Jepsen Morten L, Ewert Stephan D, Dau Torsten
Centre for Applied Hearing Research, Acoustic Technology, Department of Electrical Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.
J Acoust Soc Am. 2008 Jul;124(1):422-38. doi: 10.1121/1.2924135.
A model of computational auditory signal-processing and perception that accounts for various aspects of simultaneous and nonsimultaneous masking in human listeners is presented. The model is based on the modulation filterbank model described by Dau et al. [J. Acoust. Soc. Am. 102, 2892 (1997)] but includes major changes at the peripheral and more central stages of processing. The model contains outer- and middle-ear transformations, a nonlinear basilar-membrane processing stage, a hair-cell transduction stage, a squaring expansion, an adaptation stage, a 150-Hz lowpass modulation filter, a bandpass modulation filterbank, a constant-variance internal noise, and an optimal detector stage. The model was evaluated in experimental conditions that reflect, to a different degree, effects of compression as well as spectral and temporal resolution in auditory processing. The experiments include intensity discrimination with pure tones and broadband noise, tone-in-noise detection, spectral masking with narrow-band signals and maskers, forward masking with tone signals and tone or noise maskers, and amplitude-modulation detection with narrow- and wideband noise carriers. The model can account for most of the key properties of the data and is more powerful than the original model. The model might be useful as a front end in technical applications.
提出了一种计算听觉信号处理与感知模型,该模型解释了人类听众中同时和非同时掩蔽的各个方面。该模型基于Dau等人[《美国声学学会杂志》102, 2892 (1997)]描述的调制滤波器组模型,但在处理的外周和更中枢阶段包含重大变化。该模型包含外耳和中耳变换、非线性基底膜处理阶段、毛细胞转导阶段、平方扩展、适应阶段、150赫兹低通调制滤波器、带通调制滤波器组、恒定方差内部噪声和最优检测器阶段。该模型在不同程度上反映听觉处理中压缩以及频谱和时间分辨率影响的实验条件下进行了评估。实验包括纯音和宽带噪声的强度辨别、噪声中的音调检测、窄带信号和掩蔽器的频谱掩蔽、音调信号与音调或噪声掩蔽器的前向掩蔽以及窄带和宽带噪声载波的调幅检测。该模型可以解释数据的大多数关键特性,并且比原始模型更强大。该模型可能作为技术应用中的前端很有用。