Wang Jinhong, Li Bin, Chen Lianping, Li Li
The Key Laboratory of Ocean Acoustics and Sensing, Ministry of Industry and Information Technology, School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China; libin
The Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang 621900, China.
Sensors (Basel). 2017 Jul 28;17(8):1734. doi: 10.3390/s17081734.
In this article, we propose a novel detection method for underwater moving targets by detecting their extremely low frequency (ELF) emissions with inductive sensors. The ELF field source of the targets is modeled by a horizontal electric dipole at distances more than several times of the targets' length. The formulas for the fields produced in air are derived with a three-layer model (air, seawater and seafloor) and are evaluated with a complementary numerical integration technique. A proof of concept measurement is presented. The ELF emissions from a surface ship were detected by inductive electronic and magnetic sensors as the ship was leaving a harbor. ELF signals are of substantial strength and have typical characteristic of harmonic line spectrum, and the fundamental frequency has a direct relationship with the ship's speed. Due to the high sensitivity and low noise level of our sensors, it is capable of resolving weak ELF signals at long distance. In our experiment, a detection distance of 1300 m from the surface ship above the sea surface was realized, which shows that this method would be an appealing complement to the usual acoustic detection and magnetic anomaly detection capability.
在本文中,我们提出了一种通过感应传感器检测水下移动目标极低频(ELF)辐射来探测水下移动目标的新方法。在距离目标长度数倍以上时,目标的极低频场源由水平电偶极子建模。利用三层模型(空气、海水和海底)推导了空气中产生的场的公式,并采用互补数值积分技术进行了评估。给出了概念验证测量。当一艘水面舰艇驶离港口时,感应式电磁传感器检测到了它发出的极低频辐射。极低频信号强度可观,具有典型的谐波线谱特征,且基频与舰艇速度有直接关系。由于我们的传感器具有高灵敏度和低噪声水平,它能够在远距离分辨微弱的极低频信号。在我们的实验中,实现了在海面上方距水面舰艇1300米的探测距离,这表明该方法将是对常规声学探测和磁异常探测能力的一种有吸引力的补充。