HIRF penetration into a fuselage-like body: FDTD predictions vs. measurements

C. Birtcher, S. Georgakopoulos, C. Balanis
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引用次数: 4

Abstract

The ability of the finite-difference time-domain (FDTD) method to readily handle complex structures having a complex mix of materials makes it suitable for predicting the penetration of high intensity radiated fields (HIRF) fields into aircraft fuselages. This paper summarizes the next step in ASU's on-going research into developing the computational tools that are needed to predict this HIRF penetration. The shielding effectiveness, a measure of field penetration, of a 1:20 scaled simplified aircraft fuselage was predicted using the FDTD method and was compared with measurements. To accelerate the FDTD solution of this relatively high-Q structure, a resistive source model was used, and the time-domain fields were windowed prior to Fourier transformation into the frequency domain. A reasonable level of agreement was observed between measurement and prediction at the lower frequencies of the 0.25 GHz to 9 GHz band considered. At the higher frequencies, the measurement and prediction are not in close agreement, deterministically. However, the envelope of the predicted shielding effectiveness continues to compare favorably at the higher frequencies with that measured, suggesting that a statistical approach may be appropriate.
高频辐射穿透类机身:时域有限差分预测与测量
时域有限差分(FDTD)方法易于处理具有复杂混合材料的复杂结构,使其适合于预测高强度辐射场(HIRF)场对飞机机身的穿透。本文总结了亚利桑那州立大学正在进行的研究的下一步,即开发预测HIRF穿透所需的计算工具。利用时域有限差分法对1:20比例简化飞机机身的屏蔽效能进行了预测,并与实测结果进行了比较。为了加速这种高q结构的FDTD求解,采用了电阻源模型,并在傅里叶变换到频域之前对时域场进行了加窗处理。在所考虑的0.25 GHz至9 GHz频段的较低频率上,观察到测量和预测之间存在合理程度的一致性。在较高的频率,测量和预测是不密切一致的,确定性。然而,在较高的频率下,预测的屏蔽效能的包络线继续与测量的包络线相比较,这表明统计方法可能是合适的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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