Title :
Optimizing frame analysis with non-integrer shift for sampling mismatch compensation of long recording
Author :
Miyabe, Shigeki ; Ono, Nobutaka ; Makino, Shigeru
Author_Institution :
Life Sci. Center of Tsukuba Adv. Res. Alliance, Univ. of Tsukuba, Tsukuba, Japan
Abstract :
This paper proposes a blind synchronization of ad-hoc microphone array in the short-time Fourier transform (STFT) domain with the optimized frame analysis centered at non-integer discrete time. We show that the drift caused by sampling frequency mismatch of asynchronous observation channels can be disregarded in a short interval. Utilizing this property, the sampling frequency mismatch and the recording start offset are estimated roughly by finding two pairs of the short intervals corresponding to the same continuous time. Using the estimate, STFT analysis is synchronized roughly between channels with optimized frame central. Since the optimized frame central is generally non-integer, we approximate the frame analysis by the linear phase filtering of the frame centered at the nearest integer sample. Maximum likelihood estimation refines the compensation of sampling frequency mismatch.
Keywords :
Fourier transforms; blind source separation; linear phase filters; maximum likelihood estimation; microphone arrays; sampling methods; synchronisation; ad hoc microphone array; asynchronous observation channels; blind synchronization; frame analysis; linear phase filtering; long recording; maximum likelihood estimation; noninteger discrete time; nonintegrer shift; sampling frequency mismatch; sampling mismatch compensation; short time Fourier transform; Approximation methods; Arrays; Estimation; Frequency estimation; Microphones; Synchronization; Ad-hoc microphone array; blind source separation; maximum likelihood estimation; sampling frequency;
Conference_Titel :
Applications of Signal Processing to Audio and Acoustics (WASPAA), 2013 IEEE Workshop on
Conference_Location :
New Paltz, NY
DOI :
10.1109/WASPAA.2013.6701833