Real-Time Sound Source Localization Using a Parabolic Reflector

Chang Liu, Xu Mao, Chang Wang, J. Heredia Juesas, J. Martinez-Lorenzo
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Abstract

Contrary to the active detection methods, the passive sound source localization technologies only rely on the differences among the signals recorded by different receivers to localize the object generating the sound wave, without the knowledge of the sound source profile and excitation time. Time domain investigation methods have been widely applied in the analysis of sound source tracking, which greatly suffers from the high ambient noise problems. Instead, this paper applies an imaging method based on frequency domain cross-coherence (FDCC) operation to reconstruct the source to alleviate the effect of noise. The experimental results show the reliability of this method to recover the source in 3D. Moreover, a parabolic reflector is proposed to further increase the measurement amplitude and signal to noise ratio. The FDCC method successfully localizes the source even if the propagation path of the sound wave is disturbed by the reflector.
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使用抛物面反射器的实时声源定位
与主动探测方法不同,被动声源定位技术仅依靠不同接收器记录的信号之间的差异来定位产生声波的物体,而不知道声源的轮廓和激励时间。时域调查方法在声源跟踪分析中得到了广泛的应用,但受环境噪声的影响较大。本文采用基于频域交叉相干(FDCC)运算的成像方法重构声源,以减轻噪声的影响。实验结果表明了该方法在三维环境下恢复声源的可靠性。此外,为了进一步提高测量幅度和信噪比,还提出了抛物面反射器。在反射器干扰声波传播路径的情况下,FDCC方法也能成功定位声源。
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