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3-D head-related transfer function (HRTF) interpolation ...

    https://www.mathworks.com/help/audio/ref/interpolatehrtf.html
    Render 3-D Audio on Headphones Modify the 3-D audio image of a sound file by filtering it through a head-related transfer function (HRTF). Set the location of the sound source by specifying the desired azimuth and elevation.

MATLAB IMPLEMENTATION OF THE HRTF COMPOSITION

    https://www2.humusoft.cz/www/papers/tcp2015/018_dyussekenova.pdf
    to compose a HRTF that will resemble the measured one to a certain degree of accuracy. The result is the set of functions that compares people’s anthropometric features, creates a personalized HRTF and save s it in the database. 1 Introduction . Psychoacoustics, i.e. the study of sound perception, is applied in many various fields –

3-D head-related transfer function (HRTF ... - MATLAB

    https://jp.mathworks.com/help/audio/ref/interpolatehrtf.html
    Render 3-D Audio on Headphones Modify the 3-D audio image of a sound file by filtering it through a head-related transfer function (HRTF). Set the location of the sound source by specifying the desired azimuth and elevation.

HRTF implementation in matlab - Signal Processing Stack ...

    https://dsp.stackexchange.com/questions/12771/hrtf-implementation-in-matlab
    There is no such thing as a 3D signal, but if you want to simulate audio from a given azimuth and elevation angle, just convolve your audio source with the corresponding HRIR as follows: left_channel = conv (audio_signal,hrir_left_az_elev) right_channel = conv (audio_signal,hrir_right_az_elev)

Representations of HRTFs using MATLAB: 2D and 3D plots of ...

    https://www.acoustics.asn.au/conference_proceedings/ICA2010/cdrom-ICA2010/papers/p45.pdf
    ω ω pj p j HRTF= (1) where p1is the sound pressure at the eardrum and p2is the sound pressure of the reference signal measured with an om- nidirectional microphone at the origin of the head-related coordinate system. In addition to (1), interaural differences can be defined by dividing the left ear’s HRTF by the right ear’s HRTF.

Matlab/audio_with_brir.m at master · Asues/Matlab · GitHub

    https://github.com/Asues/Matlab/blob/master/HRTF/audio_with_brir.m
    Matlab / HRTF / audio_with_brir.m Go to file Go to file T; Go to line L; Copy path Copy permalink . Cannot retrieve contributors at this time. 137 lines (104 sloc) 5.02 KB Raw Blame Open with Desktop View raw View blame This file contains bidirectional Unicode text that may be interpreted or compiled differently than what appears below. ...

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