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Efficient frequency-domain filter crossfading for fast convolution with application to binaural synthesis

 
: Franck, Andreas

Lokki, T. ; Audio Engineering Society -AES-:
Spatial audio. 55th AES International Conference 2014 : Helsinki, Finland, 27 - 29 August 2014
Red Hook, NY: Curran, 2015
ISBN: 978-1-63439-759-9
pp.168-177
Audio-Engineering Society (AES International Conference) <55, 2014, Helsinki>
English
Conference Paper
Fraunhofer IDMT ()

Abstract
Binaural synthesis of complex, dynamic acoustic scenes requires multiple convolution processes with time-varying head-related transfer functions (HRTFs). To avoid audible artifacts, this requires not only a position-dependent interpolation of HRTFs, but also smooth transitions during filter changes. Existing solutions either use gradual interpolation of filter coefficients or crossfading of filter outputs. This paper proposes a crossfading method that operates in the frequency domain, which enables integration with fast frequency-domain techniques such as overlap&save, uniformly or non-uniformly partitioned convolution. Fading is performed by circular convolution with a frequency-domain window function. A method is proposed to design such windows with only a few non-zero coefficients, resulting in significant complexity reductions compared to existing crossfading techniques. Further substantial efficiency improvements are achieved by integrating the proposed crossfading method into binaural rendering systems.

: http://publica.fraunhofer.de/documents/N-370522.html