Research on lightweight synchronization recognition algorithms for multiple acoustic sources in a photoacoustic sensor system based on Sagnac interference

Xinyu Zheng, Ruixi Tang, Songxiang Liu, Ning Wang, Jie Zhang, Yong Zhu, Jianjun Chen
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Abstract

The photoacoustic sensor system based on Sagnac interference has extensive applications in perimeter security. Among them, the demand for synchronization recognition of multiple acoustic sources and integrated utilization becomes the key to expand its application field. By focusing on multi-source synchronization recognition, a lightweight optical-acoustic signal recognition algorithm that can be carried by an embedded system was studied. The collected optical-acoustic signals were extracted through preprocessing, Fast Fourier Transform (FFT), Mel filter bank (MFB), and other steps to obtain Mel spectrogram features, which were then used for optical-acoustic signal recognition using the MobilenetV3 network. The experimental results showed that this system achieved a synchronization recognition rate of 93% for six types of sounds, providing a possibility for implementing multi-sound recognition in embedded systems based on Sagnac interference photoacoustic sensor systems.
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基于萨格纳克干扰的光声传感器系统中多声源轻量级同步识别算法研究
基于萨格纳克干扰的光声传感器系统在周界安全领域有着广泛的应用。其中,多声源同步识别和综合利用的需求成为其拓展应用领域的关键。针对多声源同步识别,研究了一种可由嵌入式系统承载的轻量级光声信号识别算法。通过预处理、快速傅立叶变换(FFT)、梅尔滤波器组(MFB)等步骤提取采集到的光声信号,得到梅尔频谱图特征,然后利用 MobilenetV3 网络进行光声信号识别。实验结果表明,该系统对六种声音的同步识别率达到 93%,为在基于 Sagnac 干涉光声传感器系统的嵌入式系统中实现多声音识别提供了可能。
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