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Time-domain response of a metal detector to a target buried in soil with frequency-dependent magnetic susceptibility

机译:金属探测器对埋在土壤中的目标的时域响应,其频率取决于磁化率

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The work reported in this paper is a part of on-going studies to clarify how and to what extent soil electromagnetic properties affect the performance of induction metal detectors widely used in humanitarian demining. This paper studies the specific case of the time-domain response of a small metallic sphere buried in a non-conducting soil half-space with frequency-dependent complex magnetic susceptibility. The sphere is chosen as a simple prototype for the small metal parts in low-metal landmines, while soil with dispersive magnetic susceptibility is a good model for some soils that are known to adversely affect the performance of metal detectors. The included analysis and computations extend previous work which has been done mostly in the frequency domain. Approximate theoretical expressions for weakly magnetic soils are found to fit the experimental data very well, which allowed the estimation of soil model parameters, albeit in an ad hoc manner. Soil signal is found to exceed target signal (due to an aluminum sphere of radius 0.0127 m) in many cases, even for the weakly magnetic Cambodian laterite used in the experiments. How deep a buried target is detected depends on many other factors in addition to the relative strength of soil and target signals. A general statement cannot thus be made regarding detectability of a target in soil based on the presented results. However, computational results complemented with experimental data extend the understanding of the effect that soil has on metal detectors.
机译:本文所报告的工作是正在进行的研究的一部分,以阐明土壤电磁特性如何以及在多大程度上影响广泛用于人道主义排雷的感应金属探测器的性能。本文研究了埋在非导电性土壤半空间中的小金属球的时域响应的特殊情况,它具有频率相关的复磁化率。该球体被选为低金属地雷中小的金属零件的简单原型,而对于某些已知会对金属探测器性能产生不利影响的土壤,具有弥散磁化率的土壤是一个很好的模型。所包含的分析和计算扩展了以前的工作,这些工作大部分已在频域中完成。发现弱磁性土壤的近似理论表达式与实验数据非常吻合,尽管是临时性的,但仍可以估算土壤模型参数。即使在实验中使用了弱磁性的柬埔寨红土,在许多情况下,土壤信号仍会超过目标信号(由于半径为0.0127 m的铝球)。除了土壤和目标信号的相对强度外,探测到掩埋目标的深度还取决于许多其他因素。因此,无法根据提出的结果对土壤中目标的可检测性做出一般性陈述。但是,以实验数据为补充的计算结果扩展了对土壤对金属探测器的影响的理解。

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