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A simple stackable re-radiating boundary condition (rRBC) for FDTD

机译:FDTD的简单可堆叠重辐射边界条件(rRBC)

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摘要

The fundamental properties of a new re-radiating boundary condition (rRBC) for terminating the grid in the finite-difference time-domain (FDTD) method are examined. It is shown that because it is based on the field teleportation principle of [M.E. Watts et al., February-March 2003], this rRBC generates exact negative copies of the outgoing time-domain fields in FDTD, independently of the angle of incidence, polarization, field impedance, or material properties. The effect of the rRBC is to differentiate the outgoing signal and reduce it approximately by a factor of 10 in the time domain. Several rRBC boundaries can be stacked, one after the other, to continually decrease the level of the outgoing signal. Termination of the rRBC stack with a one cell Huygen's condition further reduces the signal, and minimizes the integration feedback as the faint echoes cross backwards through the rRBCs. It is shown that the net result is a boundary that is more efficient than a PML of similar total thickness (especially at shallow angles of incidence) and is trivial to program, requiring no special treatment for corners or material properties.
机译:研究了一种新的以边界面有限时域(FDTD)方法终止网格的重新辐射边界条件(rRBC)的基本属性。结果表明,由于它基于[M.E. Watts等人,2003年2月至3月],该rRBC生成FDTD中输出时域场的精确负副本,而与入射角,极化,场阻抗或材料特性无关。 rRBC的作用是区分输出信号,并在时域中将其减小约10倍。几个rRBC边界可以一个接一个地堆叠,以不断降低输出信号的电平。用一个单元终止rRBC堆栈的惠更斯条件会进一步降低信号,并在微弱的回声穿过rRBC向后交叉时使积分反馈最小化。结果表明,最终结果是一个边界,该边界比总厚度相似的PML(特别是在浅入射角处)更有效,并且对程序而言微不足道,不需要对角或材料属性进行特殊处理。

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