individual HRTFs. Results report a high correlation between the two models denoting an overall similar trend, however, we discuss discrepancies in the predictions which should be carefully considered for the applicability of our methodology to the HRTF selection problem.
机译:本文通过模拟矢状面中部的定位任务的性能,探索了在使用非个人头部相关传递函数(HRTF)收听时人类对声源的局限性。使用两个不同的听觉模型,使用CIPIC HRTF数据库执行计算模拟,从功能的角度模拟听觉过程。我们的方法探讨了使用虚拟实验代替时间和资源需求的心理声学测试的机会,这也可能导致潜在的不可靠结果。为了确定最佳可用非个人HRTF的选择问题中的听觉模型之间的相关差异,实施了四个不同的感知指标。结果报告了这两个模型之间的高度相关性,表明总体上相似的趋势,但是,我们讨论了预测中的差异,对于我们的方法论对HRTF选择问题的适用性应仔细考虑。

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