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Effect of harmonicity on the detection of a signal in a complex masker and on spatial release from masking.

机译:谐波对复杂掩蔽器中信号检测以及掩蔽空间释放的影响。

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摘要

The amount of masking of sounds from one source (signals) by sounds from a competing source (maskers) heavily depends on the sound characteristics of the masker and the signal and on their relative spatial location. Numerous studies investigated the ability to detect a signal in a speech or a noise masker or the effect of spatial separation of signal and masker on the amount of masking, but there is a lack of studies investigating the combined effects of many cues on the masking as is typical for natural listening situations. The current study using free-field listening systematically evaluates the combined effects of harmonicity and inharmonicity cues in multi-tone maskers and cues resulting from spatial separation of target signal and masker on the detection of a pure tone in a multi-tone or a noise masker. A linear binaural processing model was implemented to predict the masked thresholds in order to estimate whether the observed thresholds can be accounted for by energetic masking in the auditory periphery or whether other effects are involved. Thresholds were determined for combinations of two target frequencies (1 and 8 kHz), two spatial configurations (masker and target either co-located or spatially separated by 90 degrees azimuth), and five different masker types (four complex multi-tone stimuli, one noise masker). A spatial separation of target and masker resulted in a release from masking for all masker types. The amount of masking significantly depended on the masker type and frequency range. The various harmonic and inharmonic relations between target and masker or between components of the masker resulted in a complex pattern of increased or decreased masked thresholds in comparison to the predicted energetic masking. The results indicate that harmonicity cues affect the detectability of a tonal target in a complex masker.
机译:来自一个源(信号)的声音被来自竞争源(掩蔽器)的声音掩盖的量在很大程度上取决于掩蔽器和信号的声音特性以及它们的相对空间位置。许多研究调查了在语音或噪声掩蔽器中检测信号的能力或信号和掩蔽器的空间分离对掩蔽量的影响,但是缺乏研究来研究许多线索对掩蔽的综合影响,例如通常用于自然聆听的情况。当前使用自由场收听的研究系统地评估了多音调掩蔽器中的谐波和非谐音提示以及目标信号和掩蔽器在空间上分离所产生的提示对多音调或噪声掩蔽器中纯音的检测的综合效果。 。实施线性双耳处理模型以预测掩蔽的阈值,以便估计观察到的阈值是否可以通过听觉周围的能量掩蔽来解释,或者是否涉及其他影响。确定了两个目标频率(1和8 kHz),两个空间配置(掩蔽器和目标位于同一位置或在空间上隔开90度方位角)和五种不同掩蔽器类型(四种复杂的多音刺激,一种)的组合的阈值噪音遮罩)。目标和掩蔽物的空间分隔导致所有掩蔽类型的掩蔽释放。掩蔽的数量很大程度上取决于掩蔽器的类型和频率范围。与预期的能量掩蔽相比,目标与掩蔽器之间或掩蔽器组件之间的各种谐波和非谐关系导致掩蔽阈值增加或减少的复杂模式。结果表明,谐波提示会影响复杂掩蔽器中音调目标的可检测性。

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