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Accurate solutions of scattering problems involving low-contrast dielectric objects with surface integral equations

机译:利用表面积分方程精确求解低对比度介电物体的散射问题

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摘要

We present the stabilization of the surface integral equations for accurate solutions of scattering problems involving low-contrast dielectric objects. Unlike volume formulations, conventional surface formulations fail to provide accurate results for the scattered fields when the contrast of the object is small. Therefore, surface formulations are required to be stabilized by extracting the nonradiating parts of the equivalent currents. In addition to previous strategies for the stabilization, we introduce a novel procedure called field-based stabilization (FBS) based on using fictitious incident fields and rearranging the right-hand-side of the equations. The results show that the formulations using FBS provide accurate results even for scattering problems involving extremely low-contrast objects, while the extra cost due to the stabilization procedure is negligible.
机译:我们提出表面积分方程的稳定化,以解决涉及低对比度介电物体的散射问题。与体积配方不同,当对象的对比度较小时,常规的表面配方无法为散射场提供准确的结果。因此,需要通过提取等效电流的非辐射部分来稳定表面配方。除了以前的稳定策略外,我们还基于虚拟入射场并重新排列等式的右侧,介绍了一种新的过程,称为基于场的稳定(FBS)。结果表明,即使对于涉及极低对比度物体的散射问题,使用FBS的配方也能提供准确的结果,而由于稳定过程而导致的额外成本可以忽略不计。

著录项

  • 作者

    Ergül Ö.; Gürel, L.;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 English
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