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Adapting Hearing Devices to the Individual Ear Acoustics: Database and Target Response Correction Functions for Various Device Styles

机译:使听力设备适应个体的耳朵声学:针对各种设备样式的数据库和目标响应校正功能

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To achieve a natural sound quality when listening through hearing devices, the sound pressure at the eardrum should replicate that of the open ear, modified only by an insertion gain if desired. A target approximating this reference condition can be computed by applying an appropriate correction function to the pressure observed at the device microphone. Such Target Response Correction Functions (TRCF) can be defined based on the directionally dependent relative transfer function between the location of the hearing device microphone and the eardrum of the open ear. However, it is unclear how exactly the TRCF should be derived, and how large the benefit of individual, versus generic, correction is. We present measurements of Head-Related Transfer Functions (HRTF) at the eardrum and at 9 microphone locations of a comprehensive set of 5 hearing device styles, including 91 incidence directions, and recorded in 16 subjects and 2 dummy heads. Based on these HRTFs, individualized and generic TRCF were computed for frontal (referred to as free-field) and diffuse-field sound incidence. Spectral deviations between the computed target and listening with the open ear were evaluated using an auditory model and virtual acoustic scenes. Results indicate that a correction for diffuse-field incidence should be preferred over the free field, and individual correction functions result in notably reduced spectral deviations to open-ear listening, as compared with generic correction functions. These outcomes depend substantially on the specific device style. The HRTF database and derived TRCFs are publicly available.
机译:为了在通过助听器收听时获得自然的声音质量,耳膜上的声压应复制开放式耳朵的声压,如果需要,只能通过插入增益来改变。可以通过将适当的校正函数应用于在设备麦克风处观察到的压力来计算接近此参考条件的目标。可以基于听力设备麦克风的位置和张开的耳朵的鼓膜之间的方向相关的相对传递函数来定义这样的目标响应校正函数(TRCF)。但是,尚不清楚应如何精确地推算出TRCF,以及相对于一般性校正而言,个别校正的收益有多大。我们介绍了在5种助听器样式中,包括91个入射方向的一组完整信息,在耳膜和9个麦克风位置的头相关传递函数(HRTF)的测量结果,并记录在16个受试者和2个虚拟头部中。基于这些HRTF,计算了正面(称为自由场)和扩散场声音入射的个性化和通用TRCF。使用听觉模型和虚拟声学场景评估了计算目标与睁开耳朵聆听之间的频谱偏差。结果表明,与自由场相比,对散射场入射的校正应优先于自由场,并且与常规校正功能相比,单独的校正功能可显着降低开耳式监听的频谱偏差。这些结果在很大程度上取决于特定的设备样式。 HRTF数据库和派生的TRCF是公开可用的。

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