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An FFT-accelerated fdtd scheme with exact absorbing conditions for characterizing axially symmetric resonant structures

机译:具有精确吸收条件的FFT加速fdtd方案用于表征轴对称谐振结构

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摘要

An accurate and efficient finite-difference time-domain (FDTD) method for characterizing transient waves interactions on axially symmetric structures is presented. The method achieves its accuracy and efficiency by employing localized and/or fast Fourier transform (FFT) accelerated exact absorbing conditions (EACs). The paper details the derivation of the EACs, discusses their implementation and discretization in an FDTD method, and proposes utilization of a blocked-FFT based algorithm for accelerating the computation of temporal convolutions present in nonlocal EACs. The proposed method allows transient analyses to be carried for long time intervals without any loss of accuracy and provides reliable numerical data pertinent to physical processes under resonant conditions. This renders the method highly useful in characterization of high-Q microwave radiators and energy compressors. Numerical results that demonstrate the accuracy and efficiency of the method are presented.
机译:提出了一种精确高效的时域有限差分法(FDTD),用于表征轴对称结构上的瞬态波相互作用。该方法通过采用局部和/或快速傅立叶变换(FFT)加速精确吸收条件(EAC)来实现其准确性和效率。本文详细介绍了EAC的派生,讨论了它们在FDTD方法中的实现和离散化,并提出利用基于块FFT的算法来加速非本地EAC中存在的时间卷积的计算。所提出的方法允许在较长的时间间隔内进行瞬态分析,而不会损失任何精度,并提供与共振条件下的物理过程相关的可靠数值数据。这使得该方法在表征高Q微波辐射器和能量压缩机方面非常有用。数值结果证明了该方法的准确性和有效性。

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