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Numerical simulation of the power density distribution generated in a multimode cavity by using the method of lines technique to solve directly for the electric field

机译:用线法直接求解电场在多模腔中产生的功率密度分布的数值模拟

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In this paper, a new numerical method is presented in order illustrate how the Method of Lines technique can be used to obtain the power density distribution in a dielectric material by solving directly for the electric field in three-dimensional space. A detailed analysis of the treatment of the boundary conditions at the interfaces that exist between air and the material, as well as at absorbing boundary and input planes, are also given in this paper. The method is tested and verified on some simple waveguide examples for which analytic solutions are available. The technique is subsequently applied to the more complicated cavity problem and the solutions for the power density distribution are compared directly with those obtained in previous research using the finite-difference time-domain (FDTD) method. The results of all tests conducted in this research indicate that the Method of Lines technique is a robust numerical tool which can be used to readily handle the hyperbolic nature of the Maxwell equations. Finally, in order to demonstrate the versatility of the developed model, the power density distribution generated inside a dielectric material loaded in a cavity that has multiple input waveguides is presented. The chosen examples exhibit the complicated electromagnetic phenomena which arise inside the cavity and provides some idea of the effect of multiple waveguide input on the power density distribution.
机译:在本文中,提出了一种新的数值方法,以说明如何使用“线法”技术通过直接求解三维空间中的电场来获得介电材料中的功率密度分布。本文还详细分析了空气与材料之间的界面处的边界条件以及吸收边界和输入平面的边界条件。该方法在一些简单的波导实例上进行了测试和验证,可以使用这些实例的解析解。随后将该技术应用于更复杂的空腔问题,并将功率密度分布的解决方案与先前使用有限差分时域(FDTD)方法获得的解决方案进行了直接比较。这项研究中进行的所有测试的结果表明,线法技术是一种可靠的数值工具,可用于轻松处理麦克斯韦方程的双曲性质。最后,为了证明所开发模型的多功能性,提出了在装有多个输入波导的空腔中加载的介电材料内部产生的功率密度分布。所选示例展示了在腔体内出现的复杂电磁现象,并提供了有关多个波导输入对功率密度分布的影响的一些想法。

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