Sammenlign metoder
Gjennomgå de valgte metodene side om side; rader som avviker, er uthevet.
| MFCC (Mel-frekvens Cepstrale Koeffisienter)× | Ambisonics× | Head-Related Transfer Function× | |
|---|---|---|---|
| Fagfelt | Anvendt fysikk | Anvendt fysikk | Anvendt fysikk |
| Familie | Process / pipeline | Process / pipeline | Process / pipeline |
| Opprinnelsesår≠ | 1980 | 1973 | 1989 |
| Opphavsperson≠ | Steven Davis, Paul Mermelstein | Michael Gerzon | Fredrik Wightman, Doris Kistler |
| Type≠ | Audio feature extraction algorithm | Spatial audio encoding and reproduction technique | Frequency-dependent spatial filtering function |
| Opprinnelig kilde≠ | Davis, S., & Mermelstein, P. (1980). Comparison of parametric representations for monosyllabic word recognition in continuously spoken sentences. IEEE Transactions on Acoustics, Speech, and Signal Processing, 28(4), 357-366. DOI ↗ | Gerzon, M. A. (1973). Periphony: with-height sound reproduction. Journal of the Audio Engineering Society, 21(1), 2-10. link ↗ | Wightman, F. L., & Kistler, D. J. (1989). Headphone simulation of free-field listening. I: Stimulus synthesis. The Journal of the Acoustical Society of America, 85(2), 858-867. DOI ↗ |
| Alias | mel-cepstral features, MFCC features, mel-frequency features | spatial audio, B-format, ambisonic recording | HRTF, spatial hearing, binaural filter |
| Relaterte | 3 | 3 | 3 |
| Sammendrag≠ | Mel-Frequency Cepstral Coefficients (MFCCs) are a compact representation of audio features that mimic human auditory perception. Introduced by Davis and Mermelstein in 1980, MFCCs are the de facto feature extraction method for speech recognition and environmental sound analysis. They compress the frequency information of audio signals into a small set of coefficients that capture phonetic content while discarding irrelevant details. | Ambisonics is a full-sphere spatial audio encoding and reproduction technique that captures and reproduces three-dimensional sound fields. Developed by Michael Gerzon in the 1970s, it uses spherical harmonics to represent sound at all directions around a central point. Unlike surround systems that use discrete channels, Ambisonics provides a format-agnostic spatial representation that can be rotated, translated, and rendered to any speaker configuration. | The Head-Related Transfer Function (HRTF) describes how the human head, ears, and torso filter sound from different directions. HRTFs capture the acoustical changes that occur as sound travels around the head to reach each ear, enabling the perception of sound location in 3D space. Measured or modeled HRTFs are essential for creating convincing 3D audio through headphones in virtual reality, spatial games, and immersive audio applications. |
| ScholarGateDatasett ↗ |
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