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Coupled Calculation of Eigenmodes

机译:本征模态的耦合计算

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In many technical applications the electromagnetic eigenmodes - frequency spectrum and field distributions - of rf-components are to be determined during the design process. There are numerous cases where the studied component is too complex to allow for a detailed enough simulation on usual servers. One way out of this situation is domain decomposition and parallelization of the field simulation. Yet, this demands for a parallelized solver. In our approach, we combine the use of commercial single processor-based software for the field simulation with a tool based on scattering parameter description. The studied component is decomposed in several sections. The scattering matrices of these sections are computed in time domain for instance with a FDTD field solver. A linear system is set up to compute the eigenfrequencies of the complete system and the field amplitudes at the internal ports common to a pair of sections. With the knowledge of these amplitudes the fields of the eigenmodes can be computed with help of a frequency domain field solver. This approach is denoted as Coupled S-Parameter Calculation (CSC). Some advantages of this procedure are the possibility of easy exploitation of symmetries in the studied components and the use of very different granularities in discretization of the single sections. This paper presents the method, its validation using a standard eigenmode solver and applications in the field of accelerator physics. Special attention is given to the eigenmodes of structures with slight deviations from rotational symmetry.
机译:在许多技术应用中,将在设计过程中确定射频组件的电磁本征模式(频谱和场分布)。在许多情况下,所研究的组件过于复杂,无法在普通服务器上进行足够详细的模拟。摆脱这种情况的一种方法是进行领域仿真的领域分解和并行化。然而,这需要并行化的求解器。在我们的方法中,我们结合使用基于商业单处理器的软件进行现场模拟和基于散射参数描述的工具。研究的组件分为几个部分。例如使用FDTD场求解器在时域中计算这些部分的散射矩阵。建立了一个线性系统,以计算整个系统的本征频率以及一对区段共有的内部端口处的场振幅。有了这些振幅的知识,可以借助频域场求解器来计算本征模的场。这种方法称为耦合S参数计算(CSC)。此过程的一些优点是可以轻松利用所研究组件中的对称性,并且可以在离散化单个部分时使用非常不同的粒度。本文介绍了该方法,使用标准本征模式求解器进行的验证以及在加速器物理领域中的应用。特别注意与旋转对称性略有差异的结构的本征模。

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