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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Fast and accurate calculation of physically complete EMI response by a heterogeneous metallic object
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Fast and accurate calculation of physically complete EMI response by a heterogeneous metallic object

机译:通过异质金属物体快速准确地计算出物理上完整的EMI响应

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In this paper, the coupling and close-proximity effects arising between highly conducting and permeable metallic objects are exposed and analyzed, for the electromagnetic induction (EMI) frequency range (from tens of hertz up to several hundreds of kilohertz). To understand the physics of the interaction phenomena, a numerical technique is applied, consisting of the full method of auxiliary sources (MAS) at low frequencies and a combination of the MAS with thin-skin approximation (TSA) at high frequencies. Both numerical MAS-MAS/TSA and experimental studies have shown that the scattered field from a heterogeneous target generated as a simple superposition of independent responses from each part can be very different from the field determined from whole object with full internal interaction. A new numerical technique for fast and accurate representation of EMI responses for heterogeneous objects is pursued here, applicable to any three-dimensional heterogeneous object placed in an arbitrary time-varying EMI field. First, any primary magnetic field input is decomposed into the spheroidal modes over a fictitious surface surrounding the object. Then, for each input spheroidal mode, the full EMI problem including all interaction is solved using the MAS-MAS/TSA technique, and each modal response is reproduced using a compact reduced set of sources (RSS). Finally, the total response from the given target for any other excitation can be synthesized simply by calculating that primary field's constituent spheroidal modes and combining their stored responses. Several numerical examples are designed to show how an object's electromagnetic parameters, geometry, distance between objects, antenna positions, and orientations relative to the object affect the coupling. Comparisons between numerical and measured data for a machined composite object and for an actual unexploded ordnance demonstrate the superior accuracy and applicability of the MAS-MAS/TSA RSS model over simple dipole approximations, for certain classes of heterogeneous objects.
机译:在本文中,针对电磁感应(EMI)频率范围(从几十赫兹到几百千赫兹),对高导电性和渗透性金属物体之间产生的耦合和接近效应进行了暴露和分析。为了理解相互作用现象的物理原理,应用了一种数字技术,该技术包括低频辅助源(MAS)的完整方法以及高频辅助层(MAS)与薄层近似(TSA)的组合。数值MAS-MAS / TSA和实验研究都表明,来自异质目标的散射场是每个部分独立响应的简单叠加而产生的,其场与完全具有内部相互作用的整个物体所确定的场可能非常不同。在此寻求一种新的数值技术,用于快速准确地表示异构对象的EMI响应,适用于放置在任意时变EMI领域中的任何三维异构对象。首先,任何一次磁场输入都会在围绕对象的虚拟表面上分解为椭球形。然后,对于每个输入球体模式,使用MAS-MAS / TSA技术解决了包括所有相互作用的完整EMI问题,并使用紧凑的简化源集(RSS)再现了每个模态响应。最后,可以简单地通过计算该主场的组成球面模式并组合其存储的响应,来合成给定目标对任何其他激发的总响应。设计了几个数值示例,以显示对象的电磁参数,几何形状,对象之间的距离,天线位置以及相对于对象的方向如何影响耦合。机加工复合物体和实际未爆炸弹药的数值数据和测量数据之间的比较表明,对于某些类型的异质物体,MAS-MAS / TSA RSS模型具有优于简单偶极子近似的优异精度和适用性。

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