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Active broadband electromagnetic detection and classification of buried naval mines

机译:积极的宽带电磁检测和埋地海军矿山分类

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We present a new active broadband electromagnetic (FM) sensor to detect and classify buried naval mines. The sensor operates at multiple programmable frequencies suitable to a given littoral environment. Once the sensor detects a potential target, it measures the target's spectral responses over the entire operating bandwidth. The sensor then compares the measured spectrum with a library of spectra stored for mines that are known or presumed to occur in the area. Target classification based on the spectral fingerprints is called Electromagnetic Induction Spectroscopy or EMIS. It is known that an EMIS spectrum depends on the object's shape and metal compositions in terms of electrical conductivity and magnetic permeability. Apart from directly detecting explosives, EMIS is the only rigorous, physics-based phenomenology for identifying buried mines. A major drawback of an active EMI sensor is its relatively short detection range. We have recently found, however, that we may be able to significantly increase the range for a metallic mine embedded in a conductive medium (e.g., mines in saturated sediments), in comparison with the range for the same mine placed in the ground. We describe this potential range extension in terms of "current channeling" that occurs in the vicinity of a mine in a conductive medium. The current channeling response can be quite strong and, under some conditions, can exceed the eddy current response by nearly an order of magnitude, which can significantly increase the range for underwater mine hunting.
机译:我们提出了一种新的有源宽带电磁(FM)传感器来检测和分类埋藏的海军矿山。传感器以适合于给定的沿海环境的多种可编程频率操作。一旦传感器检测到潜在目标,它就通过整个操作带宽测量目标的光谱响应。然后,传感器将测量的光谱与存储在该区域中已知或假定发生的地雷的麦克谱库进行比较。基于光谱指纹的目标分类称为电磁感应光谱或EMIS。众所周知,EMIS光谱取决于对象的形状和金属组合物在导电性和磁导率方面。除了直接检测爆炸物外,EMIS是唯一识别埋地矿山的严格,物理的现象学。有源EMI传感器的主要缺点是其相对短的检测范围。然而,我们最近发现我们可以能够显着增加嵌入导电介质中的金属矿的金属矿物的范围(例如,饱和沉积物中的矿物),与放置在地面中的相同矿井的范围相比。我们描述了在导电介质中的矿井附近发生的“电流通道”的潜在范围扩展。目前的沟渠响应可以非常强壮,并且在某些条件下,可以通过几乎是幅度的响应超过涡流响应,这可以显着增加水下挖掘挖掘的范围。

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