Research on sound source localization of fiber optic FP cavity microphone based on TDOA
Yihao Li, Yilin Guo, Binbin Luo, Decao Wu, Xue Zuo, Gongye Li, Shenghui Shi, Mingfu Zhao
Abstract
Yihao Li, Yilin Guo, Binbin Luo, Decao Wu, Xue Zuo, Gongye Li, Shenghui Shi, Mingfu Zhao
Abstract
In this work, we introduced a sound source localization system based on fiber optic FP cavity microphones using time difference of arrival, and conducted experimental analysis on the positioning accuracy of localization system within a range of 1m×1m. We applied cross correlation to estimate the time difference of arrival, and combined Chan localization algorithm and Taylor localization algorithm to estimate the coordinate position of the sound source. Experimental results indicated that the maximum deviation between the estimated coordinates and the actual sound source coordinates in the x-axis and y-axis directions was less than 2.35 cm.
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In this work, we introduced a sound source localization system based on fiber optic FP cavity microphones using time difference of arrival, and conducted experimental analysis on the positioning accuracy of localization system within a range of 1m×1m. We applied cross correlation to estimate the time difference of arrival, and combined Chan localization algorithm and Taylor localization algorithm to estimate the coordinate position of the sound source. Experimental results indicated that the maximum deviation between the estimated coordinates and the actual sound source coordinates in the x-axis and y-axis directions was less than 2.35 cm.
Key concepts: Multilateration, Acoustic source localization, Acoustics, Position (finance), Microphone, Sound localization, Sound (geography), Coordinate system