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Spatial Signature Analysis of Submarine Magnetic Anomaly at Low Altitude

机译:低空海底磁异常的空间特征分析

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摘要

To study the magnetic signature of submarines and improve the performance of magnetic anomaly detectors in the antisubmarine warfare, the generation mechanism of the submarine magnetic field (SMF) is first introduced. Magnetic fields produced by submarines are classified into five major types by the cause and state of submarines. Besides, the prediction model of the SMF at low altitude is proposed. Based on the surface integral method, the continuation formula of the magnetic field is derived from the vector potential. According to the magnetic field of a real mockup, the distribution of the SMF is obtained by the continuation formula, and the data of the magnetic anomaly caused by submarines are produced at different heights. Then, the spatial signature of the magnetic anomaly is analyzed. The result of analysis shows that the magnetic anomaly of ferromagnetic submarines has evident characteristics. The distribution of the magnetic anomaly is spatially symmetrical, and the peak values of its components and total field occur in special positions. Furthermore, the signal strength of the magnetic anomaly is sufficiently large to be detected. So the identification of underwater magnetic target can be realized by the special magnetic signature.
机译:为了研究潜艇的磁性特征并提高反潜战中磁异常探测器的性能,首先介绍了潜艇磁场(SMF)的产生机理。潜艇产生的磁场按潜艇的成因和状态分为五种主要类型。提出了低空SMF的预测模型。基于表面积分法,从矢量电势中得出磁场的延续公式。根据真实模型的磁场,通过连续公式获得SMF的分布,并在不同高度产生潜艇引起的磁异常数据。然后,分析磁异常的空间特征。分析结果表明,铁磁潜艇的磁异常具有明显的特征。磁异常的分布在空间上是对称的,其分量和总磁场的峰值出现在特定位置。此外,磁异常的信号强度足够大以至于不能被检测到。因此,水下电磁目标的识别可以通过特殊的磁性签名来实现。

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