DocumentCode :
667541
Title :
Room impulse response synthesis based on a 2D multi-plane FDTD hybrid acoustic model
Author :
Oxnard, Stephen ; Murphy, Damian
Author_Institution :
Dept. of Electron., Univ. of York, York, UK
fYear :
2013
fDate :
20-23 Oct. 2013
Firstpage :
1
Lastpage :
4
Abstract :
This paper exposes, and analyzes the validity of, a novel hybrid acoustic modeling system created through complementary assimilation of 3D geometric and 2D numerical modeling techniques. It is demonstrated that multiple 2D Finite Difference Time Domain schemes may be employed to simulate low-frequency sound wave propagation throughout a simplistic 3D enclosure, thus avoiding the immense computational challenges posed by 3D numerical approaches. Band limited room impulse responses (RIRs) generated in this way may be appropriately calibrated and combined with high-frequency results obtained from well-established geometric modeling methods to realize efficient, yet accurate hybrid RIR synthesis. Objective results show that the low-frequency 2D multiplane solution yields comparable accuracy to that gained through 3D simulation while achieving a run-time reduction of 99.15%.
Keywords :
acoustic signal processing; acoustic wave propagation; finite difference time-domain analysis; geometry; signal synthesis; transient response; 2D multiplane FDTD hybrid acoustic model; 2D numerical modeling techniques; 3D geometric modeling techniques; 3D simulation; complementary assimilation; hybrid RIR synthesis; low-frequency sound wave propagation simulation; multiple 2D finite difference time domain schemes; room impulse response synthesis; run-time reduction; Acoustics; Computational modeling; Finite difference methods; Numerical models; Solid modeling; Three-dimensional displays; Time-domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applications of Signal Processing to Audio and Acoustics (WASPAA), 2013 IEEE Workshop on
Conference_Location :
New Paltz, NY
ISSN :
1931-1168
Type :
conf
DOI :
10.1109/WASPAA.2013.6701887
Filename :
6701887
Link To Document :
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