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Discrimination and identification of azimuth using spectral shape1

机译:使用频谱形状区分和识别方位1

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摘要

Monaural measurements of minimum audible angle (MAA) (discrimination between two locations) and absolute identification (AI) of azimuthal locations in the frontal horizontal plane are reported. All experiments used roving-level fixed-spectral-shape stimuli processed with nonindividualized head-related transfer functions (HRTFs) to simulate the source locations. Listeners were instructed to maximize percent correct, and correct-answer feedback was provided after every trial. Measurements are reported for normal-hearing subjects, who listened with only one ear, and effectively monaural subjects, who had substantial unilateral hearing impairments (i.e., hearing losses greater than 60 dB) and listened with their normal ears. Both populations behaved similarly; the monaural experience of the unilaterally impaired listeners was not beneficial for these monaural localization tasks. Performance in the AI experiments was similar with both 7 and 13 source locations. The average root-mean-squared deviation between the virtual source location and the reported location was 35°, the average slopes of the best fitting line was 0.82, and the average bias was 2°. The best monaural MAAs were less than 5°. The MAAs were consistent with a theoretical analysis of the HRTFs, which suggests that monaural azimuthal discrimination is related to spectral-shape discrimination.
机译:报告了最小可听角度(MAA)(在两个位置之间的区别)的单声道测量结果和额度在水平面中的方位角位置的绝对标识(AI)。所有实验都使用粗加工级别的固定频谱形状刺激,并通过非个性化的头部相关传递函数(HRTF)处理来模拟源位置。指示听众最大程度地提高正确率,并且在每次试验后都提供正确答案的反馈。报告了对仅用一只耳朵听的正常听力受试者和有效单耳受试者的测量结果,这些受试者具有严重的单侧听力障碍(即听力损失大于60 dB)并且用正常的耳朵听。两种人群的行为相似。单方面受损的听众的单声道体验对这些单声道本地化任务不利。在AI实验中,7个和13个源位置的性能相似。虚拟源位置和报告的位置之间的平均均方根偏差为35°,最佳拟合线的平均斜率为0.82,平均偏差为2°。最佳单声道MAA小于5°。 MAA与HRTF的理论分析一致,这表明单耳方位识别与频谱形状识别有关。

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