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首页> 外文期刊>The Journal of the Acoustical Society of America >Analysis of the performance of a model-based optimal auditory signal processor
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Analysis of the performance of a model-based optimal auditory signal processor

机译:基于模型的最佳听觉信号处理器的性能分析

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Traditionally, psychophysical data have been predicted either by constructing models of the peripheral auditory system or by applying signal detection theory (SDT). Frequently, the theoretical detection performance predicted by SDT is greater than that observed experimentally and a nonphysiologically based "internal noise" source is often added to the system to compensate for the discrepancy. A more appropriate explanation may be that traditional SDT approaches either incorporate little or no physiology or make simplifying assumptions regarding the density functions describing the physiological data. In the work presented here, an integrated approach, which combines SDT and a physiologically based model of the human auditory system, is proposed as an alternate method of quantifying detection performance. To validate this approach, the predicted detection performance for a simultaneous masking task is compared to predictions obtained from traditional methods and to experimental data. Additionally, the sensitivity of the integrated method is thoroughly investigated. The results suggest that by combining SDT with a physiologically based auditory model, thereby capitalizing on the strengths of each individual method, the previously observed discrepancies can be partially explained as the result of physical processes inherent in the auditory system rather than unspecified "internal noise" and more accurate predictions of psychophysical behavior can be obtained.
机译:传统上,通过构建外围听觉系统模型或通过应用信号检测理论(SDT)来预测心理物理数据。通常,SDT预测的理论检测性能要大于实验观察到的性能,并且通常在系统中添加基于非生理性的“内部噪声”源以补偿差异。更为恰当的解释可能是,传统的SDT方法要么包含很少的生理学,要么不包含任何生理学,或者简化了关于描述生理数据的密度函数的假设。在本文介绍的工作中,提出了一种结合了SDT和人类听觉系统的基于生理模型的集成方法,作为量化检测性能的另一种方法。为了验证这种方法,将同时掩蔽任务的预测检测性能与从传统方法获得的预测以及实验数据进行了比较。此外,还对集成方法的敏感性进行了深入研究。结果表明,通过将SDT与基于生理的听觉模型相结合,从而利用每种方法的优势,可以将先前观察到的差异部分解释为听觉系统固有的物理过程的结果,而不是未指明的“内部噪音”并且可以获得更准确的心理行为预测。

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