Li Wenmin, Chen Yu, Liang Yan, Lu Yang, Meng Zhou
College of Meteorology and Oceanography, National University of Defense Technology, Changsha 410073, China.
Sensors (Basel). 2022 Aug 21;22(16):6297. doi: 10.3390/s22166297.
A distributed fiber optic hydrophone (DFOH) is a new type of fiber optic hydrophone (FOH) with adjustable structure. The dependence of the directivity of a DFOH on array structure is theoretically and experimentally studied. The directivity function of a sensing channel and that of a DFOH are derived. Based on the directivity function, the simulations are performed. Finally, the theoretical analysis is demonstrated by the experiments performed on Qingyang lake, and the results reveal that the longer sensing channel length guarantees the lower first-order side lobe and the narrower main lobe. As the channel length increased from 1 to 3, the main lobe width and first-order side lobe height decreased by 4.9° and 6 dB, respectively. In addition, channel spacing is irrelevant to directivity as the spacing is shorter than the wavelength. As the channel spacing increased from 0 to 1, the variations of the main lobe width and first-order side lobe height are lower than 0.5° and 0.94 dB, respectively. This study would provide guidance for the structure design of a distributed fiber optic hydrophone in signal processing.
分布式光纤水听器(DFOH)是一种结构可调节的新型光纤水听器(FOH)。从理论和实验两方面研究了DFOH的指向性对阵列结构的依赖性。推导了传感通道和DFOH的指向性函数。基于该指向性函数进行了仿真。最后,通过在青羊湖进行的实验对理论分析进行了验证,结果表明,较长的传感通道长度可保证较低的一阶旁瓣和较窄的主瓣。当通道长度从1增加到3时,主瓣宽度和一阶旁瓣高度分别减小了4.9°和6 dB。此外,当通道间距小于波长时,通道间距与指向性无关。当通道间距从0增加到1时,主瓣宽度和一阶旁瓣高度的变化分别低于0.5°和0.94 dB。该研究将为分布式光纤水听器在信号处理中的结构设计提供指导。