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首页> 外文期刊>Journal of Applied Geophysics >Computing simple models for scatterers in eddy current problems using a modal decomposition
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Computing simple models for scatterers in eddy current problems using a modal decomposition

机译:使用模态分解计算涡流问题中散射体的简单模型

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摘要

A modal decomposition method for computing the solution to an eddy-current problem is presented. Modes are computed using the finite element method and the modes produced are simplified to a magnetic polarizability dyadic in the form of a singularity expansion. This reduced form is a very compact and easily-implemented model for the scatterer's reaction to an arbitrary magnetic field. Due to scaling properties, a single model can be applied to scatterers with different sizes and conductivities. The modal decomposition method could be used to compute a variety of parameterized simple models for canonical shapes to assist in algorithm design for clutter discrimination in buried object detection systems. The method is verified using analytically known formulas for the dyadic of a sphere and a loop. The code is then used to predict the behavior of cylinders with arbitrary conductivity and size, showing excellent agreement with a set of measured cylinders.
机译:提出了一种求解涡流问题解的模态分解方法。使用有限元方法计算模态,并将产生的模态以奇异扩展的形式简化为磁极化率。这种简化形式是一个非常紧凑且易于实现的模型,用于散射体对任意磁场的反应。由于具有缩放特性,因此可以将单个模型应用于具有不同大小和电导率的散射体。模态分解方法可用于为规范形状计算各种参数化的简单模型,以辅助掩埋物体检测系统中杂波识别的算法设计。使用分析已知的球体和环的二进式公式验证了该方法。该代码随后用于预测具有任意电导率和尺寸的圆柱体的行为,显示出与一组已测量圆柱体的极佳一致性。

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