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首页> 外文期刊>ORL: Journal for oto-rhino-laryngology and its borderlands >A physiological ear model for the emulation of masking.
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A physiological ear model for the emulation of masking.

机译:用于掩蔽仿真的生理耳朵模型。

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摘要

Auditory masking is exploited in technical audio systems for transmission and storage to improve the perceived audio quality. In this respect, perception models are necessary for a masked threshold prediction to quantify the threshold of audibility for a given signal or distortion. The presented ear model emulates those parts of the auditory sound processing which are relevant to masking. The physiological modeling approach is not limited to simple masker-test-signal configurations as usually employed in psychoacoustical measurements, but it is valid for complex signals as well, which is desired in the aforementioned applications. The ear model includes a nonlinear active cochlear model which emulates the basic mechanisms effective in masking: excitation and suppression. Nonlinear mechanical amplification by means of the outer hair cells plays a crucial role in proper modeling of these effects. In addition to physiological measurements at the mechanical level of sound processing in the cochlea, classical masking patterns and nonlinear masking effects are demonstrated by the ear model.
机译:听觉掩蔽在技术音频系统中被利用来进行传输和存储,以改善感知的音频质量。在这方面,感知模型对于掩蔽阈值预测是必需的,以量化给定信号或失真的可听性阈值。所提出的耳朵模型模拟了与掩蔽相关的听觉声音处理的那些部分。生理建模方法不限于如通常在心理声学测量中采用的简单掩蔽测试信号配置,而是对复杂信号也有效,这在上述应用中是期望的。耳朵模型包括一个非线性有源耳蜗模型,该模型模拟了有效掩蔽的基本机制:激励和抑制。通过外部毛细胞进行的非线性机械放大在正确模拟这些效应中起着至关重要的作用。除了在耳蜗的声音处理的机械水平上进行生理测量外,耳部模型还展示了经典的掩蔽模式和非线性掩蔽效果。

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