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首页> 外文期刊>Journal of Lightwave Technology >Ultra-High Sensitive Quasi-Distributed Acoustic Sensor Based on Coherent OTDR and Cylindrical Transducer
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Ultra-High Sensitive Quasi-Distributed Acoustic Sensor Based on Coherent OTDR and Cylindrical Transducer

机译:基于相干OTDR和圆柱传感器的超高灵敏度准分布式声传感器

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摘要

Highly sensitive distributed acoustic sensor is required in various practical applications. In this article, an ultra high sensitive quasi distributed acoustic sensor based on coherent detection and cylindrical transducer is proposed and demonstrated. As the acoustic sensing medium, distributed microstructured optical fiber (DMOF) is utilized to improve the signal to noise ratio (SNR) of the signal, which contains backscattering enhanced points (BEPs) along the longitudinal direction of the fiber. In order to increase the acoustic sensitivity, the hollow cylindrical structure is developed for acoustic wave transduction. In addition, coherent phase detection is adopted to achieve the high precision phase signal demodulation, and thus to realize high-fidelity recovery of the airborne sound wave. Consequently, the spatial distributed acoustic sensing can be realized, which integrates a series of high-sensitive sensing units in a single fiber. The field test results of the airborne sound detection illustrate an excellent phase sensitivity of -112.5 dB (re 1 rad/mu Pa) within the flat frequency range of 500 Hz-5 kHz and a peak sensitivity up to -83.7 dB (re 1 rad/mu Pa) at 80Hz. The waveform comparison between the measurement result and the standard signal shows the maximum error of only 3.07%. Besides, distributed audio signal recovery and spatial acoustic imaging are demonstrated, which can be further applied in the field of fiber distributed microphone and urban noise intensity holography.
机译:在各种实际应用中需要高灵敏度的分布式声传感器。本文提出并演示了一种基于相干检测和圆柱换能器的超高灵敏度准分布式声传感器。作为声传感介质,分布式微结构光纤(DMOF)用于改善信号的信噪比(SNR),该信号包含沿光纤纵向方向的反向散射增强点(BEP)。为了提高声灵敏度,开发了中空圆柱结构用于声波转换。另外,采用相干相位检测可以实现高精度的相位信号解调,从而实现机载声波的高保真恢复。因此,可以实现在单个光纤中集成一系列高灵敏度传感单元的空间分布式声学传感。机载声音检测的现场测试结果表明,在500 Hz-5 kHz平坦频率范围内,其极佳的相位灵敏度为-112.5 dB(re rad / mu Pa),峰值灵敏度为-83.7 dB(re rad 1 rad) / mu Pa)在80Hz。测量结果与标准信号之间的波形比较显示最大误差仅为3.07%。此外,还演示了分布式音频信号恢复和空间声成像技术,可以进一步应用于光纤分布式麦克风和城市噪声强度全息领域。

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