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一种用于头部相关传递函数的几何形状获取、3D打印、模拟和测量的框架,重点关注听力辅助设备。

A framework for geometry acquisition, 3-D printing, simulation, and measurement of head-related transfer functions with a focus on hearing-assistive devices.

作者信息

Harder Stine, Paulsen Rasmus R, Larsen Martin, Laugesen Søren, Mihocic Michael, Majdak Piotr

机构信息

Technical University of Denmark, DTU Compute, DK-2800 Lyngby, Denmark.

Oticon A/S, DK-2765 Smørum, Denmark.

出版信息

Comput Aided Des. 2016 Jun;75-76:39-46. doi: 10.1016/j.cad.2016.02.006.

Abstract

Individual head-related transfer functions (HRTFs) are essential in applications like fitting hearing-assistive devices (HADs) for providing accurate sound localization performance. Individual HRTFs are usually obtained through intricate acoustic measurements. This paper investigates the use of a three-dimensional (3D) head model for acquisition of individual HRTFs. Two aspects were investigated; whether a 3D-printed model can replace measurements on a human listener and whether numerical simulations can replace acoustic measurements. For this purpose, HRTFs were acoustically measured for four human listeners and for a 3D printed head model of one of these listeners. Further, HRTFs were simulated by applying the finite element method to the 3D head model. The monaural spectral features and spectral distortions were very similar between re-measurements and between human and printed measurements, however larger deviations were observed between measurement and simulation. The binaural cues were in agreement among all HRTFs of the same listener, indicating that the 3D model is able to provide localization cues potentially accessible to HAD users. Hence, the pipeline of geometry acquisition, printing, and acoustic measurements or simulations, seems to be a promising step forward towards in-silico design of HADs.

摘要

个体头部相关传递函数(HRTFs)在诸如适配助听设备(HADs)以提供精确声音定位性能的应用中至关重要。个体HRTFs通常通过复杂的声学测量来获取。本文研究了使用三维(3D)头部模型来获取个体HRTFs。研究了两个方面:3D打印模型是否可以替代对人类听众的测量,以及数值模拟是否可以替代声学测量。为此,对四名人类听众以及其中一名听众的3D打印头部模型进行了声学HRTFs测量。此外,通过将有限元方法应用于3D头部模型来模拟HRTFs。在重新测量之间以及人类测量与打印测量之间,单耳频谱特征和频谱失真非常相似,然而在测量与模拟之间观察到了较大偏差。同一听众的所有HRTFs之间的双耳线索是一致的,这表明3D模型能够提供HAD用户可能获取的定位线索。因此,几何形状获取、打印以及声学测量或模拟的流程,似乎是朝着HADs的计算机辅助设计迈出的有前景的一步。

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