Wang Jiabei, Gu Hongcan, Wang Peng, Yao Gaofei, Huang Junbin, Liu Wen, Xu Dan, Wu Su
Naval University of Engineering, Wuhan 430033, China.
Sensors (Basel). 2025 Aug 7;25(15):4877. doi: 10.3390/s25154877.
To address the demand of equivalent self-noise suppression in a distributed hydroacoustic sensing system, this study proposes a method to enhance the acoustic sensitivity and signal-to-noise ratio (SNR) using space division multiplexed (SDM) technology based on multi-core fiber (MCF). Specifically, a dual-channel demodulation system for distributed acoustic sensing is designed using MCF. The responses of different cores in MCF are almost consistent under external acoustic pressure, while their self-noise is inconsistent. Accordingly, the acoustic pressure phase sensitivity (APPS) and SNR gain based on the accumulation of dual-channel signals are analyzed, which are verified by experiments. It is shown that the self-noise correlation coefficient between the two cores is 0.11, increasing the noise power by 3.46 dB. The APPS is increased by 5.97 dB re 1 rad/μPa after the accumulation of two-core signals, which is close to the theoretical value (6 dB). The equivalent self-noise is reduced by 2.54 dB. The experimental results reveal that the enhancement of acoustic pressure phase shift sensitivity and SNR can be achieved by the space division multiplexing (SDM) of multi-core signals, which is of great significance for suppressing the equivalent self-noise of the system and realizing the acoustic pressure detection of weak underwater signals.
为满足分布式水声传感系统中等效自噪声抑制的需求,本研究提出一种基于多芯光纤(MCF)的空分复用(SDM)技术来提高声学灵敏度和信噪比(SNR)的方法。具体而言,使用MCF设计了一种用于分布式声学传感的双通道解调系统。在外部声压作用下,MCF中不同芯的响应几乎一致,但其自噪声不一致。据此,分析了基于双通道信号累加的声压相位灵敏度(APPS)和SNR增益,并通过实验进行了验证。结果表明,两芯之间的自噪声相关系数为0.11,噪声功率增加了3.46 dB。两芯信号累加后,APPS相对于1 rad/μPa增加了5.97 dB,接近理论值(6 dB)。等效自噪声降低了2.54 dB。实验结果表明,通过多芯信号的空分复用(SDM)可以实现声压相移灵敏度和SNR的增强,这对于抑制系统的等效自噪声和实现微弱水下信号的声压检测具有重要意义。