Yayın: A Hybrid Model for 3-D Gunshot Localization Using Muzzle Blast Sound Only
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IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI
10.1109/tim.2024.3481655
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Humans and animals possess the ability to roughly estimate the distance and direction of specific sound sources through their auditory organs. This study introduces an innovative hybrid model for 3-D gunshot sound localization, drawing inspiration from human sound localization models and leveraging the strengths of both microphone arrays and deep learning techniques. The proposed system employs a six-microphone array with co-centered orthogonal placement to capture the sounds of gunshot muzzle blasts. The methodology involves first estimating azimuth and elevation angles using an approximate closed-form direction-of-arrival (DoA) formula based on time-difference-of-arrival (TDoA) values obtained from the Generalized Cross Correlation with Phase Transform (GCC-Phat) algorithm. Subsequently, Mel spectrograms are derived from the captured sound data and fed into a convolutional neural network (CNN) for distance estimation. Ultimately, the direction and distance estimations are integrated to achieve the 3-D localization of the gunshot source. The proposed approach stands as a notable contribution to the literature, relying solely on the sound of a muzzle blast for localization with a single microphone array. The average distance estimation error in the range of 50-500 m is 6.87%, demonstrating an improvement compared to existing systems with an error rate of approximately 16%. This study is pioneering in its application of deep learning training on a dataset of actual explosion sounds for distance estimation in gunshot localization systems.
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IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT
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0018-9456
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Location awareness , Deep learning , Training , Solid modeling , Time difference of arrival , Transforms , Microphone arrays , Explosions , Convolutional neural networks , Spectrogram , Convolutional neural network (CNN) , gunshot localization , hybrid localization , Mel spectrogram , time-difference-of-arrival (TDoA) , SENSITIVITY-ANALYSIS , SHOCK-WAVES , LOCATION , Engineering , Instruments & Instrumentation