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Efficient Approximation of Head-Related Transfer Functions in Subbands for Accurate Sound Localization

机译:子带中与头相关的传递函数的有效近似用于精确的声音定位

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摘要

Head-related transfer functions (HRTFs) describe the acoustic filtering of incoming sounds by the human morphology and are essential for listeners to localize sound sources in virtual auditory displays. Since rendering complex virtual scenes is computationally demanding, we propose four algorithms for efficiently representing HRTFs in subbands, i.e., as an analysis filterbank (FB) followed by a transfer matrix and a synthesis FB. All four algorithms use sparse approximation procedures to minimize the computational complexity while maintaining perceptually relevant HRTF properties. The first two algorithms separately optimize the complexity of the transfer matrix associated to each HRTF for fixed FBs. The other two algorithms jointly optimize the FBs and transfer matrices for complete HRTF sets by two variants. The first variant aims at minimizing the complexity of the transfer matrices, while the second one does it for the FBs. Numerical experiments investigate the latency-complexity trade-off and show that the proposed methods offer significant computational savings when compared with other available approaches. Psychoacoustic localization experiments were modeled and conducted to find a reasonable approximation tolerance so that no significant localization performance degradation was introduced by the subband representation.
机译:头部相关传递函数(HRTF)描述了人类形态对传入声音的声学过滤,对于听众在虚拟听觉显示器中定位声源至关重要。由于渲染复杂的虚拟场景需要大量计算,因此我们提出了四种算法来有效表示子带中的HRTF,即作为分析滤波器组(FB),然后是传输矩阵和合成FB。所有这四种算法都使用稀疏近似过程来最小化计算复杂性,同时保持与感知相关的HRTF属性。前两个算法分别针对固定FB优化与每个HRTF相关的传输矩阵的复杂度。另两种算法通过两个变体共同优化了FB和传输矩阵,以实现完整的HRTF集。第一个变量旨在最小化传输矩阵的复杂性,而第二个变量则针对FB。数值实验研究了延迟复杂度的折衷,并表明与其他可用方法相比,所提出的方法可节省大量计算量。建模并进行了心理声学定位实验,以找到合理的近似容限,以便子带表示不会引起明显的定位性能下降。

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