Wu Su, Huang Junbin, Pang Yandong, Wang Jiabei, Gu Hongcan
Department of Weaponry Engineering, Naval University of Engineering, Wuhan 430033, China.
Department of Electronic Engineering, Naval University of Engineering, Wuhan 430033, China.
Sensors (Basel). 2024 Jul 2;24(13):4300. doi: 10.3390/s24134300.
This paper investigates a 1.7 mm diameter ultra-weak fiber Bragg grating (UWFBG) hydrophone towed array cable for acoustic direction finding. The mechanism of the underwater acoustic waves received by this integrated-coating sensitizing optical cable is deduced, and it is shown that the amplitude of its response varies with the direction of the sound wave. An anechoic pool experiment is carried out to test the performance of such a hydrophone array. The test array is a selection of six sensing fibers, each of which is coiled into 9 cm diameter fiber ring suspended in the water to receive acoustic signals. An average sensitivity of -141.2 dB re rad/μPa at frequencies from 2.5 kHz to 6.3 kHz was achieved, validating the detection of the azimuth of underwater acoustic waves. The ultra-thin towing cable system, with free structure, high sensitivity, and underwater target-detection capability has demonstrated great potential for future unmanned underwater vehicle (UUV) applications.
本文研究了一种用于声学测向的直径为1.7毫米的超弱光纤布拉格光栅(UWFBG)水听器拖曳阵列电缆。推导了这种集成涂层敏感光缆接收水下声波的机理,结果表明其响应幅度随声波方向而变化。进行了消声水池实验以测试这种水听器阵列的性能。测试阵列由六根传感光纤组成,每根光纤都绕成直径为9厘米的光纤环悬浮在水中以接收声信号。在2.5千赫至6.3千赫的频率范围内实现了平均灵敏度为-141.2分贝/(弧度/微帕),验证了水下声波方位的检测。这种具有自由结构、高灵敏度和水下目标探测能力的超薄拖曳电缆系统在未来无人水下航行器(UUV)应用中显示出巨大潜力。