Abstract

본 논문에서는 64채널 디지털 보청기의 주파수 채널 별 비선형 압축을 위한 휘팅 기법을 연구하였다. 청력 검사 결과로부터 수행되는 기존의 휘팅 포뮬라 기법과 달리, 귓속형 보청기를 사용자가 외이도에 착용한 상태에서 고막에서의 청력 역치를 측정하여 이를 휘팅에 적용하였다. 또한 외부 음성 음압의 주파수 별 분포도를 활용하여 입력 음압 대비 출력 음압 압축 곡선을 구현하였다. FFT-iFFT 방식의 이론적 압축 연구 결과를 실험적으로도 검증하였으며, 입력음압 레벨이 각각 50 dB, 70 dB, 90 dB일 때의 증폭 이득 곡선을 보여주었다. In this thesis, a nonlinear compression fitting method was studied for each frequency channel of a 64 channel digital hearing aid. Unlike conventional fitting formula method done from the result of the hearing loss test, the present fitting method uses the auditory threshold of sound pressure measured near the tympanic membrane while ITE (In-The-Ear) hearing aid is fitted into the user's ear canal. Also, the spectral distribution of the voice sound pressure was used for realizing of output sound pressure compression curves against input sound pressure level. Theoretical research results of FFT-iFFT compression algorithm has been evaluated by experimental gain measurements at each different input sound pressure level 50 dB, 70 dB, 90 dB respectively.

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