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Cited 5 time in webofscience Cited 7 time in scopus
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Monaural Sound Localization Based on Reflective Structure and Homomorphic Deconvolutionopen access

Authors
Park, YeonseokChoi, AnthonyKim, Keonwook
Issue Date
Oct-2017
Publisher
MDPI
Keywords
sound localization; angle of arrival; monaural localization; acoustic reflection; time delay; homomorphic deconvolution; cepstrum; single microphone; far-field; 3D printer
Citation
SENSORS, v.17, no.10
Indexed
SCIE
SCOPUS
Journal Title
SENSORS
Volume
17
Number
10
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/23332
DOI
10.3390/s17102189
ISSN
1424-8220
1424-3210
Abstract
The asymmetric structure around the receiver provides a particular time delay for the specific incoming propagation. This paper designs a monaural sound localization system based on the reflective structure around the microphone. The reflective plates are placed to present the direction-wise time delay, which is naturally processed by convolutional operation with a sound source. The received signal is separated for estimating the dominant time delay by using homomorphic deconvolution, which utilizes the real cepstrum and inverse cepstrum sequentially to derive the propagation response's autocorrelation. Once the localization system accurately estimates the information, the time delay model computes the corresponding reflection for localization. Because of the structure limitation, two stages of the localization process perform the estimation procedure as range and angle. The software toolchain from propagation physics and algorithm simulation realizes the optimal 3D-printed structure. The acoustic experiments in the anechoic chamber denote that 79.0% of the study range data from the isotropic signal is properly detected by the response value, and 87.5% of the specific direction data from the study range signal is properly estimated by the response time. The product of both rates shows the overall hit rate to be 69.1%.
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