首页> 外文会议>Conference on detection and sensing of mines, explosive objects, and obscured targets XIV; 20090413-17; Orlando, FL(US) >Underwater UXO Discrimination Studies: Adapting EMI Forward Models to Marine Environments
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Underwater UXO Discrimination Studies: Adapting EMI Forward Models to Marine Environments

机译:水下UXO歧视研究:使EMI正向模型适应海洋环境

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Recently, several sensor technologies, such as magnetometers (total-field and gradiometers) and various types of time-domain and frequency-domain electromagnetic induction (EMI) sensors have been developed and applied successfully to land-based subsurface unexploded ordnance (UXO) detection and mapping. Current researchers of underwater UXO detection commonly apply land-based UXO detection technologies directly to underwater scenarios. Since the electric conductivity of water is much higher than that of soil, an object's EMI response underwater should be different than in a dry environment because inside the conducting water low-frequency electromagnetic signals change both in magnitude and phase, particularly at high frequencies where induction numbers (i.e., wavenumbers) are significantly high. In order to fully explore the capabilities and limitations of land-based EMI sensors for underwater UXO detection and discrimination, in this paper we assess the applicability of current EMI forward models by investigating how the electromagnetic parameters of seawater affect the performance of state-of-the-art EMI sensors. The studies are conducted using the Generalized Standardized Excitation Approach. Objects' locations are inverted for using a reduced version of the HAP technique that combines the magnetic field and its gradient. Particular attention is given to understanding how seawater EM parameters or a multilayer conductive background change objects' EMI responses and affect the UXO discrimination process.
机译:最近,已经开发了多种传感器技术,例如磁力计(总场和梯度仪)以及各种类型的时域和频域电磁感应(EMI)传感器,并将其成功应用于陆基地下未爆炸弹药(UXO)检测和映射。当前的水下UXO检测研究人员通常将基于陆地的UXO检测技术直接应用于水下场景。由于水的电导率远高于土壤的电导率,因此水下物体的EMI响应应不同于干燥环境,因为在传导水中,低频电磁信号的幅度和相位都会改变,尤其是在感应高频的情况下数字(即波数)非常高。为了充分探索陆基EMI传感器用于水下UXO检测和识别的能力和局限性,在本文中,我们通过研究海水的电磁参数如何影响水下电磁性能来评估当前EMI正向模型的适用性。最先进的EMI传感器。研究使用广义标准化激励方法进行。使用结合了磁场及其梯度的HAP技术的简化版本,可以反转对象的位置。特别注意了解海水电磁参数或多层导电背景如何改变物体的EMI响应并影响UXO鉴别过程。

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