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A Parametric Method for Elevation Control

机译:高程控制的参数方法

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Elevation perception plays a crucial role in binaural audio rendering. In order to synthesize an immersive and natural sound, the binaural room impulse response(BRIR) is widely applied. However, because of the limitation of recording equipment, most of the measured BRIR databases don't have elevation angle. In this paper, we propose a parametric method for elevation control by modeling and modifying the spectral features of the direct components in BRIRs that play dominant roles in elevation perception. We first decompose and extract the significant spectral features contained in the Head Related Transfer Function (HRTF) spectrum that are perceptually important for vertical localization. Based on these features, the direct component of different BRIRs can be modified, with which the elevated entire BRIRs can be generated by combining the late components of original BRIRs. Listening tests reveal that the proposed method can effectively control the elevation perception of the given BRIR database.
机译:高程感知在双耳音频渲染中起着至关重要的作用。为了合成身临其境的自然声音,双耳房间冲激响应(BRIR)得到了广泛应用。但是,由于记录设备的限制,大多数测得的BRIR数据库没有仰角。在本文中,我们通过建模和修改在高程感知中起主要作用的BRIR中直接成分的光谱特征,提出了一种用于高程控制的参数方法。我们首先分解并提取头部相关传递函数(HRTF)光谱中包含的重要光谱特征,这些特征对于垂直定位在感知上很重要。基于这些特征,可以修改不同BRIR的直接分量,从而可以通过组合原始BRIR的后期分量来生成提升的整个BRIR。听力测试表明,该方法可以有效控制给定BRIR数据库的海拔高度感知。

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