Beutelmann Rainer, Brand Thomas
Medizinische Physik, Fakultät V, Carl-von-Ossietzky-Universität Oldenburg, D-26111 Oldenburg, Germany.
J Acoust Soc Am. 2006 Jul;120(1):331-42. doi: 10.1121/1.2202888.
Binaural speech intelligibility of individual listeners under realistic conditions was predicted using a model consisting of a gammatone filter bank, an independent equalization-cancellation (EC) process in each frequency band, a gammatone resynthesis, and the speech intelligibility index (SII). Hearing loss was simulated by adding uncorrelated masking noises (according to the pure-tone audiogram) to the ear channels. Speech intelligibility measurements were carried out with 8 normal-hearing and 15 hearing-impaired listeners, collecting speech reception threshold (SRT) data for three different room acoustic conditions (anechoic, office room, cafeteria hall) and eight directions of a single noise source (speech in front). Artificial EC processing errors derived from binaural masking level difference data using pure tones were incorporated into the model. Except for an adjustment of the SII-to-intelligibility mapping function, no model parameter was fitted to the SRT data of this study. The overall correlation coefficient between predicted and observed SRTs was 0.95. The dependence of the SRT of an individual listener on the noise direction and on room acoustics was predicted with a median correlation coefficient of 0.91. The effect of individual hearing impairment was predicted with a median correlation coefficient of 0.95. However, for mild hearing losses the release from masking was overestimated.
使用一个由伽马通滤波器组、每个频段独立的均衡消除(EC)过程、伽马通再合成以及言语清晰度指数(SII)组成的模型,预测了现实条件下个体听众的双耳言语清晰度。通过向耳道添加不相关的掩蔽噪声(根据纯音听力图)来模拟听力损失。对8名听力正常的听众和15名听力受损的听众进行了言语清晰度测量,收集了三种不同房间声学条件(消声室、办公室、自助餐厅)和单个噪声源八个方向(前方言语)的言语接受阈值(SRT)数据。利用纯音从双耳掩蔽级差数据中得出的人工EC处理误差被纳入模型。除了对SII与清晰度映射函数进行调整外,没有对本研究的SRT数据拟合任何模型参数。预测的和观察到的SRT之间的总体相关系数为0.95。个体听众的SRT对噪声方向和房间声学的依赖性预测的中值相关系数为0.91。个体听力损失的影响预测的中值相关系数为0.95。然而,对于轻度听力损失,掩蔽释放被高估了。