DocumentCode
1653068
Title
A directional diffuse reverberation model for excavated tunnels in rock
Author
Oksanen, Sami ; Parker, Julian ; Politis, Archontis ; Valimaki, Vesa
Author_Institution
Dept. of Signal Process. & Acoust., Aalto Univ., Espoo, Finland
fYear
2013
Firstpage
644
Lastpage
648
Abstract
Acoustic impulse responses of an excavated tunnel were measured. Analysis of the impulse responses shows that they are very diffuse from the start. A reverberator suitable for reproducing this type of response is proposed. The input signal is first comb-filtered and then convolved with a sparse noise sequence of the same length as the filter´s delay line. An IIR loop filter inside the comb filter determines the decay rate of the response and is derived from the Yule-Walker approximation of the measured frequency-dependent reverberation time. The particular sparse noise sequence proposed in this work combines three velvet noise sequences, two of which have time-varying weights. To simulate the directional soundfield in a tunnel, the use of multiple such reverberators, each associated with a virtual source distributed evenly around the listener, is suggested. The proposed tunnel acoustics simulation can be employed in gaming, in film sound, or in working machine simulators.
Keywords
IIR filters; acoustic measurement; acoustic signal processing; comb filters; reverberation; rocks; tunnels; IIR loop filter; Yule-Walker approximation; acoustic impulse response; comb filter; directional diffuse reverberation model; excavated tunnels; film sound; frequency-dependent reverberation time; gaming; machine simulators; rock; sparse noise sequence; velvet noise sequences; Acoustic measurements; Convolution; Microphones; Noise; Reverberation; Time-frequency analysis; Acoustic measurements; acoustic signal processing; convolution; reverberation;
fLanguage
English
Publisher
ieee
Conference_Titel
Acoustics, Speech and Signal Processing (ICASSP), 2013 IEEE International Conference on
Conference_Location
Vancouver, BC
ISSN
1520-6149
Type
conf
DOI
10.1109/ICASSP.2013.6637727
Filename
6637727
Link To Document