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The 'dottrick TDEFIE': a DC stable integral equation for analyzing transient scattering from PEC bodies

机译:“dottrick tdefie”:一种用于分析PEC体瞬态散射的直流稳定积分方程

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摘要

Marching on in time, time domain integral equation solvers represent an increasingly appealing avenue for analyzing transient electromagnetic interactions with large and complex structures. Compared to their differential equation counterparts, these solvers automatically impose radiation conditions, do not require unknown fields to be discretized throughout homogeneous volumes, and are highly immune to numerical dispersion. Among their many incarnations, marching on in time, time domain electric field integral equation (MOT-TDEFIE) solvers remain the most widely used. Unfortunately MOT-TDEFIE solvers often are plagued by DC instabilities, i.e. constant and linear-in-time solutions of MOT-TDEFIE systems that reside in the null space of the (non-causal) TDEFIE operator. In the past, these instabilities have been partially cured by using loop-tree decompositions [1] and by enforcing boundary conditions on normal magnetic field components [2]. Unfortunately, neither technique completely annihilates the static null space of the TDEFIE operator, nor guarantees that MOT-TDEFIE solutions are free of DC remnants. In this paper, a modified TDEFIE that resolves static and linear-in-time currents is presented. The equation is obtained by leveraging the time domain Calderon identities in conjunction with the "dot-trick", viz. a careful rearrangement of temporal derivative operators appearing in sequences of TDEFIE operators. The effectiveness of the dottrick TDEFIE for both open and closed structures is demonstrated theoretically, proving the resonance free behavior of the dottrick TDEFIE, and numerically.
机译:在时间上行进,时域整体式求解器代表了一种越来越多的吸引力的途径,用于分析与大型和复杂结构的瞬态电磁相互作用。与其微分方程对应物相比,这些溶剂自动施加辐射条件,不需要在均匀体积中离散化未知的磁场,并且对数值分散性高度免疫。在它们的许多化身中,在时间上行进,时域电场积分方程(MOT-TDEFIE)求解器仍然是最广泛的。遗憾的是,MOT-TDEFIE求解器通常被直流稳定性困扰,即MOT-TDEFIE系统的恒定和线性就机解决方案,其驻留在(非因果)TDEFIE运算符的NULL空间中。在过去,通过使用环路树分解[1]并通过对正常磁场分量进行边界条件进行部分固化这些不稳定性[2]。不幸的是,任何技术都没有完全彻底彻底消灭TDEFIE操作员的静态空空间,也不保证MOT-TDEFIE解决方案没有DC残余物。在本文中,提出了一种解决静态和线性电流的修改的TDEFIE。通过利用时域卡尔德隆标识与“dot-trick”,viz结合使用时域卡尔德隆标识来获得。仔细重新排列在TDEFIE运营商的序列中出现的时间衍生算子。从理论上证明了Dottrick Tdefie对开放和闭合结构的有效性,证明了Dottrick Tdefie的共振行为,数值。

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