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Multirate modeling of human ear frequency resolution for hearing aids

机译:助听器人耳频率分辨率的多速率建模

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摘要

A real-time multirate filtering design project, as an application in digital hearing aids, has been developed. The motivation is that it allows nonuniform frequency resolution which automatically leads us to use different decimators for different frequency bandwidths. Therefore, a variation of the tree structured multirate multistage filter bank is exploited with six pairs of polyphase filters for decimation and six pairs for interpolation to achieve seven different frequency bandwidths, each for an octave. Such nonuniform systems are well-suited for the processing of sound signals, because of the decreasing resolution of the human ear at higher frequencies. For audiogram match, the frequency response of the decimation filter bank can be individually adjustable in each octave band. The other advantages of multirate processing provide for less computational and storage requirements as well as lower order filter design. Texas Instruments Evaluation Module (EVM), based on the fifth generation TI TMS320C50 digital signal processor, is used for implementation.
机译:作为数字助听器中的应用,已经开发了实时多速率过滤设计项目。其动机是它允许非均匀的频率分辨率,这自动导致我们对不同的频率带宽使用不同的抽取器。因此,利用树状结构的多速率多级滤波器组的变体,利用六对多相滤波器进行抽取,六对多相滤波器进行插值,以实现七个不同的频率带宽,每个带宽八度。由于人耳在较高频率下的分辨率降低,因此这种非均匀系统非常适合于声音信号的处理。对于听力图匹配,抽取滤波器组的频率响应可以在每个倍频程中单独调节。多速率处理的其他优点提供了较少的计算和存储要求以及较低阶的滤波器设计。基于第五代TI TMS320C50数字信号处理器的德州仪器评估模块(EVM)用于实施。

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